View clinical trials related to Heart Failure.
Filter by:Heart failure with preserved left ventricular ejection fraction (HFpEF) is a syndrome associated with high morbidity and mortality rates. Systemic low-grade inflammation is acknowledged to be a fundamental pathophysiological mechanism of HFpEF. Interventions targeting inflammatory pathway is understudied in HFpEF. Colchicine is a safe and well tolerated anti-inflammatory drug, which interferes with several steps in the inflammatory process. The drug has been extensively studied in different cardiovascular pathologies except HFpEF. We assume that colchicine decreases inflammation and reduces sST2 levels in HFpEF.
The goal of this RCT (randomized controlled trial) is to investigate the effect of education and counseling program that researches developed on patients with cardiac implantable electronic devices (CIEDs) and low health literacy. The main questions are; Is there a difference between the health literacy scores of intervention and control groups after education and counseling program? Is there a difference between the CIEDs knowledge scores of intervention and control groups after education and counseling program? Is there a difference between the daily life activity scores of intervention and control groups after education and counseling program? Researches offer an education and counseling program about living with CIEDs to patients that having CIEDs for the first time. Participants answers questions in Health Literacy Survey European Questionnaire 16, cardiac implantable electronic devices knowledge scale (researches developed) and Duke Activity Index before education and counseling program, at first month, third month and sixth month after implantation. Reseraches compare scores between intervention and control groups, also different times in same groups.
This study will be done to see if ziltivekimab can be used to treat people living with heart failure and inflammation. Participants will either get ziltivekimab or placebo. Participants will get study medicine for once-monthly injections either in a pre-filled syringe to inject the study medicine into a skinfold or a pen-injector to inject the study medicine into flat skin. The study is expected to last for up to 4 years. Participants will have up to 20 clinic visits. Participants will have to use a study app on their phone to record and share information about all their injections of study medicine and to fill in questionnaires.
The progressive ageing of the population of industrialized countries is accompanied by a dramatic increase in the prevalence of chronic multi-pathologies. In the general population, HF is associated with a higher prevalence of T2DM compared with patients without HF and with marked regional differences observed in Europe and the rest of the world. In clinical trials of chronic HF patients, the prevalence of T2DM is approximately 30% in patients with reduced or preserved ejection fraction and rises to as much as 45% in hospitalized patient registries. A complex drug regimen is often associated with low adherence in patients with HF and T2DM and poor adherence is associated with adverse clinical events. Similarly, adherence to recommendations regarding lifestyle changes, such as increasing physical activity, is often limited despite these changes' favourable effects on the patient. Therefore, interventions are needed to improve all these factors and optimize adherence. The inclusion of telemedicine (telenursing, telerehabilitation, mHealth) focused on health and correct behaviour can create opportunities to implement customized and scalable solutions in populations at risk. The project will aim to evaluate for patients with chronic diseases with a complex phenotype (heart failure and type II diabetes mellitus) the effectiveness of a remote surveillance program with particular attention to lifestyle changes.
Cardiac dysfunction is common following hospital admission with sepsis and one of the most frequent causes for readmissions to hospital, however underlying mechanisms by which this might occur are unclear. The CONDUCT-ICU investigators will conduct a pilot, cohort study, characterizing cardiac function in ICU survivors of sepsis using a combination of CMR imaging, biomarkers and patient reported outcome measures to investigate mechanisms of cardiac dysfunction following sepsis. Comparisons will be made to that of the general population.
Ischemic heart disease (IHD) leads the global mortality statistics. Atherosclerotic plaques in coronary arteries hallmark IHD, drive hypoxia, and may rupture to result in myocardial infarction (MI) and death of contractile cardiac muscle, which is eventually replaced by a scar. Depending on the extent of the damage, dysbalanced cardiac workload often leads to emergence of heart failure (HF). The atrial appendages, enriched with active endocrine and paracrine cardiac cells, has been characterized to contain cells promising in stimulating cardiac regenerative healing. In this AAMS2 randomized controlled and double-blinded trial, the patient's own tissue from the right atrial appendage (RAA) is for therapy. A piece from the RAA can be safely harvested upon the set-up of the heart and lung machine at the beginning of coronary artery bypass (CABG) surgery. In the AAMS2 trial, a piece of the RAA tissue is processed and utilized as epicardially transplanted atrial appendage micrografts (AAMs) for CABG-support therapy. In our preclinical evaluation, epicardial AAMs transplantation after MI attenuated scarring and improved cardiac function. Proteomics suggested an AAMs-induced glycolytic metabolism, a process associated with an increased regenerative capacity of myocardium. Recently, the safety and feasibility of AAMs therapy was demonstrated in an open-label clinical study. Moreover, as this study suggested increased thickness of the viable myocardium in the scarred area, it also provided the first indication of therapeutic benefit. Based on randomization with estimated enrolment of a total of 50 patients with 1:1 group allocation ratio, the piece of RAA tissue is either perioperatively processed to AAMs or cryostored. The AAMs, embedded in a fibrin matrix gel, are placed on a collaged-based matrix sheet, which is then epicardially sutured in place at the end of CABG surgery. The location is determined by preoperative late gadolinium enhancement cardiac magnetic resonance imaging (LGE-CMRI) to pinpoint the ischemic scar. The controls receive the collagen-based patch, but without the AAMs. Study blood samples, transthoracic echocardiography (TTE), and LGE-CMRI are performed before and at 6-month follow-up after the surgery. The trial's primary endpoints focus on changes in cardiac fibrosis as evaluated by LGE-CMRI and circulating levels of N-terminal prohormone of brain natriuretic peptide (NT-proBNP). Secondary endpoints center on other efficacy parameters, as well as both safety and feasibility of the therapy.
Heart failure (HF) represents a major problem in today's health care landscape and is expected to grow in the next years due to an aging population and improved treatments. In many cases, the evaluation of the volemia status of patients with left ventricular dysfunction is not easy in the outpatient setting, due to limitations of physical examination in stable patients, as well as the tolerance to chronic HF they have. The aim of this study is to determine whether the bioelectrical impedance analysis (BIA) is useful in determining the real clinical stability of chronic HF, its potential implications for clinical management and patient follow-up, as well as for the adjustment of pharmacological treatment. This study is observational, single-center, single-blind and outpatient. It includes patients with a previous diagnosis of HF and left ventricular ejection fraction (LVEF) ≤ 40%, who are stable at the time of inclusion. Follow-up is estimated to be 12 months.
Severe skeletal wasting and catabolic weight loss are highly common among patients with heart failure with reduced ejection fraction (HFrEF). This prospective randomized controlled trial will compare changes in the muscle mass in the arms and the legs (appendicular lean mass) in patients with HFrEF randomized between 3 groups of no, low- or high-dose protein supplementation. The dietary protein supplementation will be Ensure(R) products manufactured by Abbott Nutrition. The Investigators hypothesize that skeletal muscle wasting in HFrEF is promoted by neurohumoral activation of catabolic metabolism (such as GDF-15 and ActRII pathways) and can be at least partially reversed by increased dietary protein intake. It is anticipated that this study will determine whether dietary protein supplementation helps to prevent muscle wasting and will advance understanding of the GDF-15 and ActRII muscle wasting pathways.
In recent years increasing number of mitral bioprosthesis implantation, especially in elderly population, is observed. Bioprosthetic valves are associated with a lower risk of thrombotic and bleeding adverse events compared with mechanical prostheses, but their use is limited due to their durability. After years numerous patients may develop bioprosthesis failure, requiring valve reintervention. Significantly burdened ones are oftentimes disqualified or not referred to surgery redo. An emerging treatment method for these patients is transcatheter mitral valve-in-valve implantation as an alternative to re-operation. This technique is applied with the use of devices previously dedicated to transcatheter aortic valve implantation (TAVI). Recent papers prove that transcatheter mitral valve replacement (TMVR) is a safe and effective procedure when performed in a selected group of high-surgical-risk patients. However, data regarding the Polish population are limited. Therefore, the aim of the study is to create a nationwide registry, collecting data from all Polish centers performing TMVR in order to describe the population of patients developing mitral bioprosthesis failure, evaluate their follow-up after TMVR as well as results of the transcatheter valvular intervention and identify potential limitations of the procedure.
The goal if this pilot randomized controlled trial is to determine the feasibility of conducting and guide the design of a definitive trial of a pharmacist-led, remotely-administered intervention to optimize medications for heart failure (HF) with reduced ejection fraction (HFrEF) as part of a multidisciplinary HF clinic. Both the intervention group and comparator group will receive usual care by the multidisciplinary HF clinic, including standard-of-care clinical pharmacy services. In addition to usual care, participants randomized to the intervention arm will receive co-management of medications by a dedicated study pharmacist with advanced training and expanded scope of practice, with the aim of achieving optimal medical therapy for HFrEF based on the 2021 Canadian Cardiovascular Society HF guidelines. The intervention will consist of 30-minute remote (telephone) encounters with a clinical pharmacist every 1-2 weeks with the aim of initiating or titrating ≥1 medication per encounter using standard protocols, for an intervention duration of up to 4 months.