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    Life Sciences

    Circulation on the Run

    Each 15-minute podcast begins with an overview of the issue’s contents and main take-home messages for busy clinicians on the run. This is followed by a deep dive into a featured article of particular clinical significance: views will be heard from both author and editor teams for a “behind the scenes” look at the publication. Expect a fun, highly conversational and clinically-focused session each week!

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    Copyright: © 2016 American Heart Association, Inc.

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    Latest Episodes:
    Circulation December 22/29, 2020 Issue Dec 21, 2020
    Show notes

    This week's episode features author Peter Schwartz and Associate Editor Sami Viskin as they discuss the article "Exercise Training-Induced Repolarization Abnormalities Masquerading as Congenital Long QT Syndrome." TRANSCRIPT BELOW: Dr. Carolyn Lam: Welcome to Circulation on the Run, your weekly podcast summary and backstage pass to the journal and it's editors. We're your co-hosts, I'm Dr Carolyn Lam, associate editor from the National Heart Center and Duke National University of Singapore. Dr. Greg Hundley: And I'm Dr. Greg Hundley, associate editor, director of the Pauley Heart Center at VCU Health in Richmond, Virginia. Well, Carolyn, this week's feature, we're going to learn a little bit more about long QT syndrome and whether or not those that are athletes should continue exercise training. Maybe some can and before, we thought that they couldn't. But before we get to that, how about we take a look at some of the other papers in this issue. Dr. Carolyn Lam: Wow, that was a good hook, Greg. But yes, I want to tell you about this first paper, which is all about weight loss and changes in body composition. So, we know that intentional weight loss is associated with a lower risk of heart failure and atherosclerotic cardiovascular disease, especially among patients with type 2 diabetes. However, what is the contribution of baseline measures and longitudinal changes in fat mass versus lean mass and waist circumference to that risk of heart failure and myocardial infarction in patients with diabetes? Dr. Carolyn Lam: Well, investigators led by Dr. Pandey from UT Southwestern and colleagues evaluated more than 5,000 adults from the Look AHEAD Trial without prevalent heart failure. Fat mass and lean mass were predicted using validated equations and compared with DEXA measurements in a subgroup. Adjusted Cox models were then used to evaluate associations of baseline and longitudinal changes in fat mass, lean mass, and waist conference over one and four years follow up with the risk of overall heart failure, HFpEF, and HFrEF and myocardial infarction. Dr. Greg Hundley: Interesting, Carolyn. So, what did they find? Dr. Carolyn Lam: So, among patients with type 2 diabetes and who were overweight or obese, fat mass and lean mass could be estimated using anthropometric equations with good overall agreement compared with DEXA, so that's the first finding. Next, a decline in fat mass and waist conference, but not lean mass, were each significantly associated with a lower risk of heart failure, but not myocardial infarction. Dr. Carolyn Lam: Furthermore, a decline in waist circumference was significantly associated with a lower risk of HFpEF, but not HFrEF. Fatness and waist circumference may represent key modifiable targets for lifestyle interventions to reduce the risk of heart failure with preserved ejection fraction in type 2 diabetes. Cool, huh? Dr. Greg Hundley: Yeah. Very nice, Carolyn. Well, my first paper comes from Professor Davide Capodanno, and it's examining self-expanding bioprostheses for TAVR. So, Carolyn, there are few randomized trials comparing these bioprostheses for transcatheter aortic valve replacement or TAVR, and no trials have compared TAVR bioprostheses with the supra-annular design. So, this SCOPE 2 trial was designed to compare the clinical outcomes of the ACCURATE neo and the CoreValve Evolut valves. Dr. Greg Hundley: Now, it's a randomized trial performed at 23 centers in six countries between April 2017 and April 2019. And patients greater than 75 years with an indication for transfemoral TAVR as agreed by the heart team were randomly assigned to receive treatment with either the ACCURATE neo, so there are 398 of those patients, or the CoreValve Evolut bioprostheses, also 398 patients. The primary endpoint powered for non-inferiority of the ACCURATE neo valve was all-cause death or stroke at one year. The key secondary endpoint powered for superiority of the ACCURATE neo valve was new permanent pacemaker implantation at 30 days. Dr. Carolyn Lam: Okay. So, what were their results? Dr. Greg Hundley: Well, Carolyn, the transfemoral TAVR with the self-expanding ACCURATE neo did not meet non-inferiority compared to the self-expanding CoreValve Evolut in terms of all-cause death or stroke at one year. And was associated with a lower incidence of new permanent pacemaker implantation. In secondary analyses, the ACCURATE neo was associated with more moderate or severe aortic regurgitation at 30 days and cardiac death at 30 days and one year. Cardiac death at 30 days was 2.8% versus only 0.8% with the CoreValve Evolut. And moderate or severe aortic regurgitation at 30 days was 10% versus only 3% and they were significantly increased again in that ACCURATE neo group. Dr. Carolyn Lam: Wow. Okay. Thanks for that, Greg. Well, my next paper is from the basic science world. Dr. Colucci from Boston University Medical Center and colleagues tested the hypothesis that sarco/endoplasmic reticulum, calcium ATPase or SERCA, which is a major regulator of calcium homeostasis in the heart, whether or not it plays a critical role in mediating mitochondrial calcium and mitochondria-dependent apoptosis in response to reactive oxygen species. Dr. Carolyn Lam: So, in adult rat ventricular myocytes expressing an oxidation-resistant mutant of SERCA in which the cysteine-674 was replaced by serine. Mitochondrial calcium and the rise in mitochondrial calcium to exposure to an oxidant were decreased as was apoptotic myocyte death by mitochondrial pathways. Mice with the same SERCA mutation were protected from adverse cardiac remodeling, apoptosis, and progression to heart failure following chronic aortic constriction. Dr. Greg Hundley: Mm-hmm (affirmative) Carolyn, so this is another one where I get to ask you, what were the take home messages and what were the clinical implications? Dr. Carolyn Lam: I thought you'd ask that, Greg. So, these findings indicate that by contributing to sarcoplasmic reticulum calcium load, the chronic oxidative activation of SERCA may play a critical role in promoting the adverse effects of hemodynamic overload leading to pathologic remodeling. These findings illustrate the importance of post-translational modifications of SERCA and raise the possibility that the expression of a redox-insensitive form of SERCA may be of value in the treatment of heart failure. Dr. Greg Hundley: Very nice, Carolyn. Well, my next paper also comes from the world of basic science and looks into the mediators of atrial fibrillation. So, as some background, Carolyn, ibrutinib is a Bruton's tyrosine kinase inhibitor with remarkable efficacy against B-cell cancers. But it also increases the risk of atrial fibrillation, which remains poorly understood. Dr. Greg Hundley: So, the investigators performed electrophysiologic studies on mice treated with ibrutinib to assess the inducibility of atrial fibrillation. In human subjects, again, one of the strengths of some of these basic science papers in Circulation, the pharmacovigilance database or VigiBase, was queried to determine whether drug inhibition of an identified candidate kinase was associated with increased reporting of atrial fibrillation. Dr. Carolyn Lam: Oh, that's really interesting, Greg. So, it seems like these authors were working toward understanding the mechanism of atrial fibrillation in those receiving ibrutinib. So, what did they find? Dr. Greg Hundley: Right, Carolyn. So, the authors found that using chemoproteomic profiling they were able to identify a short list of candidate kinases that was narrowed by additional experimentation, leaving C-terminal Src kinase or CSK, as the strongest candidate for ibrutinib-induced atrial fibrillation. Cardiac-specific CSK knockouts in mice led to increased AFib, left atrial enlargement, fibrosis, and inflammation, phenocopying ibrutinib treatment. Disproportionality analyses in VigiBase confirmed increased reporting of AFib associated with kinase inhibitors blocking CSK versus non-CSK inhibitors with reporting odds ratio of eight. So, Carolyn, perhaps CSK inhibition is the mechanism by which ibrutinib leads to atrial fibrillation. Dr. Carolyn Lam: Wow. That is convincing. Well, there are other really nice papers in today's issue. First, there's a research letter by Dr. Iglesias on the effects of fentanyl versus morphine on ticagrelor-induced platelet inhibition in patients with STEMI, the PERSEUS randomized trial. There's also a research letter by Dr. Young entitled the characteristics and outcome of COAPT eligible patients in the MITRA-FR trial. Another research letter by Dr. Zhang on specific modified mRNA translation system. Dr. Greg Hundley: Very nice, Carolyn. Well, I've got an exchange of letters by Dr. Spal, Whitlock, and Kebabs regarding the article, Impact of Left Atrial Appendage Exclusion on Short-Term Outcomes in Isolated Coronary Artery Bypass Graft Surgery. And then our own Mark Link discusses changes for practicing physicians regarding the new AFib guidelines. Dr. Greg Hundley: And finally, Dr. Vera Bittner has a perspective piece on the new 2019 ACC/AHA Guidelines on the primary prevention of cardiovascular disease. So, this new primary prevention guideline two fills a critical gap by pulling together and updating, as appropriate, guidance on nine topic areas of risk assessment, diet, exercise and physical activity, obesity, type 2 diabetes mellitus, blood cholesterol, hypertension, smoking cessation, and aspirin use. Dr. Carolyn Lam: Nice. Well, Greg, guess what? That brings us to the last issue in 2020. Can you believe it, Greg? It's been just so great working with you. It's been such a privilege working with Circulation. And, drum roll, new for 2021, Circulation on the Run is returning with a new format. Watch out for it. Let me give you a hint, it's going to come with a double feature per issue. Isn't that great, Greg? Dr. Greg Hundley: Absolutely. Some of the things that you hear folks really enjoy those opportunities we have with authors to review their papers. Well now, with many of the issues next year, we'll have two feature discussions. Dr. Carolyn Lam: Exactly. So, you've been listening to Circulation on the Run, but we've been listening to you, too. So, join us again in 2021 for our new features and new format. Thanks. Dr. Greg Hundley: And yes, Carolyn, but first, we've got to go and listen to this issue's feature discussion and talk about that long QT syndrome, exercise training-induced repolarization abnormalities. They can masquerade, perhaps, as long QT syndrome. Dr. Carolyn Lam: Cool. Dr. Greg Hundley: Welcome, listeners, to our feature discussion today. And we're very fortunate, we have Prof. Peter Schwartz from Istituto Auxologico Italiano in Milan and our own associate editor, Dr. Sami Viskin from Tel Aviv Medical Center. And we're going to be reviewing exercise training induced repolarization abnormalities, masquerading as congenital long QT syndrome. Well, first Peter, we'd like to start with you. And could you tell us, or provide us with some of the background information of why you wanted to perform this study and what hypothesis did you want to address? Prof. Peter Schwartz: The background is a very simple and I've been involved in the long QT syndrome since exactly 50 years. And as a partial result of that, I developed the idea that usually I... despite my making many errors in many areas, usually I don't miss the diagnosis of long QT syndrome. As a matter of fact, the study that you're publishing now is the result of a complete serendipity. It was not planned. We had to no hypothesis. It simply started because at one point I entered the impression that we might've made a diagnostic error and this bothered me very much. Prof. Peter Schwartz: It all started about eight, 10 years ago. When in some cases of our patients in whom we had made a clear diagnosis of long QT syndrome. At their yearly controls, we found that the LQT had been completely normalized. So I was pretty upset about it because I couldn't understand it. And my first reaction a natural reaction was to blame my associates, "We have made a mistake. You've did an error. There was an error in measurement." But as a matter of fact, there were no errors. Prof. Peter Schwartz: So I start thinking, "What the hell is going on here?" Now we are in a fortunate position because due to my long standing activity in the long QT syndrome, we are a referral center for all cases or most cases in Italy where people are suspected have the long QT syndrome. In Italy by law, anyone who wants to practice any type of sport at an amateur level or pro-competitive level, needs to have an eligibility certificate. So they have to go to sport doctors and it eases when the problems arise because not infrequently these doctors with somewhat limited experience in diagnosing prolongation and abnormalities in the QT intervals, are worried to make a mistake because a mistake can be a fatal one if the subject allow them to practice pause or die suddenly on to field. So they tend to refer them to us. Prof. Peter Schwartz: And so the advantage in my position was that we had a large number of these kids or young people coming to us. When I started to realize that it was not one accident, but another accident, another situation where these young people who clearly had to stop training in an intensive way, because they will no longer allowed by the sport doctors to practice sport. And the normalization of the T-wave abnormalities of the QT interval. I said, "Well, I mean, there must be something here." Prof. Peter Schwartz: So we start collecting the data, increasing the numbers, and I think it should be evident there was no design. I mean, it was a clinical observation that was evolving with time, but with adequate numbers. And then of course at one point we start following it more carefully, everything. And these led to the actual numbers that, in my opinion, were sufficiently strong to junior agents in need to publish it and to give a message because essentially this situation in one in which is very possible that even good and experienced doctors make a mistake. And the mistake could be a very bad thing, because if you miss the long QT syndrome and there is, of course, the patient is at risk of dying. But if you leave it, someone is affected and he is not affected, you are affecting his or her quality of life because they cannot practice sport, you generate anxiety. So a proper diagnosis is important. This was the basis of our study. Dr. Greg Hundley: Very good. So, it sounds like you're going to be performing a cohort study. Can you describe for us a little more specifically, how many subjects did you include? And who did you include in this cohort? And what measurements did you address? Prof. Peter Schwartz: So essentially we looked at the consecutive cases, sent to us by sport doctors with a suspicion of long QT syndrome. They were, if I remember, correctly 310 such individuals about 100 were found not to have the long QT syndrome. And these doctors were concerned they made the wrong measurement and measurement error. All the things that happened that are very well-known. About the remaining 200 in, I think about 120, we had a genetic confirmation of the long QT syndrome. We found disease causing mutation. So, that was pretty clear. Prof. Peter Schwartz: Then we had a group of individuals who are genotype-negative. We know very well. I mean, I proposed this thing in 1979, 1980, confirmed it in 1999, that there are some individuals affected by the long QT syndrome. But whoever I did a normal QT interval and that's a possibility, who are genotype-negative. Prof. Peter Schwartz: So, it's not surprising…

    Full show notes at the publisher

    Circulation December 15, 2020 Issue Dec 14, 2020
    Show notes

    This week's episode features author Adnan Kastrati and Associate Editor Dharam Kumbhani as they discuss ticagrelor or prasugrel in patients with ST-segment-elevation myocardial infarction undergoing primary percutaneous coronary intervention. TRANSCRIPT BELOW: Dr. Carolyn Lam: Welcome to Circulation on the Run, your weekly podcast summary and backstage pass to the journal and its editors. We're your cohosts. I'm Dr. Carolyn Lam, Associate Editor from the National Heart Center and Duke National University of Singapore. Dr. Greg Hundley: And I'm Dr. Greg Hundley, Associate Editor and Director of the Pauley Heart Center at VCU Health in Richmond, Virginia. Well, Carolyn, this week's feature Ticagrelor Prasmul in patients with ST segment elevation myocardial infarction undergoing primary PCI. More on that story later, though. How about we grab a cup of coffee and look at some of the other papers in the issue. Would you like to go first? Dr. Carolyn Lam: I would. And actually, I'm going to talk about two papers and they're all about BET, BET or promo domain, an extra terminal epigenetic reta proteins. And in particular, this one called BRD4. Now these proteins have emerged as potential therapeutic targets in a number of pathological conditions, including cancer and cardiovascular disease. Small molecular BET protein inhibitors, such as JQ1 have demonstrated efficacy in reversing cardiac hypertrophy and heart failure in preclinical models. Yet genetic studies elucidating the biology of BET proteins in the heart have not been conducted. Well, at least until this week's issue where we have not one, but two papers, both elegantly using mouse genetic studies. Dr. Carolyn Lam: In the first from Dr. Srivastava from Gladstone Institute of Cardiovascular Disease in San Francisco and Dr. Jain from Perlman School of Medicine in Philadelphia and their colleagues, they found that BRD4, that particular BET epigenetic reader protein, forms a transcriptional regulatory module with GATA4, a lineage determining transcription factor in cardiomyocytes. This BRD4 GATA4 module was a critical orchestrator of mitochondrial bioenergetics in the adult heart. Dr. Greg Hundley: Well Carolyn, that is a wonderful summary. What are the clinical implications? Dr. Carolyn Lam: Identification of this new BRD4 interaction partner, such as GATA4 could provide new insights into developing epigenetic based therapies for heart failure. And the second paper is from Dr. Joseph Hill and Thomas Gillette from University of Texas Southwestern Medical Center and their colleagues. And what they found was that BRD4 was essential to the maintenance of mitochondrial electron transport chain function via transcriptional regulation of a nuclear mitochondrial gene network. BRD4 heterozygous deletion resulted in delayed heart failure, whereas pharmacological BRD4 inhibition using JQ1 induced modest changes in mitochondrial genes suggesting potential cardiac toxicity in targeting BRD4 at baseline. Dr. Greg Hundley: So what does this mean for us clinically, Carolyn? Dr. Carolyn Lam: As more potent and specific inhibitors are developed targeting BRD4 for clinical settings in oncology and other diseases, we must carefully monitor bezel cardiac performance for functional and mitochondrial deterioration. Important clinical message there. Dr. Greg Hundley: Great job, Carolyn. Well, my first paper is entitled "An Association Between Immune Checkpoint Inhibitors with Cardiovascular Events and Atherosclerotic Plaques" And it comes to us from Dr. Tomas Neilan and his colleagues at the Mass General Hospital. The study was situated in a single academic medical center. And Carolyn in this paper, there are actually three studies described. First, there's a primary analysis that evaluated whether exposure to an immune checkpoint inhibitor during treatment for cancer was associated with atherosclerotic cardiovascular events among 2,842 patients versus 2,842 controls that were matched by age, a history of cardiovascular events and cancer type. Dr. Greg Hundley: In the second study, a case crossover analysis was performed with an at risk period defined as the two year period after, and the control period as the two year prior to treatment. The primary outcome was a composite of atherosclerotic cardiovascular events including myocardial infarction, coronary revascularization, and ischemic stroke. And secondary outcomes included the individual components of that primary outcome. Dr. Greg Hundley: Finally, in the third study in this paper, there's an imaging stub study of 40 individuals, and it looked at the rate of atherosclerotic plaque progression compared from before and after starting the immune checkpoint inhibitor. All study measures and outcomes were blindly adjudicated in this third study. Dr. Carolyn Lam: Wow, a three in one. That really sounds novel. So what did they find, Greg? Dr. Greg Hundley: Right, Carolyn. In the matched cohort study, there was a three-fold higher risk for cardiovascular events after starting an immune checkpoint inhibitor. There was a similar increase in each of the individual components of the primary outcome. In the case crossover study, there was also an increase in cardiovascular events from 1.37 to 6.55 per hundred person years at the two year time point. Dr. Greg Hundley: And then lastly, Carolyn, in the imaging study, the rate of progression of total aortic plaque volume was three fold higher after immune checkpoint inhibitors from 2.1% per year to 6.7% per year after receiving these agents. The association between immune checkpoint inhibitor use and increased atherosclerotic plaque progression was attenuated with the concomitant use of statins or corticosteroids. Dr. Carolyn Lam: Wow, Greg. So I suppose what all this shows is that we need to be aware of the cardiovascular risk prior to, during and after treatment with immune checkpoint inhibitors and perhaps, you know, optimize these cardiovascular risk factors. Thank you, Greg. Dr. Greg Hundley: You bet. Well, Carolyn, my next paper is from Dr. George Vlachojannis from University Medical Center at Utrecht. These authors conducted a randomized control multi-center trial in the Netherlands enrolling STEMI patients planned to undergo primary PCI. Now patients were randomly allocated to receive in the ambulance before transfer a 60 milligram loading dose of Prasugrel, either being crushed or as integral tablets. The independent primary end points were thrombolysis in myocardial infarction, TIMI three flow in the infarct related artery at initial coronary angiography, and complete greater than they go to 70% ST segment resolution one hour post primary PCI. The safety end points were TIMI major and bleeding academic research consortium, or BARC, greater than three bleedings and secondary end points included platelet reactivity and ischemic outcomes. Dr. Carolyn Lam: Nice trial design. So what did they find? Dr. Greg Hundley: Well, Carolyn, a total of 727 patients were assigned to either crushed or integral tablets of Prasugrel. The median time from study treatment to wire crossing during primary PCI was 57 minutes, and the primary end point of TIMI three flow in the infarct related pre primary PCI artery occurred in 31% in the crushed group versus 32.7% in the integral group. No difference, P .064. Complete ST segment resolution one hour post primary PCI was present in 59.9% in the crush group and 57.3% in the integral group. Again, no difference, P equals .055. Platelet reactivity at the beginning of primary PCI measured as the P2Y12 reactivity unit, differed significantly between the groups. Crushed was 192 versus integral was 227 and the P value was less than 0.01. TIMI major and BARC greater than three bleeding occurred in 0% in the crushed group and 0.8% in the integral group and in 0.3% in the crushed group versus 1.1% in the integral group respectively. So there were no differences observed between groups regarding ischemic events at 30 days. Dr. Greg Hundley: So Carolyn, in conclusion, prehospital administration of crushed Prasugrel tablets does not improve TIMI three flow in the infarct related artery, pre primary PCI or complete SD segment resolution one hour post primary PCI in patients presenting with STEMI planned for primary PCI. Dr. Carolyn Lam: Interesting and interesting stuff with platelet reactivity and bleeding. Thank you, Greg. Well, there are other papers in today's issue. There's an in-depth paper by Dr. Katsanos on stroke prevention in atrial fibrillation, looking forward. There's a research letter by Dr. Berger on myocardial injury in adults hospitalized with COVID-19 and another by Dr. Hacker on again, immune checkpoint inhibitor therapy and how that induces inflammatory activity in large arteries. Dr. Greg Hundley: Well, Carolyn, I've got a couple other papers to talk about in this issue. There's a On My Mind piece from Dr. deFilippi entitled "Navigating Testing for COVID-19." There's a Perspective from Dr. Ridker entitled "Equipoise Trust and the Need for Cardiologists to Randomize Patients into Anticoagulation Trials in the Time of COVID." There's an ECG challenge from Dr. Arias entitled, "A Paced Tachycardia." And then finally, there's an exchange of letters from Drs. Liu regarding a prior publication entitled "Branched-Chain Amino Acid Catabolism Promotes Thrombosis Risk by Enhancing Tropomodulin-3 Propionylation in Platelets." Well, Carolyn, how about we get to the world of anti-platelet therapy, ticagrelor prasugrel in patients with ST segment elevation myocardial infarction, shall we? Dr. Carolyn Lam: Yes, let's go Greg. Dr. Greg Hundley: Well welcome, listeners, to our featured discussion today on this December 15, and we are going to learn and discuss a little more, a paper pertaining to ticagrelor versus prasugrel in patients with ST segment elevation myocardial infarction. And our lead author today is Adnan Kastrati from Deutsches Heart center in Munich. And we also have our own Associate Editor, Dr. Dharam Kumbhani from UT Southwestern in Dallas. Welcome, gentlemen. Adnan, maybe I'll start with you. Could you tell us a little bit about the background related to this article and what was the hypothesis that you wanted to address? Dr. Adnan Kastrati: First of all, thank you very much for having me here to share with you some thoughts. Thank you, Dharam, for handling our paper in Circulation. We are very honored to have it published there. About these are the ISAR REACT-5 series of studies dedicated to optimizing the antiplatelet therapy in patients and anticoagulant therapy in patients with acute and chronic coronary syndromes, mostly who are undergoing a PCI procedure. We started to think about that study immediately after the publication of the platelet trial. We showed the superiority of prasugrel in patients with acute coronary syndromes. These were the two new ADP receptor antagonists at the time. And so as a physician, we are interested to know which of them was better because there was no direct comparison. And so that's why we decided to have an open-label trial randomized. Most of the centers were situated in Germany. Two centers were situated in Italy. The private end point was adopted to the private end point of the trials in this skill. Only one difference was there, instead of cardiovascular death, we put all cause death in the primary end point. Why? Because all cause death may also reflect the gradient end bleeding between the two drugs. We wanted to have a more integrative endpoint in this sense. So it was a combination of all cause death, myocardial infarction, and stroke. Dr. Adnan Kastrati: It was a one year followup study. The study had two groups of steady patients, which was about 40% of the patients, included in the multicentral trial. And what we found in this trial, it was the same results as it was found in the whole trial. The advantages seen for prasugrel was present here also. Although we lost the significance in the evaluation of the primary endpoint. It was a 31% increase or 24% decrease with prasugrel in that sense. But otherwise everything was in the same direction as in the whole trial. And if you look also in the components of the primary end point…, you have the chance to see that numerically, it was the same trend for all components. Although the trial was not powered for going to evaluate the component of the prime end point. This was the main result. Dr. Greg Hundley: It sounds like you had 1,653 patients with STEMI randomized to receive ticagrelor or prasugrel and 10% experienced the primary end point in the ticagrelor group, but only 7.9% in the prasugrel group. But the P value was only .10. We saw trends toward favoring prasugrel rather than sort of a definitive difference. Is that a correct summary? Dr. Adnan Kastrati: Yes, it is a correct summary. I would say this group of patients is the most interesting subgroup of patients in ISAR 5 trial. Why? Because the pretreatment strategy is the same. Because there have been a lot of discussions about non-S-segment segment elevation acute myocardial infarction due to the difference in pretreatment. Although it was intentional, some people felt it's different and they said you have two different strategies there. In the STEMI subgroup, the pretreatment strategy was the same, so it was a head to head comparison of two drugs, even according to the same strategy. This is one. Dr. Adnan Kastrati: Second, you have to look back at the trials in the same field…Both these trials, if you look closely to the results of for STEMI patients, both of these trials haven't shown a significant result for the STEMI subgroup. For plateau it was a P value of 007 and for tritan it was a P value of 0014 only. Why? Because in the tritan it was very specific. They included also patients after fever analyzes and the significance came only from the comparison of tritan in this group, not in the primary PCI group. In the plateau and ISAR-5 we excluded these patients. Dr. Greg Hundley: Dharam, we're going to turn to you now. Adnan's really framed this study nicely, but can you help us from your perspective, put this study in perspective with others that have been published in this space? Dr. Dharam Kumbhani: Yeah, thanks, Greg. And I want to congratulate Adnan and his group for providing the field with another really well conducted study in a very important field. The center has done some very, very landmark trials, and I think this is another one of those. It sort of helps us understand potentially the best treatment mechanism or protocol for patients undergoing primary PCI for STEMI in this case. As you nicely outlined sort of the background for this, the only other trial that I'm aware of in this space is directly comparing pasugrel and ticagrelor head to head was the Prague 18 trial, which was smaller. I think it was about under 1100 patients. So even the STEMI cohort here was larger than that trial. But that trial ended up being terribly underpowered and unfortunately, also discontinued prematurely. So there wasn't really any significant difference that was noted in that trial and there was also a high crossover to clopidogrel in that other trials. Dr. Dharam Kumbhani: So I think that trial, in fact, we had published a trial in circulation as well. And I think this study sort of helps to advance the field a little bit by providing a head to head comparison between the two drugs. If I may extend some of the discussion points that were brought up earlier, I think, again, there is a couple of things that jumped out to me. One is, as you mentioned, the semi cohort is very interesting and very important. The p-value for interaction between the STEMI and the non-STEMI population was not significant for the pri…

    Full show notes at the publisher

    Circulation December 8, 2020 Issue Dec 07, 2020
    Show notes

    Dr. Carolyn Lam : Welcome to Circulation on the Run, your weekly podcast summary and backstage pass to the Journal and its editors. We're your co-hosts, I'm Dr. Carolyn Lam, associate editor from the National Heart Center and Duke National University of Singapore. Dr. Greg Hundley : And I'm Greg Hundley, director of the Pauley Heart Center at VCU Health in Richmond, Virginia. Dr. Carolyn Lam : Greg, today's feature paper is a research letter, but, oh my gosh, it is so interesting. It's about surgical explantation of transcatheter aortic bioprosthesis. TAVRs we know is on the rise and so is the rise of surgical explantation cases and we really need to understand it better. Hang on, we're coming to that, but maybe, let's start with some other papers in the issue first, shall we? Let me go first, you go grab your coffee and listen because we're going to talk about the efficacy of ertugliflozin on heart failure related events in patients with type II diabetes and established atherosclerotic cardiovascular disease in the results of the VERTIS CV trial. Dr. Greg Hundley : Carolyn, tell us a little bit about the VERTIS CV trial. Dr. Carolyn Lam : Sure. The primary results of the VERTIS CV trial have already been published. This cardiovascular safety trial was actually performed to satisfy the 2008 guidance from regulatory agencies for new antihyperglycemic agents. It found that patients with type II diabetes and atherosclerotic cardiovascular disease randomized to ertugliflozin achieved the primary objective of non-inferiority to placebo in time to first major adverse cardiovascular event or MACE, a composite endpoint of cardiovascular death, non-fatal MI, or non-fatal stroke. The first secondary outcome in the hierarchal testing sequence was superiority for the time to composite of cardiovascular death or heart failure hospitalization, which was not met and therefore formal hypothesis testing ended with this endpoint. Now in today's paper, the authors led by Dr. Cosentino from Karolinska Institute and Karolinska University Hospital in Stockholm, Sweden, present the results from pre-specified analyses of the effect of ertugliflozin versus placebo on a series of heart failure related outcomes from this VERTIS CV trial. Dr. Greg Hundley : Ah, Carolyn. Tell us what were the results of this new study. Dr. Carolyn Lam : Of more than 8,200 randomized patients, almost 24% had a history of heart failure and almost 61% had a pre-trial ejection fraction available, including 959 patients with an injection fraction less than or equal to 45%. While ertugliflozin did not significantly reduce first heart failure hospitalization or cardiovascular death, it did reduce first and total hospitalization for heart failure events with a relative risk for first heart failure events being similarly beneficial number one, in those with versus without a history of heart failure and number two, in those with a history of heart failure with reduced ejection fraction or preserved ejection fraction. However, the risk reduction tended to be greater for those with an ejection fraction less than or equal to 45%. Although, the test for interaction by injection fraction was not significant. The effect of ertugliflozin on risk for first heart failure hospitalization was consistent across most baseline subgroups with a greater effect in three populations, including those with impaired kidney function and those taking diuretics. Now, this is discussed an editorial by Doctors Faiez Zannad and Martin Cowie. You must pick it up and read it. Dr. Greg Hundley : That's great, Carolyn. What a fantastic another piece of information on the SGLT2 inhibitors. Dr. Greg Hundley : Well, my first paper comes to us from Dr. Peter Liu from the University of Ottawa Heart Institute and his colleagues. Carolyn, this article focuses on cardiac hypertrophy, which as you know, is a key biological response to injurious stresses such as pressure overload. Also as you know, when cardiac hypertrophy is excessive, it can lead to heart failure. Innate immune activation by danger signals through intracellular pattern recognition receptors such as nucleotide-binding oligomerization domain-containing protein 1, or NOD1 and its adaptor receptor interacting protein, RIP2, may play a major role in cardiac remodeling and progression to heart failure. These authors hypothesized that NOD1 and RIP2 are major contributors to cardiac hypertrophy, but may not be sufficient to fully express the phenotype alone. Dr. Carolyn Lam : I like that, NOD1 and RIP2. What did they find? Dr. Greg Hundley : These authors found that innate immune NOD1/RIP2 signaling was a major contributor to cardiac remodeling following stress. This process was critically joined by and regulated through the mitochondrial danger signal protein adapter MAVS. The authors found that this novel complex coordinates remodeling, inflammatory response and mitochondrial energy metabolism in stressed cardiomyocytes, thus NOD1/RIP2 MAVS signaling complex may represent an attractive new therapeutic approach toward modulating LV hypertrophy mediated heart failure. Dr. Carolyn Lam : Very nice, Greg. Now in the next paper, do you remember the VOYAGER PAD trial? Well, it was the trial that demonstrated superiority of rivaroxaban plus aspirin versus aspirin alone to reduce major cardiac and ischemic limb events following lower extremity revascularization. Now clopidogrel is commonly used as a short term adjunct to aspirin after endovascular revascularization. However, does clopidogrel modify the efficacy and safety of rivaroxaban in this setting? Well, that's the question that today's paper is addressing and it is led by corresponding author, Dr. Hiatt from University of Colorado School of Medicine. Dr. Greg Hundley : What did they find, Carolyn? Dr. Carolyn Lam : Well in the VOYAGER PAD trial, rivaroxaban plus aspirin reduced the risk of adverse cardiovascular and limb events with an early benefit for acute limb ischemia, regardless of clopidogrel use. The safety of rivaroxaban was consistent regardless of clopidogrel use as well, but with a trend for more ISTH major bleeding with clopidogrel use more than 30 days than a shorter duration. These data support the addition of rivaroxaban to aspirin after lower extremity revascularization, regardless of concomitant clopidogrel with a short course of less than 30 days associated with less bleeding. Dr. Greg Hundley : Very nice, Carolyn. Well, my next paper comes to us from Dr. Hinson from the Jackson Laboratory for Genomic Medicine. Carolyn this paper focuses on a particularly challenging heart failure associated sarcomere gene, cardiac troponin T, that is encoded by TNNT2. Remember Carolyn, this is a thin filament protein that functions in the tripartite troponin complex, where calcium binds and triggers twitch force. Relative to other sarcomere genes, pathogenic TNNT2 variants are associated with poor prognosis as they carry an increased risk of sudden cardiac death that is disproportional to myocardial remodeling. The investigators used human pluripotent stem cell derived cardiomyocytes in cardiac microtissue and single cell assays and functionally interrogated 51 TNNT2 variants, including 30 pathogenic likely pathogenic variants and 21 variants of unknown significance called VUSs. They utilized RNA sequencing to determine the transcriptomic consequences of pathogenic TNNT2 variants. Dr. Carolyn Lam : Wow. And so what were those consequences, Greg? Dr. Greg Hundley : They found that hypertrophic cardiomyopathy associated TNNT2 variants increased cardiac microtissue contraction while dilated cardiomyopathy associated variants caused decreased contraction. Both of which parallel changes in myofilament calcium affinity. Transcriptomic changes, including NPPB levels, directly correlated with sarcomere function and could be utilized to predict TNNT2 variant pathogenicity. In summary Carolyn, this research found that number one, inheritance of pathogenic TNNT2 variance is a leading cause of cardiomyopathy and number two, the majority of TNNT2 variants identified in the human population are classified as those VUSs or variants of unknown significance, which limits their clinical utility in genetic testing. As such, reclassification of TNNT2 variants would improve cardiomyopathy risk determination and treatment responses for individuals harboring these variants. Dr. Carolyn Lam : Nice. Thank you, Greg. Well, in this next paper, I think the title summarizes it all: "Is There a Sex Gap in Surviving an Acute Coronary Syndrome or Subsequent Development of Heart Failure?" Well, Dr. Justin Ezekowitz from Vigor Center, University of Alberta in Canada and his colleagues used a large population based cohort of more than 45,000 patients with MI between April 2002 and March 2016, to examine the incidence and geographic findings, treatment and clinical outcomes of patients with a first time and MI. To elucidate the difference between sexes, a series of multi-variable models were created to explore all MI and non-ST elevation MI versus ST elevation MI over time. Dr. Greg Hundley : What did they find Carolyn? Dr. Carolyn Lam : Well, some attenuation of differences in clinical outcomes over time had occurred. Women maintained a higher risk than men of dying or developing heart failure in the subsequent five years post both STEMI or non-STEMI, even after accounting for differences in angiographic findings, revascularization and other confounders. Dr. Greg Hundley : Well, Carolyn, how about we get to some of the other articles in the issue. And I've got a really nice Research Letter from Professor Damien Bonnet entitled, "Addition of Corticosteroids to Immune Globulins is Associated with Recovery of Cardiac Function in Multi-inflammatory Syndrome in Children." There's also a Research Letter from Professor Peter van der Meer entitled, "Human Pluripotent Stem Cell Derived Cardiomyocytes of Peripartum Cardiomyopathy Patients Reveal at Aberrant Regulation in Lipid Metabolism." And Carolyn, finally I have an ECG Challenge entitled, "Wide QRS Complex Tachycardia in a Young Pregnant Woman, is it SVT or VT?" The age old question from Dr. Gunaseelan. Dr. Carolyn Lam : Nice. Well, there's also an exchange of letters between Drs. Ross and Loupy regarding the article, "Identification and Characterization of Trajectories of Cardiac Allograft Vasculopathy after Heart Transplantation: a Population Based Study," and a beautiful Perspective piece by Dr. Verma entitled, "Two Tales, One Story and that is talking about the EMPEROR-reduced and DAPA-HF trials." A beautiful summary there. Let's get on now though to that feature discussion. Shall we, Greg? Dr. Greg Hundley : You bet looking forward to it. Dr. Carolyn Lam : Transcatheter aortic valve replacement or TAVR has indeed become an established alternative to surgical aortic valve replacement for patients with severe aortic stenosis. Now, while the TAVR usage has increased, so has surgical TAVR valve explantation. However, that's not been really well described its clinical impact or outcomes well until today's research letter in Circulation, which represents the largest series of TAVR explants from a national database. And I'm so pleased to have with us the first and corresponding author, Dr. Shinichi Fukuhara from University of Michigan to describe the study as well as our associate editor, Dr. Tim Gardner from University of Pennsylvania. Welcome, gentlemen. Shinichi, if you don't mind for non-interventionists and non-surgeons like myself, why would you need to explant TAVR in the first place? Maybe you could start with that and then tell us about your study. Dr. Shinichi Fukuhara: First of all, thank you so much for the kind invitation. It's a great honor to be with you and Dr. Gardener. That's a very good question and a very timely question actually. When we started implanting TAVR valves probably about nine years ago or so, that was when the TAVR valve was FDA approved, we were not thinking about second TAVR procedure after the initial TAVR valve fails. And then as time goes on, we started to recognizing, some patients' TAVR valves started failing and these failure patterns can be paravalvular leak, can be structural valve degeneration, can be endocarditis. Not all patients with a failing TAVR valve can be treated with a second TAVR valve procedure and the most common driving factor at least in my program at the University of Michigan is unsuitable anatomy for a second TAVR valve and the most common anatomy pattern is a risk of a coronary artery obstruction by the second TAVR valve. These are the common scenarios where patients need TAVR valve explantation scenarios. Dr. Carolyn Lam : Thank you so much for that as a background. And as you nicely set up in your paper, as we do more TAVR, obviously there are going to be more situations like this. Please tell us what you found. Dr. Shinichi Fukuhara: First of all, what we found from this project, first, surgical TAVR valve explant procedure is not as simple as people thought it would be. I remember back in 2014, 2015 when I was still a trainee, people were talking about, which is better TAVR SAVR TAVR or SAVR TAVR SAVR? However, based on what we are just starting to see, TAVR SAVR sequence may not be a good option for younger people based on the present study data. The fact that more than 50% of patients who require the major simultaneous procedures such as aortic repair and the mitral procedures is a something TAVR implanters in our community should be more aware. Tim Gardner: I think it's very important for Shinichi to tell us to emphasize the mortality rate that you saw with the SAVRs following TAVR because that's really, I think the sobering information here. This is not comparable to doing a redo aortic valve or redo SAVR. Just tell us about that, Shinichi. Dr. Shinichi Fukuhara: First of all, these STS database. We have a STS predicted risk of a mortality, which is available for patients undergoing isolated SAVR procedure. And then based on the even isolated the SAVR procedure, the OE ratio of observed to expected mortality ratio was actually higher than 1.5 for isolated SAVR procedure in patients requiring TAVR explant. More importantly, patients who are requiring TAVR explanted SAVR, as well as a concomitant cardiac procedure are demonstrating almost close to 20% mortality rate, which is to me very striking after we analyze that data set. And this is something our community, the TAVR implanters in our community should keep in mind. Dr. Timothy Gardner: Yeah. Obviously not only is the surgery, the removal of the TAVR device and replacement with a surgical valve, not only is that complex anatomically and technically, but the associated mortality seen in this series of patients that they reported is higher than expected and actually quite high in terms of absolute operative or hospital mortality. I take this important research letter as a sort of a warning message to all of us, in particular, the cardiology community, to realize that once a TAVR valve is placed, it is more difficult and riskier to remove that and replace it with a surgical aortic valve replacement, if for some reasons such as endocarditis or valve failure or whatever comes to play. Dr. Timothy Gardner: And obviously as Shinichi has already said, when you're looking at a younger patient, patient under 60 for example, who needs an aortic valve procedure, you need to keep in mind whether as he said earlier, it's might be safer to do a SAVR first. And then if there's another procedure required, that could be because of valve failure, a TAVR could be done rather than just assuming that the TAVR is going to be there and that it can be easily replaced or t…

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    Circulation December 1, 2020 Issue Nov 30, 2020
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    This week's episode features author Torbjørn Omland and Senior Guest Editor Vera Bittner as they discuss the artile "Growth Differentiation Factor-15 Provides Prognostic Information Superior to Established Cardiovascular and Inflammatory Biomarkers in Unselected Patients Hospitalized with COVID-19." TRANSCRIPT BELOW: Dr. Carolyn Lam: Welcome to Circulation on the Run, your weekly podcast summary, and backstage pass to the journal and its editors. We are your co-hosts, I'm Dr. Carolyn Lam, associate editor from the National Heart Center and Duke National University of Singapore. Dr. Greg Hundley: I'm Dr. Greg Hundley, Director of the Pauley Heart Center at VCU Health in Richmond, Virginia. Well, Carolyn our feature this week gets into inflammatory biomarkers in patients that have been hospitalized with COVID-19, but before we get to that, how about we grab a cup of coffee and work through some of the papers in the issue. Would you like to go first? Dr. Carolyn Lam: Absolutely. With both the coffee and the papers. So great, for this first paper, have you thought about concentric versus eccentric cardiac hypertrophy? We traditionally associate them with pressure versus volume overload respectively in cardiovascular disease, both though conferring an increased risk of heart failure. These contrasting forms of hypertrophy are characterized by asymmetric growth of the cardiac myocytes in mainly width or length respectively. However, the molecular mechanisms determining myocyte preferential growth in width versus length remain poorly understood. Dr. Carolyn Lam: That is until today's paper, and it is from Dr. Kapiloff from Stanford University, and Dr. Rosenfeld from UCSD, School of Medicine and their colleagues, and what they did was used primary adult rat ventricular myocytes, as well as Adeno associated virus mediated gene delivery in mice, to define a regulatory pathway controlling pathological myocyte hypertrophy, and they found that asymmetric cardiac myocyte hypertrophy is modulated by serum response factor phosphorylation, constituting an epigenomic switch balancing the growth in width versus length of adult ventricular myocytes In vitro, and In vivo. Dr. Carolyn Lam: Serum response factor phosphorylation was bi-directionally regulated at signalosomes organized by the scaffold protein muscle, A kinase anchoring protein beta. This newly identified molecular switch controlled a transcriptional program responsible for modulating changes in cardiomyocyte morphology that occurs secondary to pathological stressors. Dr. Greg Hundley: Very nice, Carolyn. So switches controlling this transcriptional program. Tell us a little bit, and bring us back to the clinical relevance of this and starting with that concentric versus eccentric hypertrophy? Dr. Carolyn Lam: I thought you may ask. The identification of a molecular mechanism regulating that asymmetric cardiomyocyte growth, really provides a new target for the inhibition of pathological cardiac hypertrophy. Studies in mice using these Adeno associated virus based gene therapies to modulate that signalosome, really provided proof of concept for translational potential in the treatment of pathological cardiac remodeling and prevention of heart failure. Dr. Greg Hundley: Oh, wow. Very nice, Carolyn. Well, my first paper comes to us from Professor Dirk Westermann from Hamburg, and focuses on cardiogenic shock patients, and veno-arterial ECMO, the results from the international multicenter cohort study. So Carolyn this study evaluated data from 686 consecutive patients with cardiogenic shock treated with VA ECMO with or without left ventricular unloading using an Impella, and they conducted this at 16 tertiary care centers across four countries. They examined the association between left ventricular unloading and 30 day mortality. Dr. Carolyn Lam: Huh, so what did they find? Dr. Greg Hundley: Okay. Carolyn. Well, left ventricular unloading was used in 337 of the 686 patients enrolled, and after propensity matching 255 patients with left ventricular unloading were compared with the 255 patients without left ventricular unloading. In the match cohort, left ventricular unloading was associated with lower 30 day mortality without differences in the various subgroups. However, complications occurred more frequently in patients with left ventricular unloading, like severe bleeding, which happened in 38.4% versus only 17.9% in those without unloading. There was also access-related ischemia and renal replacement therapy. Dr. Greg Hundley: So Carolyn, the take-home message from this International multi-center cohort study, is that left ventricular unloading is associated with lower mortality, and cardiogenic shock patients treated with VA ECMO, despite higher complication rates. In the absence of randomized trial data these findings support the use of left ventricular unloading and cardiogenic shock patients treated with VA ECMO, and call for further validation, ideally in a randomized controlled trial. Dr. Carolyn Lam: Very nice. Well for my next paper, Greg, it's all about desmin. Now we know that mutations in the human desmin gene caused myopathies and cardiomyopathies. Well, today's authors, Dr. Hermann and Schroeder from University Hospital Erlangen in Germany and Dr. Lilienbaum from University of Paris and France and their colleagues, report an adolescent patient who underwent cardiac transplantation, due to restrictive cardiomyopathy caused by a heterozygous R406W desmin mutation. Sections of the explanted heart were analyzed with antibodies specific to 406W-desmin, and to intercalated disc proteins. Effects of this mutation on the molecular properties of desmin were then addressed by cell transfection and In vitro assembly experiments. They further generated these desmin mutation knock-in mice haboring the orthologous form of the human, R406W-desmin. Dr. Greg Hundley: So Carolyn, what did they find? Dr. Carolyn Lam: Well, they demonstrated a novel pathomechanism in which cardiotoxic R406W-desmin, could adapt dual functional status with the abilities to integrate into the indogenous intermediate filament network, and to cause formation a protein aggregates. This R406W-desmin modified the extra sarcomeric cytoskeleton, such that desmin filaments were not anchored to desmosomes anymore. Thereby destroying the structural, and functional integrity of intercalated discs. Dr. Greg Hundley: What are the clinical implications? Dr. Carolyn Lam: Well, since these cardiotoxic desmin mutations could affect the integrity of intercalated discs, thereby inducing conduction defects and malignant arrhythmias, they suggest early implantation of pacemaker, or cardioverter defibrillator devices, may be considered to prevent certain cardiac death in patients with these mutations. Furthermore, state-of-the-art basic molecular risk stratification of desmin mutations may encompass a multidisciplinary experimental approach as exemplified by the approach taken here, which comprises assessment of the tissue pathology in conjunction with genome analysis and desmin assembly studies as well as patient mimicking cell and animal models for the In vivo validation of these mutations. Dr. Greg Hundley: Well, fantastic, Carolyn. Well, my next paper comes to us from Dr. Ravi Shah from the Massachusetts General Hospital. This study evaluated 2,330 white and black young adults, average age of 32 years, in the Coronary Artery Risk Development in Young Adults, or the cardiac study, to identify metabolite profiles associated with an adverse cardiovascular disease phenom that included, myocardial structure and function, fitness, vascular calcification, and then also mechanisms, and other cardiovascular outcomes that would occur over the next two decades. Statistical learning methods, including elastic nets and principal component analysis, and Cox regression generated parsimonious metabolite based risk scores, validated in over 1800 individuals in the Framingham Heart Study. Dr. Carolyn Lam: Wow. What did they show, Greg? Wow, that's a lot of work. Dr. Greg Hundley: Yeah. So Carolyn, the authors found two multiparametric metabolite-based scores linked independently to vascular, and myocardial health. With metabolites included in each score specifying microbial metabolism, hepatic steatosis, oxidative stress, nitric oxide modulation, and finally collagen metabolism. Over nearly 25 year median follow-up, and cardia, this metabolite based vascular score, and the myocardial score, and the third and fourth decade of life were associated with clinical cardiovascular disease. Importantly, the authors replicated these findings in 1,898 individuals in the Framingham Heart Study followed over two decades, such that young adults with poor metabolite based health scores had higher hazard ratios of future cardiovascular disease related events. Dr. Carolyn Lam: Oh wow. Greg, what an elegant study with both development and validation cohort evaluating the metabolome. Dr. Greg Hundley: Yes. Carolyn. So metabolic signatures of myocardial, and vascular health in young adulthood specify known novel pathways of metabolic dysfunction, relevant to cardiovascular disease associated with outcomes in two independent cohorts. So these data suggests that efforts to include precision measures of metabolic health in risk stratification to interrupt cardiovascular disease at an early at stage, are warranted. Dr. Carolyn Lam: Wow. So interesting. Other very interesting articles in today's issue, there's an In Depth article by Dr. Angiolillo entitled, "The Antithrombotic Therapy for Atherosclerotic Cardiovascular Disease Risk Mitigation in Patients with Coronary Artery Disease and Diabetes." There's also Research Letters, one by Dr. Sultan on, "The Longterm Outcomes of Primary Cardiac Lymphoma" and one by Dr. Wang on, "Loss of Phosphatase and Tensin Homolog Promotes Cardiomyocyte Proliferation and Cardiac Repair Following Myocardial Infarction." Dr. Greg Hundley: Great, Carolyn. Well, I've got a couple other articles in this issue as well. One is by Professor Ganesan Karthikeyan who has an On My Mind piece entitled an "Alternative Hypothesis to explain Disease Progression in Rheumatic Heart Disease." Dr. Stuart Chen has an ECG challenge entitled, "Alternating QRS Duration and a Normal T-waves. What is the mechanism?" Then finally, Carolyn, a series of Letters to the Editor, one by Dr. Peterzan and the other by Dr. Mehmood regarding the prior published article, entitled "Cardiac Energetics in Patients with Aortic Stenosis and Preserved Ejection Fraction." Well, Carolyn, how about we get onto that feature article and learn more about inflammatory biomarkers in hospitalized patients with COVID-19? Dr. Carolyn Lam: Yes. Let's go. Greg. Biomarkers are really playing an increasingly important role in cardiovascular disease, and even in the current COVID 19 pandemic, there's been a lot of news about how biomarkers such as traponin may be prognostic, and in fact, we're all wondering about maybe even newer biomarkers. In fact, today's feature discussion does bring to light one of the newest, and in fact, this is the first publication on the role of Growth Differentiation Factor 15 or GDF-15 in COVID-19. We're so pleased to be discussing this with the corresponding author, Dr. Torbjørn Omland from University of Oslo, in Norway, as well as our senior guest editor, Dr. Vera Bittner from University of Alabama at Birmingham. So welcome both. Tobjorn, could you tell us a little bit about GDF-15 and what made you look at it, and what did you find? Dr. Torbjørn Omland: Yeah, so GDF-15, that's a very interesting biomarker. It's considered a biomarker of biological aging cellular stress, and perhaps also the inflammation, and tests being studied within the cardiovascular field for some years now, and it has been shown to be a strong prognostic indicator across the cardiovascular spectrum, actually. So it is a new biomarker in one sense, but there are some data already in the cardiovascular field. Dr. Carolyn Lam: Not in COVID. So this is the first study to really look at its prognostic value in COVID 19. So congratulations Torbjorn, and if I may also to the first author, Dr. Peter Meer, a good friend as well, but please, could you tell us about your study and what you found? Dr. Torbjørn Omland: Yes. So when the COVID pandemic hit Norway in the spring, we thought that we should plan a prospective biomarker study. So we had to really fast track approval by the IRB and so forth, and we're able to actually cover most of the patients that were hospitalized in our hospital, Akershus University hospital, which is right outside of Oslo, and it's a pretty large hospital by Norwegian standards. It covers about 11% of the Norwegian population. Dr. Torbjørn Omland: So in that period, when we were including, we had 136 patients hospitalized with confirmed COVID 19, and we have biobank bank samples from 123 of these, and then there have been reports from retrospective studies, first from China, that seemed to suggest that markers like cardiac troponin, Anti-Troponin T, and Ferritin were associated with outcome, but those studies were prone to selection bias in that the measurements were performed in the most sick patients. So in this study we included all patients and then we thought we should examine a broad panel of biomarkers, and that included Interleukin 6, CRP, Procalcitonin, Ferritin, and the D-dimer Cardiac troponin, and N-terminal pro B, and GDF-15. Dr. Carolyn Lam: Wow. Thank you, Torbjorn. Even before you carry on with the results, can I just say having visited your hospital in pre-COVID days, I can only imagine what a work of love this was to do it prospectively. Any particular experiences to talk about, to get a fast-track even in the midst of to perform a well done prospective study, that must have taken a lot. Dr. Torbjørn Omland: Yes. But it's also interesting in that the whole sort of ablation on Norway was very much into this from the highest political level. Also, the decision that the older research on COVID should be prepared to retire, then the IRB had an eight hour and deadline for them to approve or not approve the study. So that's went surprisingly smoothly, I must say. Dr. Carolyn Lam: Wow, that's great. So what did you find? Dr. Torbjørn Omland: Yeah, so we found that among these biomarkers, several seem to predict outcome, and the primary end point of this study was to combined end-point of the hospitalization in the ICU, or death. We found that also markers like cardio traponin, BNP, ferritin, and the D-dimer and so forth, in univariable analysis, were very associated with outcome, but when we perform a more comprehensive, mostly variable modeling, then the prognostic value of some of these markers disappeared. In contrast, for GDF-15, it seemed to perform very strongly, both on the baseline sample, and interestingly also it increased in those reaching the primary end-point during the hospitalization. So it provided a very strong and independent information also when we adjusted for clinical risk scores, like the NEWS score. So that was a very pleasant surprise to see that there was one marker that's actually performed so well. The other marker that's also performed well was Ferritin. Dr. Carolyn Lam: Very interesting, and so the new score being the National Early Warning Score. Thank you. Verra, I really love to bring in your thoughts. I mean, could you take us behind the scenes with the editors? What did you think when you saw this paper? Dr. Vera Bittner: As you know, I mean, a lot of journals have been inundated by COVID papers, and so this one stuck out to us, because it's the first time that we had seen that anybody linked GDF-15 t…

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    Circulation November 24, 2020 Issue Nov 23, 2020
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    This week's episode features author Emma Birks and Associate Editor Hesham Sadek as they discuss the article " Prospective Multicentre Study of Myocardial Recovery Using Left Ventricular Assist Devices (REmission from Stage D Heart Failure: RESTAGE-HF): Medium Term and Primary Endpoint Results." TRANSCRIPT BELOW: Dr. Carolyn Lam: Welcome to Circulation on the Run, your weekly podcast, summary and backstage pass to the journal and its editors. I'm Dr. Carolyn Lam, associate editor from the National Heart Center and Duke National University of Singapore. Dr. Greg Hundley: And I'm Dr. Greg Hundley, associate editor, director of the Pauley Heart Center of VCU Health in Richmond, Virginia. Carolyn, our feature article this week, we're going to examine myocardial recovery using left ventricular assist devices, getting some early results from the RESTAGE-HF study. But before we jump to the feature discussion, how about we discuss some of the papers in the issue? Would you like to go first? Dr. Carolyn Lam: Yes I would. Have you thought about what's the benefit of emergent coronary angiography after resuscitation from out of hospital cardiac arrest for patients without ST elevation? It's an important question. Well, the portal study was reported by Dr. Kern from University of Arizona and colleagues, and this was designed to evaluate the efficacy and safety of early coronary angiography and to determine the prevalence of acute coronary occlusion in resuscitated out of hospital cardiac arrest in patients without ST elevation. So adult comatose survivors without ST elevation after resuscitation, were prospectively randomized to early coronary angiography versus no early coronary angiography, where early was defined as less than 120 minutes from arrival at the PCI capable facility. The primary endpoint was a composite of efficacy and safety measures, including efficacy parameters of survival to discharge favorable neurological status at discharge echo measures of left ventricular ejection fraction, more than 50% and a normal regional wall motion score within 24 hours of admission. Dr. Greg Hundley: So, lots of data here. What did they find? Dr. Carolyn Lam: So, unfortunately the study was prematurely terminated before enrolling the target numbers of patients. A total of 99 patients were enrolled from 2015 to 2018 and 49 were randomized to early coronary angiography. The primary endpoint of efficacy and safety was not different between the two groups. Early coronary angiography was not associated with any significant increase in survival or adverse events. And early coronary angiography revealed a culprit vessel in 47% with a total of 14% of patients undergoing early coronary angiography, having an acutely occluded culprit coronary artery. So while this was an underpowered study, when considered together with previous clinical trials, it does not support early coronary angiography, comatose survivors of cardiac arrest without ST elevation, whether early detection of occluded potential culprit arteries leads to interventions that improve outcomes does require additional study. And this is discussed in an editorial by Dr. Lemkes from Amsterdam university medical center. Dr. Greg Hundley: Very nice Carolyn. So at least the study that points us toward the next study that has to be performed and also does with other studies provide a little more clarity. Well, my next paper is from Professor Sanjiv Shah and--oh, wait a minute! And also from you as a co-author. Well, Carolyn, how about we have a little mini feature discussion where I can ask you some questions and then you can tell us all about your paper. Dr. Carolyn Lam: Happy to. Dr. Greg Hundley: Great. So Carolyn, what hypotheses were you testing and what was your study design and who was included in your study population? Dr. Carolyn Lam: Okay. So the question was we wanted to answer was thus a systemic pro-inflammatory state as indicated by proteomic profiling. Does that mediate the association between comorbidities and normal cardiac structure and function in HFpEF. To answer that we studied 228 patients with HFpEF from our multicenter promis HFpEF study. And these patients had 248 unique circulating proteins quantified using the old link multiplex immunoassay. Now I'm going to describe a complex analysis, but we basically had to first perform principal component analysis. And we did this to summarize 47 proteins known a priori to be involved in inflammation, and then used unbiased network analysis of all the 248 proteins to identify clusters of proteins that over-represented inflammatory pathways. We then used a mediation analysis to determine whether and to what extent inflammation mediates the association of comorbidity burdens with abnormal cardiac structure and function. And finally, we externally validated our findings in an independent cohort of 117 HFpEF cases and 30 comorbidity controls without HFpEF. Dr. Greg Hundley: Wow Carolyn, such a great design and an app machine learning mediation analyses, and then validation in an independent cohort. So tell us, what did you find? Dr. Carolyn Lam: So first, comorbidity burden was associated with abnormal cardiac function and structure and with these principle components of clusters of inflammation proteins. Second, systemic inflammation was associated with echo indicators of worse hemodynamics, like higher EDE' ratio and worse, right ventricular function. And third, inflammation indeed mediated the association between comorbidity burden and many of these echo parameters with, and I'm going to name a couple of routines. So TNF-R1, uPAR, IGFBP-7 and GDF-15 being the top individual mediating proteins. In the validation cohort inflammation was up-regulated in HFpEF compared to controls and the most prominent inflammation protein cluster identified was also the same one as in PROMIS-HFpEF. Dr. Greg Hundley: Beautiful Carolyn. So with these new proteins identified, what's the take home message here? Dr. Carolyn Lam: Here it is. Proteins involved in inflammation form a conserved network in HFpEF. And this was found across two independent cohorts. This may mediate the association between comorbidity burden and echo indicators of worst hemodynamics and right ventricular dysfunction. In totality, these findings support the comorbidity inflammation paradigm in HFpEF. Dr. Greg Hundley: Great job Carolyn, I liked the mini feature. That was so nice having one of the authors of the study here to explain kind of a two for one here, because we're going to get a feature and a mini feature. Have you got another paper you want to tell us about? Dr. Carolyn Lam: Thanks Greg and that works both ways. This next paper provides insights into the identity origin and function of many cells that make up late stage atherosclerotic lesions. It also identifies the mechanisms by which these control plucks stability. So corresponding author, Dr. Owens from Virginia School of Medicine and colleagues conducted a comprehensive single cell RNA sequencing of advanced human carotid endarterectomy samples, and compared these with murine micro dissected advanced atherosclerotic lesions with smooth muscle cell and endothelial lineage tracing to survey all plaque cell types and to rigorously determine their origins. Dr. Greg Hundley: Carolyn you know, this is another great study where we have both human subjects research and small animals. What were their results? Dr. Carolyn Lam: They provided evidence that smooth muscle cell specific knockout of transcription factors, KLF4 versus Oct-4 showed virtually opposite genomic signatures and their putative target genes played an important role, regulating smooth muscle cells phenotypic changes. They also provided evidence that smooth muscle cell derived cells within advanced mouse and human atherosclerotic lesions exhibited far greater phenotypic plasticity than generally believed, with KLF4 regulating the transition to multiple phenotypes, including LGALS 3 plus osteogenic cells likely to be detrimental for late stage atherosclerosis plaque pathogenesis. So in summary, smooth cell phenotypic switching produces cells that can be beneficial or detrimental to lesion stability and may be an important mechanism controlling the risk of unstable atherosclerotic plaque and myocardial infarction or stroke. Dr. Greg Hundley: Oh, great job, Carolyn. Well, the next paper I have is from Professor Muredach Reilly from Columbia University. And Carolyn smooth muscle cells play significant roles in atherosclerosis via phenotypic switching, a pathological process and with smooth muscle cell D differentiation, migration and trans differentiation into other cell types yet how smooth muscle cells contribute completely to the pathophysiology of atherosclerosis remain somewhat illicit. So the authors sought to reveal the trajectories of smooth muscle cell trans differentiation during atherosclerosis, and to identify molecular targets for disease therapy by combining smooth muscle cell fate mapping and single cell RNA sequencing of both mouse and human atherosclerotic plaques. Dr. Carolyn Lam: Echoing what you said earlier, Greg, both animal and human data. Terrific. So what were the results? Dr. Greg Hundley: The authors found that smooth muscle cells transitioned to an intermediate cell state during atherosclerosis, which was also found in human atherosclerotic plaques of carotid and coronary arteries. Smooth muscle cell derived intermediate cells termed stem cells were multiphoton and could differentiate into macrophage like and fibro chondrocyte like cells as well as returned towards the smooth muscle cell phenotype. Retinoic acid signaling was identified as a regulator of the transition of smooth muscle cells to stem cells and RA signaling was dysregulated in symptomatic human atherosclerosis. Finally Carolyn, human genomics revealed enrichment of genome-wide association study signals for coronary artery disease in RA signaling target gene low PSI and correlated between coronary artery disease risk levels and repressed expression of these genes. Now, activation of RA signaling by all trans retinoic acid and the anticancer drug for acute promyelocytic leukemia blocked the smooth muscle cell transition to stem cells, and that also reduced atherosclerotic burden and then promoted fibrous cap stability. So a lot of clarification of the role of smooth muscle cells, trans differentiation and the development of atherosclerotic disease Dr. Carolyn Lam: Indeed and translational implications. Interesting. Now let's review some of the other papers in this issue. Shall we? First as an, on my mind paper by Dr. Kullo on familial hypercholesterolemia, a reportable disorder. There's an exchange of letters between doctors Lazzerini and Li regarding the article autoantibody signature in cardiac arrest. Dr. Greg Hundley: Thanks Carolyn. Well, I've got a couple other papers to tell you about really a series of research letters from the mailbag. So first Daniel Modin has a Research Letter entitled "Acute COVID-19 and the Incidents of Ischemic Stroke and Acute Myocardial Infarction." Dr. Christian Mueller has a Research Letter entitled "Effect of a Proposed Modification of the Type 1 and Type 2 Myocardial Infarction Definitions on Incidents and Prognosis." And finally Carolyn a Research letter from Dr. Jizheng Wang involving an East Asian-specific common variant in TNNI3 that appears to predispose to hypertrophic cardiomyopathy. Well, Carolyn, what a great issue and thank you for that many feature, but how about we proceed on next to our feature discussion? Dr. Carolyn Lam: Let's go, Greg. Today's feature paper is one of those that I think is going to change clinical practice. So please listen up. It's about the RESTAGE-HF study. So pleased to have with us the first and corresponding author, Dr. Emma Birks from University of Kentucky Gill Heart and Vascular Institute, as well as our associate editor, Dr. Hesham Sadek from UT Southwestern to discuss this very important paper. Emma, could you please describe the RESTAGE heart failure study? Dr. Emma Birks: Let's say prospective study of patients getting left ventricular assist devices. So patients with very advanced heart failure are receiving left ventricular assist devices as either a bridge to transplant or as destination therapy. And they're seeing them for chronic heart failure because really all other medical therapy has failed and we use the pump to try and recover their own heart. So when the pump's implanted, we optimize the LVAD unloading, the maximum loading, and we give them a very aggressive medical therapy regime, unless they may not have tolerated these medications before because of poor blood pressure and renal dysfunction, we find they do tolerate them. So we give them in very aggressive doses and then we monitor their underlying function at regular intervals and try and promote recovery. So with that, we had done this in England in the past, in a single center study, but it had not yet been reproduced, which was obviously essential to have a bigger impact. Dr. Emma Birks: So we did a prospective study of six big US centers. We found that we've created a primary endpoint that was statistically powered in advance. And the primary endpoint was the number of patients that recovered within an 18 month period, that were explanted and remained off the pump and alive without transplant over for one year. So overall we found that of the 40 patients we recruited in the centers with chronic heart failure, we were able to explore 19. Of those that satisfied the primary endpoint, that was actually 40% of patients, with 52.3% being explanted overall. And importantly, patients were explanted in all six centers, so we found that the protocol was reproducible under the how much higher rate of recovery that you would otherwise see. Normally there is a database in the US that tracks outcomes from bad patients. And generally only 1-2% seemed to recover enough to be explanted generally. So this was a much bigger percentage. Dr. Carolyn Lam: Emma, first of all, congratulations, what an important trial and what stunning results. More than half of patients receiving that protocol were explanted. That's just remarkable. Now, could I just ask, what is it that you did that was different? I noticed you spent a lot of time saying this was an aggressive pharmacological protocol that was along with the LVAD unloading. Could you maybe elaborate on that a little bit more? Dr. Emma Birks: Yeah, I think that was a very important part of it. So generally I think when the LVAD goes in most centers, the patients are very sick, so most of those patients wouldn't then try and recover them or look at underlying functions. I think that was the first thing that was different was to try very hard. And then we had centers, the experience, I had done this before, it was also very helpful, all agreeing to do the same thing. We use a very aggressive regime of ACE inhibitors, Beta blockers, auto serotonin antagonists and ARBs. And that was also an unusual thing. We use the fact that they're supported with the pump to use both an ACE and an ARB together, but the idea that they have better blood flow in the cranial is way more tolerant and we give very high doses. So we use Lisinopril with the target dose of 40 milligrams, Coreg with a target dose of 50 BID, Aldactone 25 milligrams daily. Dr. Emma Birks: And then we add in losartan if they tolerate it and actually aim for 150 milligrams daily, so those doses are very high. And I think not normally given to people on LVADs. So you must've had the LVAD that don't tolerate the medical therapy and stop it. They might just have blood pressure control, etc. There is now also another INTERMACS trial, a sort of big study t…

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    Circulation November 17, 2020 Issue Nov 16, 2020
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    This week's episode features author Jaime Layland and Associate Editor Dharam Kumbhani as they discuss the ariticle "Colchicine in Patients with Acute Coronary Syndrome: The Australian COPS Randomized Clinical Trial." TRANSCRIPT BELOW: Dr. Carolyn Lam: Welcome to Circulation on the Run, your weekly podcast, summary, and backstage pass to the journal and its editors. I'm Dr. Carolyn Lam, associate editor from the National Heart Center and Duke National University of Singapore. Dr. Greg Hundley: And I'm Dr. Greg Hundley, associate editor, director of the Pauley Heart Center, VCU Health, in Richmond, Virginia. Dr. Carolyn Lam: Greg, for our feature discussion we're talking about a very hot topic these days, the role of colchicine, this time in patients with acute coronary syndrome, with Australian data. I cannot wait to get to that, but I'm going to make you wait because I want to tell you about a whole lot of other really cool papers in today's issue. Dr. Carolyn Lam: First, have you ever wondered what is the association between risk factor control and cardiovascular disease risk in type 2 diabetes? Well, today's paper answers that. It's from Dr. Wright from University of Manchester and her colleagues who looked at a retrospective cohort using data from the English practices from Clinical Practice Research Datalink, or CPRD, and the Scottish Care Information diabetes dataset. They also linked to hospital and mortality data and identified more than 101,000 patients with type 2 diabetes in CPRD matched with almost 379,000 controls without diabetes and almost 331,000 patients with type 2 diabetes in the Scottish Care Information diabetes database between 2006 and 2015. The main exposure was a number of optimized risk factors, and these are: (1) Nonsmoker; (2) total cholesterol less than 4 mmol/L; (3) triglycerides less than or equal to 1.7 mmol/L; (4) HB A1c less than 7%; and (4) systolic blood pressure less than 140 or less than 130 mmHg of high risk. Dr. Greg Hundley: Carolyn, I am very curious. Lots of data here. What did they find? Dr. Carolyn Lam: So the key findings were: Dr. Carolyn Lam: First, even with optimally managed risk factors, people with type 2 diabetes still had a 21% higher risk for all cardiovascular disease events and non-fatal coronary heart disease, and a 31% higher risk of heart failure hospitalization compared to patients without diabetes. Dr. Carolyn Lam: 2. Only 6% of people with type 2 diabetes had optimal risk factor controls, so a very low percent. Dr. Carolyn Lam: 3. The association between the number of elevated risk factors and cardiovascular disease events and mortality was much stronger in patients with type 2 diabetes but without cardiorenal disease compared to those with established cardiorenal disease. People without cardiorenal disease were also younger and more likely to have suboptimal risk factor control and fewer prescriptions for risk-factor-modifying medication. Dr. Carolyn Lam: So take-home message: Greater use of guideline-driven care, clinical decision support, drug intervention, and self-management support should be encouraged for risk factor control, and people with type 2 diabetes and without cardiorenal disease may especially benefit greatly from cardiovascular disease risk factor intervention. Dr. Greg Hundley: Very nice, Carolyn. Dr. Greg Hundley: Well, my first study comes from Dr. Gregory Lewis from Mass General Hospital in Boston, Massachusetts. Carolyn, another quiz: Have you wondered about differences in metabolism in those who exercise versus those that do not? Dr. Carolyn Lam: Greg, I wonder about that all the time when I'm running out there. Dr. Greg Hundley: In this study, cardiopulmonary exercise testing, or CPET, and metabolite profiling was performed on Framingham heart study participants aged about 54 years with 63% of them being women with blood drawn at rest in 471 subjects and then again at peak exercise in 411. Dr. Carolyn Lam: Nice, and kudos for the majority women. So what were the results? Dr. Greg Hundley: The authors observed changes including reductions in metabolites implicated in insulin resistance and increases in metabolites associated with lipolysis, nitric oxide bioavailability, and adipose browning. Exercise-induced metabolite changes were variably related to the amount of exercise performed, peak workload, sex, and body mass index. There was attenuation of favorable exercise excursions in some metabolites in individuals with higher BMI and greater excursions in select cardioprotective metabolites in women despite less exercise being performed. Four metabolite signatures of exercise response patterns were analyzed in a separate cohort. The Framingham offspring study of 2,045 were about age 55 years and 51% were women, two of which were associated with overall mortality over a median follow-up at 23 years. Dr. Greg Hundley: So Carolyn, in conclusion, the authors found acute exercise elicits widespread changes in the circulating metabolome. These findings provide a detailed map of the metabolic response to acute exercise in humans and identify potential mechanisms responsible for the beneficial cardiometabolic effects of exercise that could be useful in future studies. Dr. Carolyn Lam: Beautiful. I'm going to keep exercising and I bet you will, too, Greg. Dr. Carolyn Lam: So this next paper is a mechanistic study that revealed a special population of tissue regulatory T-cells in the heart with a unique phenotype and pro-repair function. So this comes from corresponding author Dr. Cheng from Tongji Medical College of Huazhong University of Science and Wuhan Hubei, China. He and his colleagues studied the dynamic accumulation of regulatory T-cells in the injured myocardium in mouse models of myocardial infarction, myocardial ischemia re-perfusion injury, or cardiac cryo injury, and using state-of-the-art methods such as bulk RNA sequencing, photo conversion, parabiosis, single-cell TCR sequencing, adoptive transfer, and functional assays. Dr. Greg Hundley: Carolyn, interesting. What did they find? Dr. Carolyn Lam: They showed that regulatory T-cells that accumulate in the injured myocardium after myocardial infarction or myocardial ischemia re-perfusion injuries had a distinct transcriptome which differs from lymphoid organ regulatory T-cells and other non-lymphoid tissue, and this represents a novel population of tissue regulatory T-cells in the heart. These heart regulatory T-cells were mainly thymus driven and recruited from the circulation showed active local proliferation with the IL-33/ST2 axis promoting their expansion. With the phenotype of promoting tissue repair, heart regulatory T-cells over-expressing spark contributed to elevated collagen content and enhanced maturation in infarct scars to prevent cardiac rupture and improve survival after myocardial infarction. Dr. Carolyn Lam: So in summary, this paper identified and characterized a phenotypically and functionally unique population of heart regulatory T-cells, which may lay the foundation to harness these cells for cardiac protection in myocardial infarction or other cardiac diseases. Dr. Greg Hundley: Wow, Carolyn. Very interesting. Dr. Greg Hundley: Well, my next paper comes from Dr. Michael Rubart from Indiana University School of Medicine, and as some background it's going to discuss calmodulin. So calmodulin mutations are associated with arrhythmia syndromes in humans. Exome sequencing previously identified a de novo mutation in CALM1 resulting in a P.N98S substitution in a patient with sinus bradycardia and stress-induced bidirectional ventricular ectopy. The objectives of the present study were to determine if mice carrying this N98S mutation knocked into CALM1 replicate the human arrhythmia phenotype and then to examine some of the arrhythmia mechanisms. Dr. Carolyn Lam: Okay. So what did they find? Dr. Greg Hundley: Carolyn, several techniques were used in this study. Mouse lines heterozygous for the CALM1 N98S allele generated using CRISPR and caspase 9 technology. Also, adult mutant mice and their wild-type litter mates underwent electrocardiographic monitoring. Ventricular D and re-polarization was assessed in isolated hearts using optical voltage mapping, and action potentials in wholesale currents as well as calcium influx were measured in single ventricular myocytes using patch-clamp techniques and fluorescence microscopy, respectively. Microelectrode techniques were employed for in situ membrane voltage monitoring of ventricular conduction fibers. Carolyn, it was really a comprehensive study. Dr. Greg Hundley: So what did the authors find? Heterozygosity for the CALM1 N9S mutation was causative of an arrhythmia syndrome characterized by sinus bradycardia, QRS widening, adrenergically mediated QTC interval prolongation, and bidirectional ventricular tachycardia. Second, beta adrenergically induced calcium influx L dysregulation contributed to the long QT phenotype. And finally third, they found that pause dependent early after depolarizations and tachycardia induced delayed after depolarizations originating in the His-Purkinje network and ventricular myocytes, respectively, constituted potential sources of arrhythmia in the CALM1 N98S positive hearts. Dr. Carolyn Lam: Wow. Sounds like a really comprehensive study. Thanks, Greg. Dr. Carolyn Lam: Let's talk about some other papers in this issue, shall we? There is a Perspective piece by Dr. Klassen on the COVID-19 pandemic, a massive threat for those living with cardiovascular disease among the poorest billion. There's an ECG challenge by Dr. Littman on a malignant electrocardiogram. Here's a hint: It's a pseudo-infarct pattern with important learnings. They're in an exchange of letters between Drs. Packard and Schwartz regarding the role of lipoprotein A and modification by alirocumab, a pre-specified analysis of ODYSSEY Outcomes randomized clinical trial. Dr. Greg Hundley: Oh thanks, Carolyn. I've got a couple other papers. Dr. Venkateswaran Subramanian has a Research Letter entitled Lysyl Oxidase Inhibition Ablates Sexual Dimorphism of Abdominal Aortic Aneurysm Formation in Mice. Professor Jan Cornell has another research letter entitled Colchicine Attenuates Inflammation Beyond the Inflammasome in Chronic Coronary Artery Disease. The LoDoCo2 proteomic substudy. And then finally, Dr. Sanjay Kaul from Cedars-Sinai Medical Center has a white paper reviewing the benefit/risk trade-offs in assessment of new drugs and devices. Dr. Greg Hundley: Well, Carolyn, how about we get on to that feature discussion and learn more about colchicine and acute coronary syndromes. Dr. Carolyn Lam: Yeah. Let's go, Greg. Today's feature discussion is all about colchicine, that commonly used treatment for gout that has recently emerged as a novel therapeutic option in cardiovascular medicine. I am so pleased to have with us the corresponding author of today's paper, Dr. Jamie Layland from Monash University, as well as our associate editor, Dharam Kumbhani, from UT Southwestern to discuss this very important trial data from Australia. Jamie, could you start us off by telling us all about this Australian COPS trial? Dr. Jamie Layland: We performed the Australian COPS trial back in 2015, and it finished recruiting in 2018. Essentially the trial was a trial to look at the safety and efficacy of colchicine being used in acute coronary syndromes, and this was prior to the release of important trial COLCOT. So essentially we randomized patients who presented to the hospital with an acute coronary syndrome to receive colchicine twice daily for one month followed by colchicine once a day for 11 months, and we followed these patients up for a minimum of 12 months. This was performed across 17 sites across Australia, and we looked at a composite endpoint of total death, acute coronary syndromes, unplanned urgent revascularization, and stroke. Dr. Carolyn Lam: Nice. So Jamie, could I first clarify that this was an investigator-led trial, I'll bet, and man, first of all, applause for doing this. I can only imagine how much work this took and maybe then tell us about the results. Dr. Jamie Layland: Yeah. So this was an investigator-initiated trial through a network of academic investigators across Australia on limited research funding, so through philanthropic and institutional support. So it was a huge effort over a number of years, and I'm very thankful to the support of Circulation and Dharam in supporting the paper, which I think was a great success. Dr. Jamie Layland: So the results of this trial were a surprise to us all, but essentially this was a negative trial in the sense that colchicine did not improve the primary outcome, so there was no improvement in the rate of the COLCOT outcome. And interestingly, there was an increase in total mortality, in particular non-cardiovascular deaths were higher at five compared to the placebo at one. That was over a 12-month follow-up period. Dr. Carolyn Lam: Interesting. So Jamie, I'm going to ask the question that's on everyone's mind then: What's the difference between your trial and COLCOT? Dr. Jamie Layland: That's a great question. Obviously, COLCOT was a much larger trial. COLCOT was an international trial of over 4,000 patients. Similar patient demographics, similar patient subgroup of acute coronary syndromes. However, importantly, COPS was a trial of inpatient initiation of colchicine. So patients when they had their STEMI, or non-STEMI most commonly, they were given colchicine usually within 72 hours of their index hospitalization and sometimes sooner, and this was given prior to discharge. With COLCOT, the median time of administration of colchicine was around 14 days, so slightly different groupings there. However, in COLCOT you were allowed to administer colchicine as an inpatient. You can see obviously from the European side of cardiology the impressive data when colchicine was given earlier in COLCOT how this translated to improved outcomes. So clearly, there is a potential benefit there for early administration of colchicine when you look at these two trials. Dr. Jamie Layland: But we administered colchicine acutely when patients presented in their index hospitalization. We also importantly used a different dosing schedule to COLCOT. So COLCOT was 0.5 mg daily and we used 0.5 twice daily. This was for the first 30 days, and this was based on early data from the group from western Australia who showed that when colchicine was given to patients at a BD dosing in those patients who were already on aspirin and high-potency statins, there was a significant reduction in hsCRP, obviously a commonly used marker of inflammation at four weeks, and also based on data showing that there was a heightened inflammatory response in the early days following an acute coronary syndrome. So we felt that using this twice-daily dose would be advantageous and potentially helpful for our patients. So they're the two main differences between the studies. Dr. Carolyn Lam: Thanks for explaining that so clearly. Dharam, could I have your thoughts? This was, of course, discussed heavily, right, by the editors. Could you give us a sneak peek of what else was discussed? Dr. Dharam Kumbhani: The trial is very important, although it is smaller perhaps in sample size and kind of done with less resources than COLCOT. I do think this adds to the body of literature on colchicine for secondary prevention of CAD. And one of the interesting things is that we see we also have the LoDoCo2 trial, which was a slightly different population, Jamie, which was the chronic coronary artery disease patients, but also still looking at secondary prevention. What is really striking to me is that a very similar signal in non-CV death was noted in that trial as well. Ag…

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    Circulation November 10, 2020 Issue Nov 09, 2020
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    This week's episode features author Kazuomi Kario and Associate Editor Wanpen Vongpatanasin as they discuss the article "Nighttime Blood Pressure Phenotype and Cardiovascular Prognosis: Practitioner-Based Nationwide JAMP (Japan Ambulatory Blood Pressure Monitoring Prospective) Study." TRANSCRIPT BELOW: Dr Carolyn Lam: Welcome to Circulation on the Run, your weekly podcast, summary, and backstage pass to the journal and its editors. I'm Dr Carolyn Lam, Associate Editor from the National Heart Center and Duke National University of Singapore. Dr Greg Hundley: And I'm Dr Greg Hundley, Associate Editor, Director of the Pauley Heart Center at VCU Health in Richmond, Virginia. Carolyn, when is the best time to check your blood pressure if you have a home monitoring device? Morning? Afternoon? Nighttime? And what do those nighttime fluctuations infer? Well, we'll hear a lot more in our feature discussion today, but first let's grab a cup of coffee and jump into some of the other papers in the issue. I'm going to start first this week, and my first paper comes from Dr Joe Wu at Stanford University. Carolyn, a quiz. Are all endothelial cells alike? Dr Carolyn Lam: Jeez, Greg. Okay, I'm going to hedge. I bet a lot of them share similarities, but there may be some differences. Dr Greg Hundley: Yes, Carolyn. Dr Wu and his associates perform a series of elegant experiments involving mice, and they found that certain tissue-specific endothelial cells cluster strongly by tissue, like those in the liver or the brain, whereas others from, for example, adipose tissue or the heart have considerable transcriptomic overlap with endothelial cells from other tissues. They identified novel markers of tissue-specific endothelial cells and signaling pathways that may be involved in maintaining their identity, and sex was a considerable source of heterogeneity in the endothelial transcriptome. In addition, they found that markers of heart and lung endothelial cells in mice were conserved in human fetal heart and lung endothelial cells and identified potential angiocrine interactions between tissue-specific endothelial cells and other cell types by analyzing ligand and receptor expression patterns. Dr Carolyn Lam: So interesting, Greg. You especially had me at sex differences. So, what's the take home message? Dr Greg Hundley: Right, Carolyn. So this group discovered a series of transcriptional networks that maintain endothelial cell heterogeneity, and that angiocrine and functional relationships exist between tissue-specific endothelial cells. These findings open the door for future studies that can manipulate these pathways and perhaps modify processes, like atherosclerosis, that impact the endothelium. Dr Carolyn Lam: Wow, that's cool, Greg. Well, from your paper, I'm going to a mechanistic paper too, and the next study really aimed to define cardiac fibroblasts' heterogeneity during ventricular remodeling, as well as the underlying mechanisms that regulate their function, so important questions here. And co-corresponding authors, Drs Prósper and Lara-Astiaso from Clinica Universidad de Navarra in Pamplona in Spain, as well as Dr Lindner from Maine Medical Center Research Institute in Scarborough, Maine in the U.S., and their co-authors, basically characterized cardiac fibroblasts after myocardial infarction using a whole host of very novel techniques like single-cell and bulk RNA sequencing, ATAC sequencing, and functional assays. Swine and patient samples were studied using bulk RNA sequencing. Dr Greg Hundley: Very intriguing. What did they find? Dr Carolyn Lam: They identified and characterized a unique cardiac fibroblast subpopulation that emerged after myocardial infarction in mice. These activated fibroblasts exhibited a clear profibrotic signature expressing high levels of collagen triple helix repeat containing 1 and localized into the scar. Moreover, the absence of this regulator resulted in pronounced lethality due to ventricular rupture. Finally, a population of cardiac fibroblasts with a similar transcriptome was identified in a swine model of myocardial infarction, as well as in heart tissues from patients with myocardial infarction and dilated cardiomyopathy. Dr Greg Hundley: Ah, so important information on how fibroblasts start the scar formation after infarction. So, Carolyn what's the take home message here for this research? Dr Carolyn Lam: Well, this paper really provides important information on cardiac fibroblast heterogeneity, their dynamics during the course of myocardial infarction, and the authors also redefine the cardiac fibroblasts that respond to cardiac injury and participate in myocardial remodeling. This study identifies collagen triple helix repeat containing 1 as a novel regulator of the healing scar process, and as a target for future translational studies. Dr Greg Hundley: Great, Carolyn. You're doing such a great job. This is an issue for double quiz. Have you ever heard of treatments for hypertension incorporating Chinese herbal formula gastrodia-uncaria granules? Dr Carolyn Lam: What? Are you trying to speak Chinese, Greg? Dr Greg Hundley: Yeah (affirmative) Okay. Dr Carolyn Lam: I'm sure you're going to tell us about it. Dr Greg Hundley: Right. So this study is from Professor Yan Li from Ruijin Hospital in Shanghai, Jiao Tong University School of Medicine. Gastrodia-uncaria granules Carolyn, is a mixture of Chinese herbs that dates back many years, I think thousands, and in this study was used in patients with masked hypertension. So in the study, patients with an office blood pressure of less than 140/90 millimeters of mercury, but a daytime ambulatory blood pressure of 135 to 150 millimeters of mercury systolic or 85 to 95 millimeters of mercury diastolic, were randomized one-to-one to receive the treatment of, and I'm going to abbreviate it, GUG versus placebo, 5 to 10 grams twice daily for four weeks. The primary efficacy variable was the change in daytime ambulatory blood pressure. Dr Carolyn Lam: Ah. (affirmative), so did it work? Dr Greg Hundley: Well, in their intention-to-treat analysis, daytime systolic-diastolic blood pressure was reduced by 5 and 3 millimeters of mercury in the GUG group, and 3 and 1.6 millimeters of mercury in the placebo group, respectively. The between group difference in blood pressure reductions was significant, 2.5 and 1.7 millimeters of mercury, and 24-hour blood pressure by 2 and 1.5 millimeters of mercury, but not for the clinic and nighttime blood pressures. The per protocol analysis in 229 patients produced similar results. Only one adverse event, sleepiness during the day was reported and no serious adverse events occurred. So Carolyn, a potentially inexpensive regimen found useful in China for patients with masked hypertension. To learn more of the results of this interesting study, listeners are suggested to review the article in this particular issue. Dr Carolyn Lam: Wow, interesting Greg. Okay. So from hypertension to CABG. Now we know that approximately 15% of saphenous vein grafts occlude during the first year after coronary artery bypass graft surgery, or CABG, despite aspirin use. So can ticagrelor added to standard aspirin improve saphenous venous graft patency at one year after CABG? Now this is the question that Dr ten Berg from St. Antonius Hospital from Nieuwegein in Netherlands, and colleagues sought to answer in the popular CABG trial, which was an investigator-initiated randomized double-blind placebo-controlled multicenter trial of 499 patients with one or more saphenous vein grafts, who were randomly assigned after CABG to ticagrelor or placebo added to standard aspirin. The primary outcome was saphenous vein graft occlusion at one year assessed with coronary CT angiography occurred in 10.5% of the ticagrelor group, versus 9.1% in the placebo group, so that's an odds ratio of 1.29, and it was not significant. The secondary outcome of one year saphenous vein graft failure, which was a composite of vein graft occlusion, revascularization, myocardial infarction in the myocardial territory supplied by the vein graft, or sudden death, well, that occurred in 14.2% of patients in the ticagrelor group, versus 11.6% in patients in the placebo group. Again, not a significant difference. Dr Greg Hundley: So Carolyn, a negative study? What's our take home here? Dr Carolyn Lam: In this randomized double-blind placebo-controlled trial, the addition of ticagrelor to standard aspirin after CABG did not reduce the rate of saphenous vein graft occlusions at one year. Now, this conclusion differs from some other studies that investigated this research question, and this is discussed in this editorial that you got to pick up. It's by Dr Goldman from the University of Arizona. Dr Greg Hundley: Wow, Carolyn. Great job. Well, we've got a couple more articles in this issue, and I'll start by describing a research letter by Dr Daviet regarding heparin-induced thrombocytopenia in COVID-19, and then Carolyn there's a second research letter from our own Torbjørn Omland regarding established cardiovascular biomarkers provide limited prognostic information in unselected patients hospitalized with COVID-19. And then finally, from Dr Chonyang Albert, a case series entitled, The Enemy Within: Sudden Onset of Reversible Cardiogenic Shock with Biopsy-Proven Cardiomyocyte Infection by SARS-CoV2. Dr Carolyn Lam: We've also got an ECG challenge by Dr Sreenivasan entitled, A Red Flag ECG, also known as, and have you heard of this, South African flag pattern. Okay, here's a hint. It's an important, but subtle ischemic ECG change. You got to look it up. There's an On My Mind paper by Dr Alexander on at risk of depriving patients' life-saving cardiac surgery, and those are the implications of the ischemia trial for CABG. A Research Letter shared by Dr Susen entitled, Endotheliopathy is Induced by Plasma from Critically-ill Patients and Associated with Organ Failure in Severe COVID-19. And finally, in Cardiology News, Tracy Hampton reviews the most recent literature in top journals like Nature, Metabolism, Cell, Stem Cell, and Circulation Research. Wow. Bonanza issue. So cool, but I really want to hear about the different blood pressure patterns now. Let's go to our feature discussion, shall we? Dr Greg Hundley: Absolutely. Here we go. Well, listeners we are excited to get to this feature discussion to learn more about the use of ambulatory blood pressure measures, particularly those that are collected 24 hours and during the nighttime. We have with us, Dr Kazuomi Kario from the Jichi Medical University in Japan, and our own Associate Editor, Dr Wanpen Vongpatanasin from University of Texas Southwestern Medical Center in Dallas. Welcome to you both. And Kazuomi, could you start us off please and just describe some of the background that led you to perform this study? And what hypothesis did you want to address? Dr Kazuomi Kario: The old guidelines management of the hypertension and now recommend instead of the office blood pressure, now the ambulatory blood pressure management. So for example, the ABPN and also home blood pressure monitoring, but the 24-hour blood pressure reduction is very much important, all prefer the values, but also our hypothesis took on the 24-hour blood pressure quantity reduction, but also, we should normalize our circadian rhythm. Usually blood pressure reduced by 10 to 20% at night during the sleep compared to the daytime. But the other group, is exhibited and predicated known six bars and also is either higher at night during the nighttime period compared to the daytime. And also home blood pressure variability, that hurts blood pressure in the morning. So circadian rhythm normalization and also, I recreate blood pressure variability especially is more precise. It's important for the quality control over for the hypertension management. So my hypothesis is that blood pressure reduction, the other most blood pressure, and the normalized circadian rhythm, under agitate, to keep agitate among as such. All the three components I did try to optimize 24-hour blood pressure control, so I want to confirm our hypothesis. To optimize 24-hour blood pressure control consists of these three components, 24-hour pressure reduction, and the normalize circadian rhythm and the keeping the other keep such, it shouldn't be; I have, have you left your prevention or not? That's my hypothesis and background. Dr Greg Hundley: So with our 24-hour ambulatory monitoring evaluating in this study, do we have the normal dip during the evening? Do we have a rise associated with the circadian rhythm? What is the variability of the blood pressure over time? Tell us what study population, and how did you design this study to address your hypothesis? Dr Kazuomi Kario: This population is the hypertension patients, 90% or more on the out-patients who keep the adequate, the active daily readings, and they are medicated, or usually conventional hypertension medication is the effective to reducing the office blood pressure and they can. But the other hypotension treatment may not be sustained to be reducing the nocturnal blood pressure and next morning people are taking pills. So it may be that the picture of the nighttime blood pressure and the morning blood pressure. So our hypothesis targets is already mitigated hypotension patient, but we should find out control for the current hypotension treatment. It should be the nighttime and next morning. Dr Greg Hundley: So we're addressing whether the efficacy of or any hypertensive medications are maintaining low blood pressures at night and avoiding a surreptitious rise in blood pressure when we wake up. So how many patients did you enroll and what were your study results? Dr Kazuomi Kario: The total study population number is 6,359 patients or enrolls. And we find out, compared to the daytime. Daytime also where the risk of the nighttime blood pressure other age, was more the precise this predictor of cardiovascular events. So, cardiovascular events consist of the atherosclerosis cardiac events consists of stroke and coronary artery disease. And also the nighttime blood pressure associated with the risk of the heart failure. And very interestingly, disrupted circadian rhythm, it rises at night higher during the nighttime compared to the daytime, it was independent of risks for the cardiovascular event, especially for the heart failure. So even after controlling for the daytime, even on the nighttime blood pressure, this pattern nighttime riser was an independent risk, so very interesting results. Dr Greg Hundley: So elevations of systolic blood pressure during nighttime, during sleep were associated with future atherosclerotic cardiovascular disease, as well as heart failure. And one more quick point, was there a particular magnitude of rise of that systolic blood pressure at night was important. And did you find similar results for men and for women? Dr Kazuomi Kario: Yes, similar results for men and the women. Theo other factor was age was increased. The almost the higher during the nighttime or other age of the rising pattern was 10 allowed during the nighttime compared to the daytime. Dr Greg Hundley: So even a 10% increase in systolic blood pressure at night relative to daytime was important for forecasting these adverse cardiovascular events. So Juan pen, can you help us take these results from this elegant ambulatory monitoring study and put those in the context of other study results that have evaluated 24 ambulatory monitoring of blood pressure? Dr Wanpen Vongpatanasin: I think the notion of nighttime blood pressure as the independent predictor of cardiovascular outcome has been shown in other cohort, but usually not this large magnitude, that is…

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    Circulation November 03, 2020 Issue Nov 02, 2020
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    This week's episode features author Karolina Szummer and Associate Editor Emmanouil Brilakis as they discuss the article "Comparison Between Ticagrelor and Clopidogrel in Elderly Patients with an Acute Coronary Syndrome: Insights from the SWEDEHEART Registry." TRANSCRIPT BELOW Dr Carolyn Lam: Welcome to Circulation on the Run. Your weekly podcast summary and backstage pass to the journal and its editors. I'm Dr Carolyn Lam, Associate Editor from the National Heart Center and Duke National University of Singapore. Dr Greg Hundley: And I'm Dr Greg Hundley, Director of the Pauley Heart Center at VCU Health in Richmond, Virginia. Carolyn, this week's feature article, we're going to investigate antiplatelet therapy use, but in older patients, as opposed to those that are middle-aged, and have sustained a prior acute myocardial infarction. But, before we get to that, how about we grab a cup of coffee and jump into the other papers in the issue? Dr Carolyn Lam: Absolutely, Greg. I've got my coffee right here, and I really want to start with a paper that adds to our understanding of, guess what, the sodium=glucose cotransporter 2 inhibitors, SGLT2 inhibitors, and their diuretic and natriuretic effects in combination with loop diuretics. Of course, a clinically really important question since now we know that SGLT2 inhibitors improve outcomes in patients with heart failure in whom they are likely to be co-prescribed with a loop diuretic. So, Professor Chim Lang from University of Dundee and his colleagues performed the RECEDE-CHF trial, which was a randomized double-blind placebo-controlled crossover trial of 23 patients with type 2 diabetes and HF REF taking regular loop diuretics who were randomized to the SGLT2 inhibitor empagliflozin 25 milligrams once daily or placebo for 6 weeks with a 2-week washout period. The primary outcome was change in 24-hour urine volume from baseline at week 6. Dr Greg Hundley: So, empa versus placebo. What did they find? Dr Carolyn Lam: In patients with heart failure and type 2 diabetes taking a regular loop diuretic, empagliflozin caused a significant increase in urine volume at both day 3 and week 6, compared to placebo, as well as empa also caused a significant increase in electrolyte-free water clearance. Though there was a small non-significant increase in natural uresis with empagliflozin at day 3, this was absent by week 6. These results suggest that empagliflozin may have an advantageous diabetic profile in patients with type 2 diabetes and heart failure in addition to loop diuretics, with only a short transient natriuresis. Dr Greg Hundley: Very nice, Carolyn. Great information. Diuretics, heart failure reduced ejection fraction, and empagliflozin. Well, my clinical paper comes from Dr Renato Lopes from Duke University Medical Center, and this is a sub study from the ISCHEMIA trial that evaluates whether an initial invasive strategy in patients with stable ischemic heart disease and at least moderate ischemia improves outcomes in patients with a history of heart failure or left ventricular dysfunction when the EF is greater than 35%, but less than 45%. Dr Carolyn Lam: Aw, that mid-range ejection fraction. Favorite topic. So, Greg, what did they find? Dr Greg Hundley: Those with heart failure and left ventricular dysfunction randomized to the invasive versus the conservative strategy had a lower rate of the primary outcome, 17% versus 29%. Whereas those without heart failure and left ventricular dysfunction did not, 13% versus 14%. A similar differential effect was seen for the primary outcome, all-cause mortality and cardiovascular mortality, when invasive versus conservative strategy associated outcomes were analyzed with LVF as a continuous variable for those with and without prior heart failure. Dr Carolyn Lam: Wow, that is clinically important, Greg. So, can you summarize our take home message? Dr Greg Hundley: Well, Carolyn, ischemia trial participants with stable ischemic heart disease and at least moderate ischemia with a history of heart failure or LV dysfunction, were at increased risk for the primary outcome. And in this small high-risk subgroup with heart failure and an ETF between 35% and 45%, an initial invasive approach was associated with a better event free survival. This result should really be considered for hypothesis generation and future studies. Dr Carolyn Lam: Greg, for the next paper, do you remember hydrogen sulfide? The stuff we learned about in school. It's the gas with that characteristic foul odor of rotten eggs. Well, guess what? This whole paper is about hydrogen sulfide, and in the body, it actually has antihypertensive and anti-inflammatory effects, and its endogenous generation key enzyme is cystathionine gamma lyase, or CSE, and that's expressed in CD4+ T cells. So today's paper provides insights into how all of these players work together in the development of hypertension. To investigate the pathophysiological relevance of this CSE hydrogen sulfide system, co-corresponding authors, Doctors Geng and Cai from Fuwai hospital and Chinese Academy of Medical Sciences, Peking University Medical College, as well as Dr Xu from Peking University Health Science Center in Beijing. Well, they and their coauthors performed elegant experiments involving peripheral blood lymphocytes, isolated from hypertensive patients or spontaneously hypertensive rats. They also looked at mice with CSE-specific knockout in T cells, and CD4 null mice. Dr Greg Hundley: Well, Carolyn, what did they find? Dr Carolyn Lam: Well, they found that endogenous cystathionine gamma lyase, or CSE, and hydrogen sulfide, but not cystathionine beta-synthase, in lymphocytes, responded to blood pressure changes. Deleting CSE in CD4+ T cells exacerbated angiotensin II-induced hypertension by reducing circulatory and renal T regulatory numbers. Hydrogen sulfide from CSE self-hydrates, liver kinase 1, thereby activating the AMP kinase energy pathway to promote TReg differentiation and proliferation, which then attenuates the vascular and renal immune inflammation, and thus, prevents hypertension. Dr Greg Hundley: Carolyn, this sounds like a very thorough study. What are the clinical implications? Dr Carolyn Lam: Endogenous CSE hydrogen sulfide in lymphocytes may be both a potential biomarker of hypertension, or its complications, or hydrogen sulfide donor may be a therapeutic approach to lower hypertension. Dr Greg Hundley: Great, Carolyn. Well, my next paper comes from Professor Goo Taeg Oh from Ewha Women's University, and it really involves the world of inflammation. So Carolyn, as you know, macrophages produce many inflammation-associated molecules released by matrix metalloproteinases, such as adhesion molecules, as well as cytokines, which play a crucial role in atherosclerosis. In this paper, the authors investigated the relationship between Ninjurin-1, or nerve injury-induced protein 1, a novel MMP9 substrate expression, and atherosclerosis progression. Dr Carolyn Lam: Ninjurin-1? Interesting. So, what were the results? Dr Greg Hundley: Well, Carolyn, Ninj1 expression and atherosclerosis progression were assessed in atherosclerotic aortic tissue and serum samples from coronary artery disease patients and healthy controls, as well as athero-prone, apolipoprotein E-deficient, or APOE -/- wild type mice. Two important findings, Carolyn. First, the authors in vivo results conclusively showed a correlation between Ninj1 expression in aortic macrophages and the extent of human and mouse atherosclerotic lesions. Ninj1-deficient macrophages promoted pro-inflammatory gene expression by activating mitogene-activated protein kinase, or MAP kinase, and inhibiting the phosphoinositide 3-kinase signaling pathway. Whole-body and BM-specific Ninj1 deficiencies significantly increase monocyte recruitment and macrophage accumulation in atherosclerotic lesions through elevated macrophage-mediated inflammation. Now, in addition and secondly, macrophage Ninj1 was directly cleaved by MMP9 to generate a soluble form that exhibited anti-atherosclerotic effects, as assessed both in vitro and in vivo. Treatment with the sNinj1-mimetic peptides, ML56 and PN12, reduced proinflammatory gene expression in human and mouse classically activated macrophages, thereby attenuating monocyte transendothelial migration. Moreover, continuous administration of mPN12 alleviated atherosclerosis by inhibiting the enhanced monocyte recruitment and inflammation characteristics of the disorder in mice, regardless of the presence of Ninj1. So in summary, Carolyn, Ninj1 is a novel MMP9 substrate in macrophages, and sNinj1 is a secreted athero-protective protein that regulates macrophage inflammation and monocyte recruitment in atherosclerosis. Dr Carolyn Lam: Wow, Greg, that was incredibly summarized. Thank you. Let's go through what else there is in today's issue. In cardiology news, Bridget Kuhn talks about how the pandemic intensifies the push for home-based cardiac rehabilitation options. There's a white paper by Dr Ho and colleagues, including me, describing the diagnostic dilemma of HFpEF. There's a Research Letter by Dr Gill talking about the cardiometabolic trait sepsis and severe COVID-19, a Mendelian randomization investigation. There's also a Research Letter by Dr Wu on the atlas of exosomes microRNAs secreted from human iPSC-derived cardiac cell type. Dr Greg Hundley: Carolyn, this issue is just packed with articles, because I've got five more to tell our listeners about. First, it's a research letter from Professor G. Hovingh, entitled, Inclisiran Durably Lowers LDLC and PCSK9 Expression in Homozygous Familial Hypercholesterolemia, The ORION-2 Pilot Study. Next, there's an ECG challenge from Dr Jason Gilge relating to AV conduction during atrial flutter. Next, Dr Keith Churchwell has a nice piece related to the importance of those involved in cardiovascular care and participating in their civic duties, including voting. Next, Professor Karthikeyan has nice On My Mind related to overestimation of stroke risk and rheumatic mitral stenosis and the implications for oral anticoagulation. And finally, Carolyn, another research letter, from Dr Pieter van Paassen, entitled, Neutrophils and Contact Activation of Coagulation as Potential Drivers of COVID-19. Well, Carolyn, how about we get on to our feature discussion and review in older patients, which antiplatelet therapy may be safest? Dr Carolyn Lam: Let's go! Dr Greg Hundley: Well, listeners, now we're turning to our feature discussion, and today we'll talk about antiplatelet therapy. And then we have with us, Dr Karolina Szummer from Karolinska Institutet, and our own Associate Editor, Dr Manos Brilakis from the Minneapolis Heart Institute. Welcome to you both, and Karolina, let's start with you. Could you describe for us your hypothesis and some of the background information that led you to perform this study? Dr Karolina Szummer: Thank you so much for having me here and for sharing the ideas behind our study. Current recommendations recommend that we use high-potent antiplatelet agents for treating myocardial infarctions, and in particular, elderly patients are not included. So we decided to do an observational study to look at patients in our Swedish registries treated for myocardial infarctions who were 80 years and older. Dr Greg Hundley: Very nice. Can you tell us a little bit more about your study design? And also the study population? Dr Karolina Szummer: The startup populations are all patients who were admitted to an acute coronary care unit for treatment of myocardial infarctions, and they were all 80 years and older, and they were included from 2010 to 2017. So this encompasses the period during which treatment with ticagrelor was introduced. So we are comparing to ticagrelor versus clopidogrel for the outcomes during the year, following the myocardial infarction. Dr Greg Hundley: And how many patients did you enroll in the study? And what were your study results? Dr Karolina Szummer: We enrolled, in total, 14,000 patients, and these consisted of non-STEMI and of STEMI patients. The majority, about two thirds, were non-STEMI patients. We show, in this study, elderly patients have a lower risk of readmission for myocardial infarction or stroke, but they have a higher risk of having readmission for bleeding and death. So the risk-benefit ratio seems to be skewed towards having, probably, more harm with ticagrelor being more risky than clopidogrel in this study population of elderly. Dr Greg Hundley: And was this true for both men and for women? Dr Karolina Szummer: Yes. So this was true for both men and women. And we did a sensitivity analysis. We looked closer at those who are younger than 80 years old, and in this patient population, the results selected in the same way as for our cohort of elderly, they actually did have the same benefit with a low risk of MI, stroke, and death, and high risk of bleeding. But in the elderly, we noticed a signal towards harm with an increased risk of death. Dr Greg Hundley: It sounds like with ticagrelor, did we have a lower risk of death and a slightly lower risk of myocardial infarction and stroke, but a higher risk of bleeding? Was that the findings? Dr Karolina Szummer: So for the elderly, there was a high-risk of death and bleeding with ticagrelor compared to clopidogrel, but a lower risk of ischemic component of MI and stroke. Dr Greg Hundley: And then with those under 80, those were the ones that had the lower risk of death, lower risk of MI and stroke, but the higher risk of bleeding? Dr Karolina Szummer: Yes, that's correct. So really the end point that differs most is that there is sustainment towards higher mortality in the elderly, because in both younger and elderly, the risk of readmission for bleeding was elevated in both. Dr Greg Hundley: Now, let's turn to our own Associate Editor, Manos Brilakis. Manos, can you help us put these results into perspective, relative to other studies that evaluate the efficacy of antiplatelet therapy, post myocardial infarction? Dr Emmanouil (Manos) Brilakis: I would like to start by congratulating Dr Szummer. It's a wonderful paper, and, I think, provide some new insights on how to use the medications in the ACS patients. And going on the background, if we look at the guidelines, both the European guidelines, as well as the American guidelines, what they say is that both ticagrelor, as well as prasugrel, are preferred and recommended for patients with ACS, both non-ST elevation ACS, as well as ST segment elevation myocardial infarction. And actually, European guidelines say that clopidogrel should only be used when prasugrel or ticagrelor are not available or are contraindicated. And this is based on two trials. One is the PLATO trial, and the other is the TRITON-TIMI 38, that both showed, actually, more benefit with the more intensive P2Y12 inhibitors. And this is what is extrapolated to all patient populations. But as you've heard before, there was only a minority of elderly patients that were included in those trials, about 13% to 15%, and that is why the present study is important, because it suggests that maybe we should look more carefully into the patient's age and potentially other characteristics like frailty or other comorbidities, that might actually alter the risk-benefit ratio. And maybe those medications should not be routinely given to all patients, but perhaps, elderly patients, or at least some of them, might not require, and actually be better off with clopidogrel. Dr Greg Hundley: Let's turn back to Karolina. Karolina, the study was observational. What do you see as, perhaps, a next study to follow up the results that you've brought to us with this study? Dr Karolina Szummer: So the next step…

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    Circulation October 27, 2020 Issue Oct 26, 2020
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    This week's episode includes author John McMurray and Associate Editor Brendan Everett as they discuss the effect of dapagliflozin on outpatient worsening of patients with heart failure and reduced ejection fraction. TRANSCRIPT BELOW: Dr Carolyn Lam: Welcome to Circulation on the Run, your weekly podcast summary and backstage pass to the journal and its editors. I'm Dr Carolyn Lam, Associate Editor from the National Heart Center and Duke National University of Singapore. Dr Greg Hundley: And I'm Dr Greg Hundley, Associate Editor, Director of the Pauley Heart Center, VCU Health in Richmond, Virginia. Well, Carolyn, I hear you might have an interesting feature paper? Dr Carolyn Lam: Oh, yes. I think everyone's going to look forward to this one, because we cannot get enough of the DAPA-HF study. This is another very important prespecified analysis, looking at the effect of dapagliflozin on outpatient worsening of patients with heart failure with reduced ejection fraction. Very important stuff coming right up, but first, I've got two papers looking at congenital heart disease that I'd like to share with you, Greg. Have you got your coffee? Dr Greg Hundley: Yeah, I do. Let's get going. Dr Carolyn Lam: Well, as you know, the mechanisms of congenital heart disease associated right ventricular dysfunction are not well-understood. And so, in this first paper, Dr Reddy from Stanford University and colleagues assessed lipid peroxidation, a potent form of oxidative stress, as well as mitochondrial function and structure, in right ventricular myocardium, collected from patients with and without right ventricular failure. And what they found, was that right ventricular failure was characterized by increased oxidation of membrane phospholipids, known as lipid peroxidation and its products, such as 4-hydroxynonenal, or 4-HNE. Now, 4-HNE binds to metabolic and mitochondrial proteins, and was associated with decreased myocardial energy generation and mitochondrial structural disruption with increasing severity of right ventricular hypertrophy and right ventricular failure. Mechanistically, the authors showed that 4-HNE was sufficient to decrease energy generation by inhibiting electron transport chain complex activities and mitochondrial dynamics. Dr Greg Hundley: Dr Carolyn, a lot of mechanism here. So clinically, what are the implications? Dr Carolyn Lam: I thought you'd ask. Well, since standard heart failure therapies, such as ACE inhibitors and beta blockers, are ineffective in the treatment of right ventricular failure, developing therapies focusing on new targets, such as what we talked about, the lipid peroxidation, could improve right ventricular function in congenital heart diseases by improving mitochondrial energy generation and cardiomyocyte survival. Dr Greg Hundley: Ah, very interesting, Carolyn. Dr Carolyn Lam: Thank you. The next paper, also very interesting, this time focusing on Tetralogy of Fallot, the most common cyanotic congenital heart disease. Now, this is from Dr Marijon from Hôpital Européen Georges-Pompidou in France and colleagues who highlighted, first, that sudden cardiac death represents an important mode of death in these patients with Tetralogy of Fallot, yet data evaluating the ICDs in these patient population, really, has remained scarce. And so, they use the nationwide French registry to include 165 patients with Tetralogy of Fallot with an ICD initiated in 2010 by the French Institute of Health and Medical Research. 63%, by the way, of these ICDs, were used for secondary prevention. Dr Greg Hundley: Ah, Carolyn, I can't wait to see. What did they find? Dr Carolyn Lam: So during a median follow-up of 6.8 years, 47% of patients received at least one appropriate ICD therapy. The annual incidence of the primary outcome was 10.5% overall, 7.1% in the primary prevention, and 12.5% in the secondary prevention cohorts, respectively. 43% of patients presented with at least one ICD complication, and, importantly, QRS fragmentation was the only predictor of appropriate ICD therapies. So, even before you asked me, Greg, the take home message is, patients with Tetralogy of Fallot and an ICD, experience high rates of appropriate therapies, including those implanted for primary prevention. The considerable long-term burden of ICD-related complication, however, underlines the need for careful candidate selection. A combination of easy-to-use criteria, including QRS fragmentation, might improve our risk prediction. Dr Greg Hundley: Oh, very nice summary, Carolyn. Learned a lot there. Well, I'm going to steer us to two other papers in the issue, and the first one is from the world of basic science, and it's from Dr John Cooke from the Houston Methodist Research Institute. So Carolyn, the angiogenic response to ischemia restores perfusion, so as to preserve tissue. Something we all know. A role for mesenchymal to endothelial transition in the angiogenic response is controversial, and this study utilized a murine model of hindlimb ischemia and an in vivo Matrigel plug assay, together with lineage tracing studies and single-cell RNA sequencing, to examine the transcriptional and functional changes in fibroblasts in response to ischemia, to determine if resident fibroblasts contribute to angiogenesis. Dr Carolyn Lam: Ah, it's so interesting. Do fibroblasts contribute to angiogenesis? What did they find, can't wait? Dr Greg Hundley: Yeah, Carolyn. So, in both mice and human-isolated fibroblasts, these author studies indicated the presence of subsets of tissue fibroblasts, which seemed poised to contribute to the angiogenic response. And the expansion of these subsets with ischemia was dependent upon activation of innate immune signaling, and this signaling contributed to recovery of perfusion and preservation of ischemic tissue. Really interesting findings. Didn't suspect the fibroblasts as being the contributors here. Dr Carolyn Lam: Very nice, Greg. Thank you. You've got another one. Dr Greg Hundley: Yes. So the next study is from Professor Phillips Tsao from Stanford University School of Medicine. Well, Carolyn, this is a genome-wide association study, and it's from the Million Veteran Program, testing 18 million DNA sequence variants in patients with abdominal aortic aneurysms. In the study, they identified 7,642 cases and 172,172 controls in veterans of European ancestry, with independent replication and another study in 4,009 72 cases and 99,858 controls. Dr Carolyn Lam: Wow. Dr Greg Hundley: So it's nice, they have a replication study. The authors then use Mendelian randomization to examine the causal effects of blood pressure on abdominal aortic aneurysms. And they examine the association of abdominal aortic aneurysm risk variants with aneurysms in the lower extremity, cerebral, and iliac arterial beds, and lastly, derived a genome-wide polygenic risk score to identify a subset of the population at greater risk for disease. Dr Carolyn Lam: Wow. So a GWA study with replication to identify those at risk for abdominal aortic aneurysms in huge cohorts. What did they find? Dr Greg Hundley: Well, Carolyn, this study was managed by one of our experts in GWA studies, Dr Wendy Post, and through GWAs, the authors identified 14 novel loci, and there were already 10, so it brings the total number of significant abdominal aortic aneurysm loci to 24. So a new finding there. And in their Mendelian randomization analysis, they demonstrated that a genetic increase of 10 millimeters of mercury in diastolic blood pressure, as opposed to systolic blood pressure, likely had a causal relationship with the future development of abdominal aortic aneurysms. They observed that 19 of those 24 aortic aneurysm risk variants associate with aneurysms in at least one other vascular territory. And then lastly, a 29 variant polygenic risk score was strongly associated with abdominal aortic aneurysms, independent of family history and smoking risk factors. So Carolyn, in conclusion, the authors in this study identify novel abdominal aortic aneurysm genetic associations with therapeutic implications and identify a subset of the population at significantly increased genetic risk of abdominal aortic aneurysms, independent of their family history. And their data suggests that perhaps extending current screening guidelines to include testing for those with high polygenic abdominal aortic aneurysm risk, would significantly increase the yield of many of our current screening algorithms, as you know, that predominate based on smoking and age. Dr Carolyn Lam: Wow. Very, very impressive and convincing data. Thanks, Greg. Let me tell you about other papers in today's issues. There's a research letter by Dr Tiburcy on inhibition of prolyl-hydroxylase domain enzymes, and how that protects from reoxygenation injury in the engineered human myocardium. There's another research letter from Dr Ohbe, entitled, The Risk of Cardiovascular Events after a Spouse's ICU Admission. And, one more from Dr Ganatra, on chimeric antigen receptor T cell therapy-associated cardiomyopathy in patients with refractory or relapsed non-Hodgkin lymphoma. Dr Greg Hundley: You know, Carolyn, our research letters, they really pack a punch. Such very interesting research, in a nice concise format. I've got some other publications. So first, there's an On My Mind piece from our own Charlie Loewenstein, and also Dr Solomon from Boston, Massachusetts, involving, Severe COVID-19 as a Microvascular Disease, does endothelial exocytosis drive COVID-19? And next, there's a case series entitled, ECMO Therapy for Cardiac Lymphoma, and it's from Dr Oscar Cingolani. And then finally, Carolyn, a very nice ECG challenge from Dr Bansal, related to identifying the location of an AV block. Well, Carolyn, I'm really excited to get onto your feature discussion. Dr Carolyn Lam: Let's go, Greg. Today's feature discussion looks at a prespecified analysis of DAPA-HF. My goodness, I don't think we can get enough of the data from DAPA-HF, and we have none other than be corresponding author, Dr John McMurray from University of Glasgow, to discuss this exciting paper, as well as our associate editor, Dr Brendan Everett from Brigham and Women's Hospital in Boston, Massachusetts. So John, today's feature paper, all about outpatient worsening of heart failure. Could you please start by defining what we meant by that, and why is it so important? Dr John McMurray: Our interest in this actually started back when we did PARADIGM and we had collected, in a not very systematic way, information about episodes of outpatient worsening, so by that, I mean episodes of worsening symptoms and signs, not leading the patient to go to the emergency department or be admitted to hospital. The sort of worsening that a patient might tell you about in your outpatient clinic, say they're a bit more breathless or they've got a bit more ankle swelling, and you do something about it. And that's the critical part. You decide to increase their dose of diuretic, add another drug. And in PARADIGM, we find that those episodes, first of all, were quite common, and secondly, and most importantly, we're actually prognostically very significant. They were associated with worse outcomes. So in that HF, we decided that we would collect these more systematically, we would try and define them a little bit more robustly, so we would require the investigator to report worsening signs and symptoms, and we also wanted evidence that additional treatment had been given and then that had been sustained for at least a month, because, as you know, diuretic dose can increase and decrease. Then we prespecified, as you said, Carolyn, that we would then incorporate those manifestations of worsening, as an additional component to our primary composite endpoint, which was cardiovascular death, heart failure hospitalization, worsening of heart failure requiring intravenous therapy, so an urgent visit for that, that would often be in an emergency department, and then in addition to that, this further manifestation of worsening as the extra component to this broader composite outcome that we hoped would encompass the whole range of worsening of heart failure that a patient might experience. Dr Carolyn Lam: Thanks so much, John, and you actually preempted my question of how it differed from the original primary outcome that included urgent heart failure visits, intravenous diuretic use, but not these nuance outpatient intensification of heart failure therapy that I really salute you for prospectively collecting information on. So could you summarize what you found, please? Dr John McMurray: Well, first comment to make, Carolyn, is that we included those urgent visits requiring intravenous therapy, because, as you know, in the U.S., I think there is a move to try and avoid admission and to treat patients in the ambulatory care setting or non-ward setting. Although, I have to say, as it turned out, those episodes of worsening were very infrequent. There was, I think, 33 in total in DAPA-HF, compared to almost 600 of the other episodes of worsening. The ones that we almost feel at a brainstem reflex level when we see patients in our clinics. So what did we find? Well, we find that when you add those episodes of worsening, then, of course, you considerably increase the proportion of patients who have, from what you might call, the most trivial manifestation, worsening the events we just talked about, all the way through to the very worst, in other words, death, from cardiovascular causes, in fact, so much so, that by about two years of follow-up, the Kaplan-Meier rate for that expanded composite endpoint was about 33%. And, as you know, Carolyn, we're talking about a trial that enrolled patients who were very well-treated by conventional standards and who, by and large, had mild symptoms, but 70% were NYHA class II. And yet, within two years, if you take into account all of these different manifestations of worsening, we had about one-in-three people in the placebo group that deteriorates, and we reduced the risk of deterioration with dapagliflozin, we reduced the instance of that expanded composite endpoint by 27%, and that was a highly statistically significant result. And if you like numbers needed to treat, then for that expanded very broad composite endpoint, the number needed to treat over the median follow-up of 18.2 months, was only 16. And by the way, we did confirm that those outpatient worsening events were prognostically significant as well. Dr Carolyn Lam: Very good. Brendan, could I bring you in on this? It's got such great implications, maybe you could share a little bit about what the editors thought when we saw this paper? Dr Brendan Everett: One of the key things that the editors thought when they reviewed this, was the fact that, as you pointed out, you collected these outpatient worsening episodes prospectively across the trial and did so in a very rigorous and systematic way. And I think for those of us who take care of patients with heart failure, which of course is most cardiologists, these kinds of episodes where your patient calls you and their weight's gone up, or where they've gotten a little more short of breath, then you, over the phone, intensify their diuretic regimen, are incredibly common, and, of course, bothersome to the patient and challenging for the clinician who's caring for the patients too. So I think, in that sense, it's a really important paper. That was the other aspect, I think, that the editors were interested in. But the impact, the clinical impact on day-to-day care of patients with heart failure, was substantial. The other part that I found intriguing, because of course, when you're caring for indi…

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    Circulation October 20, 2020 Issue Oct 19, 2020
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    This week's episode includes author Daniel Lackland and Associate Editor Mercedes Carnethon as they discuss the article "Forty-year Shifting Distribution of Systolic Blood Pressure with Population Hypertension Treatment and Control." TRANSCRIPT BELOW Dr Carolyn Lam: Welcome to Circulation on the Run, your weekly podcast summary and backstage pass to the journal and it's editors. I'm Dr Carolyn Lam, associate editor from the National Heart Center and Duke National University of Singapore. Dr Greg Hundley: And I'm Greg Hundley associate editor, Director of the Pauley Heart Center at VCU Health in Richmond, Virginia. Well, Carolyn, this week's feature is good news. What do I mean by good news? It's going to be a tale of how hypertension has evolved in the Southeastern United States. And it's going to review how that's progressed its treatment efficacy in both those of white, and men and women of black race. But before we get to that, how about we grab a cup of coffee and jump into some of the other articles in this issue. Dr Carolyn Lam: Man, you got my attention, Greg. You definitely got my attention. Dr Greg Hundley: Very good. Well, Carolyn, my first paper is from the world of basic science, and it's from Dr Maya Kumar from Stanford University School of Medicine. This group maps the step wise remodeling of pulmonary arteries in a robust chronic inflammatory mouse model of pulmonary hypertension. A model that demonstrates pathologic features of human disease, including right ventricular pressures, medial thickening, neointimal lesion formation, elastin breakdown, increased anastomosis within the bronchial circulation and perivascular inflammation, all of those combined. And the author sought to define the cell behaviors underlying each stage of vascular remodeling, and identified a pathway required for neointima formation with the premise being that this understanding could be pivotal in modulating progression of disease in pulmonary hypertension. Dr Carolyn Lam: Nice. So what did they find? Dr Greg Hundley: Well, Carolyn, they found surprisingly. The neointima arises from smooth muscle cells and not the endothelium. Medial smooth muscle cells proliferate broadly too thick in the media, after which a small number of smooth muscle cells are selected to establish the neointima. These neointimal founder cells subsequently undergo massive clonal expansion to form occlusive neointimal lesions. The normal pulmonary artery smooth muscle cell population is heterogeneous, and the authors identify a Notch3-marked minority subset of smooth muscle cells as the major neointimal cell of origin. Notch signaling is specifically required for the selection of neointimal founder cells, and Notch inhibition significantly improves pulmonary artery pressure in animals with pulmonary hypertension, thus perhaps providing a new mechanism from which to test therapies to thwart the progression of disease in those with pulmonary hypertension. Very interesting basic science work. Dr Carolyn Lam: Yeah. And very important too. Thanks Greg. Well, I've gotten another basic science paper too. First, let me ask you, do you think of DNA methylation much? Dr Greg Hundley: We hear a lot about that, Carolyn. Methylation and changing DNA and how it might be transcribed. Tell us more. Dr Carolyn Lam: DNA methylation is indeed a mechanism of gene transcription regulation. It's recently gained a lot of attention as a possible therapeutic target in cardiac hypertrophy and heart failure. However, its exact role in cardiomyocytes remains controversial. Thus, the authors Dr Stenzig from University Medical Center, Hamburg-Eppendorf and colleagues knocked out the main de novo DNA methyltransferase in cardiomyocytes. Also, called DNMT3A in human induced pluripotent stem cells. They then assess the functional consequences of DNA methylation deficiency under control and stress conditions in human engineered heart tissue from these knockout derived cardiomyocytes. Dr Greg Hundley: Wow, Carolyn. So what did they find here? Dr Carolyn Lam: Three main consequences of DNMT3A knockout. Number one, there were gene expression changes of contractile proteins, such as higher atrial gene expression. Number two, there was ever an activation of the glucose lipid metabolic regulator PPAR gamma, which was associated with accumulation of lipid vacuoles in these knockout cardiomyocytes. And number three, HIF-1 alpha protein instability occurred, which was associated with impaired glucose metabolism and lower glycolytic enzyme expression rendering the knockout engineered heart tissues sensitive to metabolic stress such as serum withdrawal and restrictive feeding. So in conclusion, these results suggest an important role of DNA methylation in the normal homeostasis of cardiomyocytes and during cardiac stress, which could make it an interesting target for cardiac therapy. Dr Greg Hundley: Wow, Carolyn. That was really fascinating, especially helping us understand how DNA methylation is operative, great summary there, and it's just organized so well. Learned a lot from that. I'm going to switch back and move into the world of clinical science on this next article. And it really fascinating, projecting outcomes using some biomarkers that I hadn't heard of previously. This paper is from Dr Alan Maisel from University of California, San Diego School of Medicine, and it evaluated the utility of advanced biomarkers for discriminating type one versus type two MI in patients presenting to the emergency room. In the study, two cardiologists adjudicated type one and type two MIs and six biomarkers were analyzed cardiac troponin I, copeptin, mid-regional pro-atrial natriuretic peptide, C-terminal proendothelin-1, mid-regional pro-adrenal Mendelian, and finally procalcitonin. And the prognostic utility of these biomarkers for all-cause mortality and major adverse cardiovascular events or mace included the composite of acute MI, unstable engine of petrous, re-infection, heart failure, and stroke at 180 days of follow-up. Dr Carolyn Lam: So what did they find with these very interesting biomarkers, Greg? Were they able to distinguish type one from type two MI? Dr Greg Hundley: Great question, Carolyn. So among 2,071 patients type one MI and type two MI were adjudicated in 94 and 176 participants, respectively. Patients with type one MI had higher levels of cardiac troponin I while those with type two MI had higher baseline levels of all of the other biomarkers. Next, combining all the biomarkers resulted in a similar accuracy to a model using clinical variables and cardiac troponin I, and the addition of the biomarkers to the clinical model yielded the highest AUC, under the curve. Next, other biomarkers, but not cardiac proponent was associated with mortality and mace at 180 days among all the patients with no interaction between the diagnosis of type one or type two MI. Then conclusion, Carolyn, the assessment of these new biomarkers, reflecting pathophysiologic processes occurring with type two MI may help differentiate it from type one MI. Additionally, all the biomarkers measures except cardiac troponin I were significant predictors of prognosis regardless of the type of MI, both type one and type two. Dr Carolyn Lam: That's really cool, Greg. Thanks. I'm going to end with a clinical paper too, and maybe ask you, Greg, you know so much about AI playing a role in cardiac MRI. Do you think it could do that in echo too? Dr Greg Hundley: Leading question, Carolyn. Now, you have expertise in this area as well. I bet it could be helpful. Tell us what you've got in this paper. Dr Carolyn Lam: Well, automated interpretation of echocardiography with deep neural networks and AI could support clinical recording and improve efficiency. Now while prior studies evaluated spatial relationships using still frame images and echo these authors who were led by Dr Tsai from National Cheng Kung University Hospital and college of medicine in Taiwan, these author's aim was to train and test a deep neural network for video analysis by combining spatial and temporal information to automate the recognition of left ventricular regional wall motion abnormalities on echo. So they collected a series of transthoracic echocardiogram examinations performed between July 2017 and 2018 in two tertiary care hospitals. Regional wall abnormalities were defined by experienced physiologists and confirmed by train cardiologists. First, the authors developed a 3D convolutional neural network or CNN model for view selection to ensure stringent image quality control. Second, a unit model segmented the images to annotate the location of each left ventricular wall, and third, a final 3D CNN model evaluated echo videos from four standard views before and after segmentation and calculated a wall motion, abnormality confidence level for each segment. Dr Greg Hundley: Very nice, Carolyn. So a lot going on to identifying the wall and then performing analysis on those walls' segments. So what did they find? Dr Carolyn Lam: So when a series of more than 10,600 echoes, their view selection model identified 6,454 or 61% of exams with sufficient image quality. The external validation was performed in 1,756 exams from an independent hospital. The final model recognizes regional wall motion abnormalities, and the cross validation and external validation datasets with an area under receiver operating characteristic curve of impressive now 0.91 and 0.89 respectively. In the external validation dataset, the sensitivity was almost 82% and specificity also almost 82%. And so in echo exams of sufficient image quality, it is feasible from this work for deep neural networks to automate the recognition of regional wall motion abnormalities using temporal and spatial information from moving images, further investigation is required to optimize the model performance and evaluate clinical application. Dr Greg Hundley: Sounds very exciting. Helping facilitate the identification of regional wall motion abnormalities. Well, how about if we jump into some of the other articles in the issue, would you like to go first? Dr Carolyn Lam: I'd love to Greg. There's Research Letter from Dr Wu on patient-specific induced pluripotent stem cells and how they implicate intrinsic impaired contractility in the hypoplastic left heart syndrome. There's an In-Depth paper by Dr McEvoy on lifelong aspirin for all in secondary prevention of chronic coronary syndrome. Is this still sacrosanct or is reappraisal warranted? In our Cardiovascular Case Series, Dr Grodin talks about an uncommon disease in a rare location, the mystery of the rapidly progressive cardiomyopathy. A very interesting one. You have to read it. We have a Research Letter from Dr Golbus on changes in type of temporary mechanical support device use under the new heart allocation policy. There's an ECG challenge by Dr Choxi entitled entitle, 􀍞􀁞how me the P wave.􀍟 Very interesting title. You got to pick it up. And there's an On My Mind paper by Dr Thibodeau on telehealth for uptight titration of guideline directed medical therapy and heart failure. Dr Greg Hundley: Very nice, Carolyn. Well, I've got a couple of letters. First, there's an exchange of Letters to the Editor regarding the article 􀍞􀀾ow Attenuation Noncalcified Plaque to Predict Myocardial Infarction: Are We There Yet?􀍟 And it's from Dr Alfonso and then a response from Dr Williams, and finally, a Research Letter entitled The Effectiveness of Deep Sedation for Patients with Intractable Electrical Storm Refractory to Antiarrhythmic Drugs. And it comes from Dr Raphaël Martins. Well, Carolyn, how about we move on to that feature article and learn more about hypertension in the Southeastern United States? Dr Carolyn Lam: You had me waiting right from the start, Greg. Let's go. Dr Greg Hundley: Well, listeners, welcome to our feature discussion today. And we're going to be reviewing a paper regarding hypertension and with us, we have Dr Daniel Lackland from Medical University of South Carolina and our own associate editor, Mercedes Carnethon from Northwestern University. Welcome to you both. Well, Dan let's get started with you. Can you tell us a little bit about the background information pertaining to your paper? And then what was the hypothesis that you wanted to test? Dr Daniel Lackland: For decades, we've known that the Southeastern portion of the United States is a disadvantaged area, but a great geographic diversity where you had these great rates of disease. In 1960, there was NIH-supported the Charleston Heart Study and the Evans County Georgia Heart Study. And these were two databases that were trying to actually look for some type of a factor that was in this population that was leading to the great risk, we became the custodians of this database. And then the regard study focused in or structured around 2000 began to also look at areas of the Southeast. And so the question that we had was using these cohorts, looking at 40 years, have we seen a difference in blood pressure? We did see a difference in outcomes, but have we seen also the difference in blood pressure in this high-risk group? Dr Greg Hundley: It sounds like your hypothesis was to determine whether blood pressure had diminished. And you've told us a little bit about your study design, but perhaps can you describe a little more of the study population. Dr Daniel Lackland: In the Charleston Heart study, Charleston, South Carolina, it was basically the County and there was a random sample SLED it in that area and Evans County, Georgia Friday it was just everybody that was in the County. Curtis Hames was the individual at that time and put together these two nice cohorts. These were individuals, obviously in 1960 a time before we were treating blood pressure and recognizing pressure. So there was a blood pressure measurement, there was a cholesterol measurement and basically, a general overall assessment that was having in both of these cohorts in 1960. These individuals again were followed, and then when the regard study was started in the late 1990s, it did also again, blood pressure measurements, but with a focus in the Southeastern portion of the United States. And so you were able to see this population. So it was an opportunity to look at some cohorts that were readily available and using them for a unique way to consider it in this particular high-risk area. Dr Greg Hundley: Very good. And so how many total subjects did you have? Dr Daniel Lackland: In the Charleston Heart Study and Evans County, Heart Study you were looking at several thousand and you were comparing it to a slightly higher group from the regards where you're looking at 5,000 or so. Dr Greg Hundley: So what did you find, Dan? Dr Daniel Lackland: We found some wonderful things. Certainly, the blood pressures had come down just like national studies have shown. The top of the list was these excessive blood pressures, these severe blood pressures of where 10% of the African-American men and women in 1960 had systolic blood pressures greater than 2000. These were virtually eliminated. We didn't see this later on 40 years later, I think a wonderful accomplishment. The other piece is that while all the blood pressures came down, blood pressures came down significantly greater for African-American men and women and all facets. So those blood pressures that we would have considered high 140, whatever, those all came down there, and they came down greater than we saw among white men and women. We were seeing the gap that was so huge in 1960. The racial gap, starting to come together with a very positive type of sign. The other piece excitingly, we saw the blood pressures in the lower percentiles coming down suggesting that maybe some…

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