BACKGROUND:Early studies on transcatheter aortic valve replacement (TAVR) outcomes showed that female sex was associated with better survival. With increased use of new-generation valves, the impact of sex on contemporary TAVR outcomes is less well known. METHODS:Retrospective analysis using institutional National Cardiovascular Data Registry STS/ACC TVT data was performed on all patients undergoing TAVR at Yale New Haven Hospital from July 2012 to August 2019. New-generation valves were Evolut PRO, Evolut R, and SAPIEN 3. Old-generation valves were CoreValve, SAPIEN, and SAPIEN XT. Log-rank test and Kaplan-Meier curves were used to compare sex differences in survival up to 1 year after TAVR. Cox modeling was used to adjust for baseline and procedural characteristic differences. RESULTS:927 consecutive patients (41.4% women) underwent TAVR. Women were older (82.8 vs 80.6 years old; p < 0.001) with higher STS mortality scores compared with men (7.6% vs 6.4%; p < 0.001) despite lower prevalence of cardiovascular comorbidities including coronary artery disease, peripheral artery disease, and smoking. Most cases used transfemoral access (90.5%) and new-generation devices (72.3%). Women received smaller valves compared with men (20-26 mm: 78.0% vs 32.9%; 29-34 mm: 22.1% vs 67.1%; overall p < 0.0001). There were no statistically significant differences between sexes in both unadjusted and adjusted 1-year mortality. CONCLUSION:Our data show no significant difference in 1-year survival between sexes using primarily new generation valves. Further studies should reassess the impact of sex on TAVR outcomes and whether newer technologies like new valve design and sizes, and CT imaging may have eliminated sex-based disparities.
Objective To evaluate the effect of colchicine and high-intensity rosuvastatin in addition to standard of care on the progression of COVID-19 disease in hospitalised patients. Design A pragmatic, open-label, multicentre, randomised controlled trial conducted from October 2020 to September 2021. Follow-up was conducted at 30 and 60 days. The electronic medical record was used at all stages of the trial including screening, enrolment, randomisation, event ascertainment and follow-up. Setting Four centres in the Yale New Haven Health System. Participants Non-critically ill hospitalised patients with COVID-19. Interventions Patients were randomised 1:1 to either colchicine plus high-intensity rosuvastatin in addition to standard of care versus standard of care alone. Assigned treatment was continued for the duration of index hospitalisation or 30 days, whichever was shorter. Primary and secondary outcome measures The prespecified primary endpoint was progression to severe COVID-19 disease (new high-flow or non-invasive ventilation, mechanical ventilation, need for vasopressors, renal replacement therapy or extracorporeal membrane oxygenation, or death) or arterial/venous thromboembolic events (ischaemic stroke, myocardial infarction, deep venous thrombosis or pulmonary embolism) evaluated at 30 days. Results Among the 250 patients randomised in this trial (125 to each arm), the median age was 61 years, 44% were women, 15% were Black and 26% were Hispanic/Latino. As part of the standard of care, patients received remdesivir (87%), dexamethasone (92%), tocilizumab (18%), baricitinib (2%), prophylactic/therapeutic anticoagulation (98%) and aspirin (91%). The trial was terminated early by the data and safety monitoring board for futility. No patients were lost to follow-up due to electronic medical record follow-up. There was no significant difference in the primary endpoint at 30 days between the active arm and standard of care arm (15.2% vs 8.8%, respectively, p=0.17). Conclusions In this small, open-label, randomised trial of non-critically ill hospitalised patients with COVID-19, the combination of colchicine and rosuvastatin in addition to standard of care did not appear to reduce the risk of progression of COVID-19 disease or thromboembolic events, although the trial was underpowered due to a lower-than-expected event rate. The trial leveraged the power of electronic medical records for efficiency and improved follow-up and demonstrates the utility of incorporating electronic medical records into future trials. Trial registration NCT04472611.
Background. Transcatheter aortic valve replacement (TAVR) is known to increase the incidence of conduction disturbances compared to surgical aortic valve replacement; however, there are limited data on the impact and duration of these conduction disturbances on longer term outcomes. Objective. To determine the differential impact of persistent versus nonpersistent new-onset conduction disturbances on TAVR-related complications and outcomes. Methods. This is a single-center retrospective analysis of 927 consecutive patients with aortic stenosis who underwent TAVR at Yale New Haven Hospital from July 2012 to August 2019. Patients with new-onset conduction disturbances within 7 days following TAVR were selected for this study. Persistent and nonpersistent disturbances were, respectively, defined as persisting or not persisting on all patient ECGs for up to 1.5 years after TAVR or until death. Results. Within 7 days after TAVR, conduction disturbances occurred in 42.3% (392/927) of the patients. Conduction disturbances persisted in 150 (38%) patients and did not persist in 187 (48%) patients, and 55 (14%) patients were excluded for having mixed (both persistent and nonpersistent) disturbances. Compared with nonpersistent disturbances, patients with persistent disturbances were more likely to receive a PPM within 7 days after the TAVR procedure (46.0% versus 4.3%, p<0.001) and had a greater unadjusted 1-year cardiac-related and all-cause mortality risk (HR 2.54, p=0.044 and HR 1.90, p=0.046, respectively). Conclusion. Persistent conduction disturbances were associated with a greater cardiac and all-cause mortality rate at one year following TAVR. Future research should investigate periprocedural factors to reduce persistent conduction disturbances and outcomes beyond one year follow-up.
BACKGROUND/PURPOSE:The prevalence of dementia and aortic stenosis (AS) increases with each decade of age. Transcatheter aortic valve replacement (TAVR) is a definitive treatment for AS, but there are scarce data on morbidity, mortality, and readmission risk after TAVR in patients with dementia. METHODS/MATERIALS:We identified all admissions for TAVR in patients with AS in the National Readmissions Database in 2017-2018 and stratified them according to the presence or absence of a secondary diagnosis of dementia. Inpatient outcomes were compared using logistic regression. Cox proportional-hazards models were used to compare 30-, 60-, and 90-day readmissions. RESULTS:A total of 48,923 index hospitalizations for TAVR were identified, of which 2192 (4.5 %) had a secondary diagnosis of dementia. Presence of dementia was associated with higher odds of delirium, pacemaker placement, acute kidney injury, and fall in hospital. The hazard of 30-day readmission was not significantly different between patients with and without dementia, but patients with dementia experienced a higher hazard of 60-day readmission (HR 1.15, 95 % CI 1.03-1.26, p = 0.011) in the unadjusted model and higher hazard of 90-day readmission in both unadjusted (HR 1.18, 95 % CI 1.08-1.30, p < 0.001) and adjusted models (aHR 1.14, 95 % CI 1.04-1.25, p = 0.004). CONCLUSIONS:Patients with dementia who undergo TAVR are at higher risk of in-hospital adverse outcomes and 60- and 90-day readmissions compared with patients without dementia. These estimates should be integrated into shared decision-making discussions with patients and families.
Isolated coronary artery ectasia (CAE) is a relatively rare clinical entity, the pathogenesis of which is poorly understood. More and more evidence is accumulating to suggest a critical inflammatory component. We aimed to elucidate any association between neutrophil to lymphocyte ratio and coronary artery ectasia. A systematic MEDLINE database, ClinicalTrials.gov, medRxiv, Scopus and Cochrane Library search was conducted: 50 studies were deemed relevant, reporting on difference in NLR levels between CAE patients and controls (primary endpoint) and/or on high-sensitive CRP, IL-6, TNF-a and RDW levels (secondary endpoint), and were included in our final analysis. (PROSPERO registration number: CRD42021224195). All inflammatory biomarkers under investigation were found higher in coronary artery ectasia patients as compared to healthy controls (NLR; SMD = 0.73; 95% CI: 0.27–1.20, hs-CRP; SMD = 0.96; 95% CI: 0.64–1.28, IL-6; SMD = 2.68; 95% CI: 0.95–4.41, TNF-a; SMD = 0.50; 95% CI: 0.24–0.75, RDW; SMD = 0.56; 95% CI: 0.26–0.87). The main limitations inherent in this analysis are small case-control studies of moderate quality and high statistical heterogeneity. Our findings underscore that inflammatory dysregulation is implicated in coronary artery ectasia and merits further investigation.
Objectives We sought to examine readmission rates and predictors of hospital readmission following TAVR in patients with ESRD. Background End-stage renal disease (ESRD) is associated with poor outcomes following transcatheter aortic valve replacement (TAVR). Methods We assessed index hospitalizations for TAVR from the National Readmissions Database from 2017 to 2018 and used propensity scores to match those with and without ESRD. We compared 90-day readmission for any cause or cardiovascular cause. Length of stay (LOS), mortality, and cost were assessed for index hospitalizations and 90-day readmissions. Multivariable logistic regression was performed to identify predictors of 90-day readmission. Results We identified 49,172 index hospitalizations for TAVR, including 1,219 patients with ESRD (2.5%). Patient with ESRD had higher rates of all-cause readmission (34.4% vs. 19.2%, HR 1.96, 95% CI 1.68–2.30, p<0.001) and cardiovascular readmission (13.2% vs. 7.7%, HR 1.85, 95% CI 1.44–2.38, p<0.001) at 90 days. During index hospitalization, patients with ESRD had longer length of stay (mean difference 1.9 days), increased hospital cost (mean difference $42,915), and increased in-hospital mortality (2.6% vs. 0.9%). Among those readmitted within 90 days, patients with ESRD had longer LOS and increased hospital charge, but similar in-hospital mortality. Diabetes (OR 1.86, 95% CI 1.31–2.64) and chronic pulmonary disease (OR 1.51, 95% CI 1.04–2.18) were independently associated with higher odds of 90-day readmission in patients with ESRD. Conclusion Patients with ESRD undergoing TAVR have higher mortality and increased cost associated with their index hospitalization and are at increased risk of readmission within 90 days following TAVR.
Background: Despite improvement in the standard of care (SOC) for hospitalized COVID-19 patients, rates of morbidity and mortality remain high. There continues to be a need for easily available and cost-effective treatments. Colchicine and rosuvastatin are both safe and well-studied medications with anti-inflammatory and other pleiotropic effects that may provide additional benefits to hospitalized COVID-19 patients. Methods and results: The Colchicine/Statin for the Prevention of COVID-19 Complications (COLSTAT) trial is a pragmatic, open-label, multicenter, randomized trial comparing the combination of colchicine and rosuvastatin in addition to SOC to SOC alone in hospitalized COVID-19 patients. Four centers in the Yale New Haven Health network will enroll a total of 466 patients with 1:1 randomization. The trial will utilize the electronic health record (Epic (R) Systems, Verona, Wisconsin, USA) at all stages including screening, randomization, intervention, event ascertainment, and follow-up. The primary endpoint is the 30-day composite of progression to severe COVID-19 disease as defined by the World Health Organization ordinal scale of clinical improvement and arterial/venous thromboembolic events. The secondary powered endpoint is the 30-day composite of death, respiratory failure requiring intubation, and myocardial injury. Conclusions: The COLSTAT trial will provide evidence on the efficacy of repurposing colchicine and rosuvastatin for the treatment of hospitalized COVID-19 patients. Moreover, it is designed to be a pragmatic trial that will demonstrate the power of using electronic health records to improve efficiency and enrollment in clinical trials in an adapting landscape. Clinical Trial Registration: NCT04472611 (https://clinicaltrials.gov/ct2/show/NCT04472611).
Recurrent chylopericardium after cardiac surgery is a rare entity. This paper presents the case of a 69-year-old female who developed a large recurrent chylopericardium related to surgical myectomy and resection of sub-aortic membrane for hypertrophic sub-valvular aortic stenosis. Treatment required pericardiocentesis followed by lymphangiogram with glue embolization of the lymphatic leak. (Level of Difficulty: Intermediate.)
BACKGROUND:Acute myocardial infarction (MI) is a major clinical manifestation of coronary artery disease. Post-MI morbidity and mortality can be reduced by lifestyle changes and aggressive risk factor modification. These changes can be applied more effectively if the patient is actively involved in the process. The hypothesis of this study was that an educational programme in post-MI patients could lead to reduced incidence of cardiovascular events.METHODS:Post-MI patients were prospectively randomised into two groups. Patients in the intervention arm were scheduled to attend an 8-week-long educational programme on top of usual treatment, while controls received optimal treatment. The primary endpoint was the composite of all-cause death, MI, cerebrovascular event and unscheduled hospitalisation for cardiovascular causes. Endpoint adjudication was blinded.RESULTS:329 patients (238 men) were included, with a mean follow-up time of 17±4 months. In the primary analysis, mean primary end point-free survival time was 597 days (95% CI 571 to 624) in controls, compared with 663 days (95% CI 638 to 687) in the intervention group (p<0.001). The HR in the univariate Cox regression analysis was 0.48 (95% CI 0.32 to 0.73; p=0.001). The raw rates of the primary endpoint were 20.8% (6 deaths, 13 MIs, 2 strokes and 14 hospitalisations) vs 36.6% (8 deaths, 22 MIs, 7 strokes and 22 hospitalisations), respectively (OR 0.46, 95% CI 0.28 to 0.74; p=0.002).CONCLUSION:These results suggest that a relatively short adult education programme offered to post-MI patients has beneficial effects, resulting in reduced risk of cardiovascular events.TRIAL REGISTRATION NUMBER:NCT04007887.
Atrial fibrillation (AF) and diabetes mellitus (DM) are commonly encountered in clinical practice. Although, the long term macrovascular and microvascular sequela of DM are well validated, the association between the less prevalent type 1 DM (T1DM) and atrial arrhythmogenesis is poorly understood. In the present review we highlight the current experimental and clinical data addressing this complex interaction. Animal studies support that T1DM, characterized by insulin deficiency and glycemic variability, impairs phosphatidylinositol 3‑kinase (PI3K)/protein kinase B signaling pathway. This pathway holds a central role in atrial electrical and structural remodeling responsible for arrhythmia initiation and maintenance. The molecular ‘’footprint’’ of T1DM in atrial myocytes seems to involve a state of increased oxidative stress, impaired glucose transportation, ionic channel dysregulation and eventually fibrosis. On the contrary only a few clinical studies have examined the role of T1DM as an independent risk factor for AF development, and are discussed here. Further research is needed to solidify the real magnitude of this association and to investigate the clinical implications of PI3K molecular signaling pathway in atrial fibrillation management.
The global burden of atrial fibrillation (AF) is constantly increasing, necessitating novel and effective therapeutic options. Sodium glucose co-transporter 2 (SGLT2) inhibitors have been introduced in clinical practice as glucose-lowering medications. However, they have recently gained prominence for their potential to exert substantial cardiorenal protection and are being evaluated in large clinical trials including patients with type 2 diabetes and normoglycemic adults. In this review we present up-to-date available evidence in a pathophysiology-directed manner from cell to bedside. Preclinical and clinical data regarding a conceivable antiarrhythmic effect of SGLT2 inhibitors are beginning to accumulate. Herein we comprehensively present data that explore the potential pathophysiological link between SGLT2 inhibitors and AF. With regard to clinical data, no randomized controlled trials evaluating SGLT2 inhibitors effects on AF as a pre-specified endpoint are available. However, data from randomized controlled trial post-hoc analysis as well as observational studies point to a possible beneficial effect of SGLT2 inhibitors on AF. Meta-analyses addressing this question report inconsistent results and the real magnitude of AF prevention by SGLT2 inhibition remains unclear. Still, while (i) pathophysiologic mechanisms involved in AF might be favorably affected by SGLT2 inhibitors and (ii) emerging, yet inconsistent, clinical data imply that SGLT2 inhibitor-mediated cardiorenal protection could also exert antiarrhythmic effects, the argument of whether these novel drugs will reduce AF burden is unsettled and mandates appropriately designed and adequately sized randomized controlled studies.
Colchicine's medical evolution is historically bound to the Mediterranean basin, since remarkable researchers from this region underscored its valuable properties. With the passing of years colchicine became an essential pharmaceutical substance for the treatment of rheumatologic and cardiovascular diseases. In light of recent findings, the therapeutic value of colchicine has grown. In clinical practice, colchicine remains underutilized in view of its proven efficacy and safety. Its complex pharmacokinetics and multifaceted anti-inflammatory role remain under investigation. The current review addresses the safe administration of colchicine in view of key drug to drug interactions. Finally, we are briefly presenting colchicine's future potential applications.
The recent pandemic has called for urgent treatment solutions for severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2)infected patients. Undeniably, the pathophysiological process of coronavirus disease-19 (COVID-19) is yet to be revealed. Although the clinical life-threatening hallmark is acute respiratory distress syndrome (ARDS) and acute lung injury (ALI), systemic COVID-19 complications may also develop. Myocardial injury appears to be a major adverse development even in the absence of pre-existing cardiovascular disease. While the most apparent mechanism of myocardial injury would be an imbalance of oxygen supply and demand due to ARDS/ ALI, histologically diagnosed myocarditis by SARS-CoV-2 has been described, while a cytokine storm, vascular inflammation/endothelial dysfunction, increased sympathetic activity/ stress cardiomyopathy, or even true type I acute coronary events as a result of plaque disruption by the aforementioned factors could also play a role. While awaiting data regarding the exact mechanism of action of SARS-CoV-2, data for SARS-CoV are implicating NLRP3 inflammasome activation initiated by viroporin E, a SARS-CoV-2 component. Exploration of drugs already introduced into clinical practice inevitably leads to consideration of the potential of colchicine. This is an inexpensive, lipid-soluble alkaloid which within 24–72 h of oral administration accumulates in granulocytes and monocytes (in multiple concentrations in comparison with plasma levels) with ensuing anti-inflammatory effects. Recently, colchicine has been recognized as an inhibitor of NLRP3 inflammasomes and mitigating interleukin activation. During the previous decade, several studies have shed light in the potential cardioprotective effects of colchicine in various clinical settings such as pericarditis, prevention of atrial fibrillation (post-cardiac surgery and post-ablation procedures), and even in the acute phase of myocardial infarction. Therefore, it was reasonable that, among others, colchicine would be tested in the context of COVID-19. Indeed, at the present time, four randomized studies regarding colchicine in COVID-19 patients have been announced: (i) COLCORONA (ClinicalTrials.gov Identifier: NCT04322682) will recruit 6000 high-risk outpatients half of whom will be administered colchicine for a month and will assess the composite endpoint of need for hospitalization or mortality; (ii) GRECCO-19 9 (Clinical Trials.gov Identifier: NCT04326790) will recruit 180 COVID-19 diagnosed patients who will be administered colchicine for up to a maximum of 21 days and will evaluate its effect on prevention of complications (C-reactive protein, troponin, clinical course); (iii) ‘Colchicine Efficacy in COVID-19 Pneumonia’ (ClinicalTrials.gov Identifier: NCT04322565) will assess whether colchicine will result in clinical improvement in a randomized fashion (n = 100); and, finally (iv) the ‘The ECLA PHRI COLCOVID’ Trial (ClinicalTrials.gov Identifier: NCT04328480) aims to recruit 2500 COVID-19 hospitalized patients who will receive colchicine co-administered (or not) with lopinavir/ritonavir. Should colchicine be successful in altering the adverse clinical course or even ameliorate COVID-19 complication is to be proved, keeping the words of William Shakespeare in mind ‘New friends may be poems but old friends are alphabets. Don’t forget the alphabets because you will need them to read the poems’.
Keywords: Type 2 diabetes mellitus, SGLT-2i, heart failure, cardiovascular, CVD, glucose.