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Active clinical trials for "Ventricular Dysfunction, Left"

Results 21-30 of 217

Ertugliflozin for Functional Mitral Regurgitation

Mitral Valve InsufficiencyLeft Ventricular Systolic Dysfunction

In patients with heart failure (HF) and left ventricular (LV) dilation, adverse LV remodeling causes tethering of mitral valve (MV) preventing sufficient coaptation of normal leaflets and resulting in functional MR. Because secondary functional MR usually develops as a result of LV dysfunction, guideline-directed medical therapy for HF forms the mainstay of therapy. However, beta blockers, angiotensin-converting-enzyme (ACE) inhibitors, and angiotensin receptor blockers (ARB) fail to reverse adverse LV remodeling and functional MR, and the morbidity and mortality of patients with functional MR remain high despite standard medical therapy. Randomized trials to explore cardiovascular (CV) benefit of the sodium-glucose co-transporter-2 (SGLT2) inhibitor have been performed and showed a significant reduction on the risk of CV death or hospitalization for HF. However, its effect on cardiac structure and function was not evaluated and further mechanistic studies are needed to interpret beneficial clinical effects of the SGLT2 inhibitors. Based on studies demonstrating SGLT2 inhibitors' favorable effects on LV modeling, investigators hypothesize that SGLT2 inhibitor, ertugliflozin, is effective on improving MR in patients with functional MR secondary to LV dysfunction and try to examine this hypothesis in a multicenter, double-blind, randomized comparison study using echocardiography.

Active29 enrollment criteria

A Study to Test the Effects of Riociguat in Patients With Pulmonary Hypertension Associated With...

HypertensionPulmonary2 more

The aim of this study is to assess whether increasing oral doses of Riociguat are safe and improve the well-being, symptoms and outcome in patients with pulmonary hypertension associated with left ventricular systolic dysfunction

Active2 enrollment criteria

Artificial Intelligence-assisted Diagnosis and Prognostication in Low Ejection Fraction Using Electrocardiograms...

Left Ventricular Systolic Dysfunction (Disorder)

This is a randomized controlled trial (RCT) to test a novel artificial intelligence (AI)-enabled electrocardiogram (ECG)-based screening tool for improving the diagnosis and management of left ventricular systolic dysfunction.

Recruiting2 enrollment criteria

HIS-Purkinje Conduction System Pacing Optimized Trial of Cardiac Resynchronization Therapy

Heart Failure,CongestiveCardiomyopathies1 more

This is a randomized, prospective, single-blinded trial to determine the overall rate of successful His-Purkinje conduction system pacing Optimized Trial of Cardiac Resynchronization Therapy (HOT-CRT) versus biventricular pacing using coronary sinus lead (BVP) to compare acute and mid-term outcomes. Acute outcomes include change in QRS duration pre-and post-pacing (degree of QRS narrowing) and incidence of major periprocedural complications (pericardial tamponade, need for lead revision, etc.). Mid-term outcomes include echocardiographic response at 6 months along with a composite clinical outcome of heart failure hospitalization, ventricular arrhythmias, crossover, and all-cause mortality.

Active9 enrollment criteria

Left Bundle Branch Pacing on Outcomes and Ventricular Remodeling in Biventricular CRT Nonresponders...

Heart FailureLeft Bundle-Branch Block4 more

Heart failure (HF) is the most common nosology encountered in clinical practice. Its incidence and prevalence increase exponentially with increasing age and it is associated with the increased mortality, more frequent hospitalization and decreased quality of life. An initial approach to the treatment of HF patients with reduced left ventricular (LV) systolic function and left bundle branch block (LBBB) was implantation of device for cardiac resynchronization therapy using biventricular pacing. This has resulted in long-term clinical benefits such as improved quality of life, increased functional capacity, reduced HF hospitalizations and overall mortality. However, conventional cardiac resynchronization therapy (CRT) is effective in only 70% of patients. And the remaining 30% of patients are non-responders to conventional CRT. Cardiac conduction system pacing is currently a promising technique for these patients. Particularly, His bundle pacing (HBP) has been developed to achieve the same results. According to other studies HBP has shown greater improvement in hemodynamic parameters comparing with conventional biventricular CRT. But, nevertheless, there are significant clinical troubles with HBP, especially high pacing threshold. In this regard, in 2017, the left bundle branch pacing (LBBP) was developed, which demonstrated clinical advantages compared to conventional biventricular CRT. Also, since 2019, left bundle branch pacing-optimized CRT (LBBPO CRT) has been used in clinical practice. These methods have become an alternative to HBP due to the stimulation of LBB outside the blocking site, a stable pacing threshold and a narrow QRS complex duration on electrocardiogram. A series of case reports and observational studies have demonstrated the efficacy and safety of LBBP and LBBPO CRT in patients with CRT indications. However, it is not enough data about impact of CRT with LBBP and combined CRT with LBBP and LV pacing on myocardial remodeling, reducing mortality and complications. According to our hypothesis, CRT with LBBP and combined CRT with LBBP and LV pacing compared with conventional biventricular pacing will significantly improve the clinical outcomes and reverse myocardial remodeling in patients who are non-responders to biventricular CRT with HF, reduced LV ejection fraction and with indications to CRT devices with defibrillator function (CRT-D) or one of the CRT-D leads replacement.

Not yet recruiting28 enrollment criteria

Acute Cardiac Dysfunction in Critical Illnes

Multi Organ FailureLeft Ventricular Dysfunction5 more

The overall aim of the study is to establish the clinical importance of cardiac dysfunction, by estimating its incidence and impact on short- and long-term outcomes, in a mixed population of critically ill patients with multi-organ failure. Pathogenesis of cardiac dysfunction in critical illness and key molecules linked to this will be explored.

Recruiting9 enrollment criteria

UC-MSC Transplantation for Left Ventricular Dysfunction After AMI

Left Ventricular DysfunctionAcute Myocardial Infarction

A pilot study to evaluate the safety and feasibility of umbilical cord mesenchymal stem cells in the treatment of acute myocardial infarction by catheter transplantation

Not yet recruiting13 enrollment criteria

Effects of Intrathecal Local Anesthetics on Left Ventricular Global Longitudinal Strain

Left Ventricular DysfunctionSpinal Anesthetics Causing Adverse Effects in Therapeutic Use1 more

The objective of this study is to assess the effects of intrathecal local anesthetics on left ventricular global longitudinal strain (LVGLS) using transthoracic echocardiography (TTE).

Recruiting7 enrollment criteria

Cardioprotective Effects of Nebivolol Versus Placebo in Patients Undergoing Chemotherapy With Anthracyclines...

Breast CancerLymphoma5 more

As the cancer-related prognosis improves thanks to recent advances in cancer-targeted therapies, the prognostic burden of chemotherapy-related complications - including cardiotoxicity - is increasingly recognised. So far, the evidence supporting pharmacological preventive strategies in cardio-oncology has been inconsistent and conflicting, and there is a clear need for well-designed trials with novel interventions. In this study, by using cardiac magnetic resonance, the investigators want to assess if a commonly used beta-blocker with a unique pharmacological profile, i.e. nebivolol, can prevent cardiac dysfunction in patients with breast cancer or diffuse large B-cell lymphoma undergoing chemotherapy with anthracyclines.

Active15 enrollment criteria

Sex Differences in Myocardial Steatosis Induced Left Ventricular Dysfunction

Heart DiseasesLeft Ventricular Dysfunction

To test the specific research questions, healthy men and age-matched healthy premenopausal females will be enrolled. Subjects will undergo cardiac magnetic resonance imaging and spectroscopy (MRI/MRS) to evaluate cardiac morphology/function and fat metabolism. To acutely elevate myocardial triglyceride content, subjects will be asked to abstain from eating for 2 days (reproducibly causes a significant and physiological increase in myocardial fat deposition, transiently). Subjects will be allowed water and/or an isotonic saline solution in order to maintain hydration status. After screening, subjects will meet with the research coordinator or an investigator for a discussion, with opportunity for questions, before applicable consent forms are obtained. The subject will be screened for metal in or on their body and claustrophobia using a standard MR screening form. A venous blood sample will be taken for measurement of metabolic health, circulating hormones, and systemic inflammation. Imaging will include cine imaging for global morphology and function, tissue tagging for regional tissue deformation, spectroscopy for fat quantification. After baseline images of the heart are obtained, the subject will be asked to squeeze a MR-safe handgrip dynamometer at 30% of their maximum while images of the heart are obtained. Blood pressure will also be measured at rest and during stress. Each MRI will take approximately 90-120 minutes. Aim 1 will test the hypothesis that cardiac steatosis induced left ventricular dysfunction is sexually dimorphic, by comparing age-matched men and premenopausal women before and after 48 of fasting. Subjects will complete the MRI/MRS protocol described above before and after the fasting intervention. Aim 2 will test the hypothesis that estrogen is protective against cardiac steatosis-induced dysfunction, by suppressing ovarian sex hormones with a GnRH antagonist and repeating the fasting studies with and without estrogen add-back. 30 female subjects will be treated with GnRH antagonist and repeat the 48 hour fasting intervention and cardiac MRI/MRS protocol. 15 of the subjects will receive estrogen add-back using a transdermal patch, the other 15 subjects will receive a placebo patch. Aim 3 will test whether plasma and myocardial fatty acid composition is sexually dimorphic, by performing comprehensive plasma and myocardial lipidomics assessment.

Recruiting12 enrollment criteria
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