View clinical trials related to Heart Failure.
Filter by:Researchers are looking for a better way to treat people who have chronic heart failure with reduced ejection fraction (HFrEF). HFrEF is a long-term condition where the left side of the heart does not pump blood out to the body as well as it should. Blood and fluid may collect in the lungs, blood vessels, and tissues causing shortness of breath or tiredness. Over time, heart failure can lead to other serious medical conditions that may result in hospital stays and death. Despite various available treatments for long-term HFrEF, people may experience worsening of their condition, called worsening heart failure events. Worsening heart failure events require the patient to either stay in the hospital or receive special treatment to remove excess water from the body. The drug vericiguat works by increasing the activity of an enzyme called soluble guanylate cyclase (sGC). The sGC enzyme helps to regulate the heart and blood circulation. Vericiguat was recently approved in India for doctors to prescribe to people with HFrEF after they had a worsening heart failure event, with a request to specifically gather information on vericiguat therapy in Indians. Therefore, the main purpose of this study is to learn more about how well vericiguat works in Indian people with HFrEF who receive vericiguat after a worsening heart failure event. Work well means to prevent: - death due to heart and circulatory events, or - hospital stays. Researchers will collect the number of participants treated with vericiguat who have either of this. To find out how safe vericiguat is, researchers will also collect the number of participants who have medical problems during the study. Doctors keep track of all medical problems, even if they do not think the adverse events might be related to the study treatments. The participants will take vericiguat as tablet by mouth and as prescribed by their doctors according to the local label. Each participant will be in the study for approximately 1 year including a screening period of up to 1 month. Up to 8 visits to the study site are planned. During the study, the study team will: - check vital signs - do physical examinations - examine heart health using electrocardiogram ECG and if needed echocardiography - take blood and urine samples
The goal of this clinical trial is to assess whether a peri-operative intervention with nutritional immune modulating intervention (Ensure Surgery Immunonutrition shake) has beneficial effects on the complex interplay between gut microbiome, systemic inflammation and malnutrition that is commonly present in advanced heart failure and the adverse events associated with left ventricular assist device (LVAD) placement in hospitalized advanced heart failure patients awaiting LVAD implantation. The main questions it aims to answer are: - Will pre-surgical supplementation with Ensure Surgery affect gut microbial composition and levels of inflammation among heart failure patients undergoing LVAD implantation? - Will pre-surgical supplementation with Ensure Surgery affect post-surgical morbidity (e.g., infections, intensive care unit length of stay (LOS)) and mortality? Participants will be evaluated for malnutrition and will be given Ensure Surgery Immunonutrition shake to drink in the days preceding their LVAD surgery. Blood and stool samples will be collected at prespecified timepoints before and after surgery. Researchers will compare malnourished participants drinking Ensure Surgery 3/day with well-nourished participants randomized to drink either 1/day or 3/day to see if any of the above supplementation strategies change the gut microbial composition, levels of inflammation, and post-surgical morbidity and mortality.
Telemedicine is gradually becoming accepted in heart failure (HF) management. Meta-analyses show a positive effect of telemedicine on hospital admission, length of stay, mortality, and costs. However, the magnitude of the effect is heterogeneous because of the variety in the HF population using telemedicine, components of telemedicine, and variety in considered costs. Despite the lack of clear guidance how to implement telemedicine within routine HF management, implementation of telemedicine is advocated by payers, private companies, and patient organizations. In this nationwide study the investigators aim to identify in which subgroup of HF patients telemedicine is (cost-)effective, and which intervention components of telemedicine are most (cost-)effective.
Cardiovascular disease is the leading cause of death worldwide. Advanced cardiovascular imaging using Magnetic Resonance Imaging (MRI) has proven to be effective in providing gold standard myocardial tissue characterization. Moreover, the intrinsic advantage of MRI's lack of exposure to ionizing radiation is particularly beneficial. At the same time, blood work can be very useful in early detection of certain cardiomyopathy, such as amyloid. However, there is a lack of agreement of on which markers are the most sensitive. This multi-study will allow us the unique opportunity to form a more comprehensive understanding for various cardiovascular diseases. Our team has developed novel cardiac MRI techniques that leverages endogenous tissue properties to reveal a milieu of deep tissue phenotypes including myocardial inflammation, fibrosis, metabolism, and microstructural defects. Among these phenotypes, myocardial microstructure has proven to be most sensitive to early myocardial tissue damage and is predictive of myocardial regeneration. In this study, the investigators aim to further study the importance of cardiac microstructure revealed by MRI in patient and healthy population and compare this novel technology with conventional clinical biomarkers.
The goal of this clinical trial is to know if telemonitoring and telematic follow-up reduces the healthcare resources utilization, healthcare costs and non-healthcare costs of patients with high-risk heart failure. The main questions it aims to answer are: - Does telematic follow-up reduce de use of healthcare resource utilization of patients with heart failure? - Is telematic follow-up cost-efficient in terms of reducing direct healthcare costs in heart failure patients? - Is telematic follow-up cost-efficient in terms of reducing non-healthcare costs in heart failure patients? Participants will be randomized to usual care (control group) or telematic care (interventional group). Patients randomized to the interventional group will be included in a protocol of daily automatic telemonitoring of arterial pressure, peripheral oximetry, heart rate and weight, and telematic consultations lead by a heart failure clinical specialized team. Researchers will compare the healthcare resource utilization, healthcare and non-healthcare costs of patients randomized to control vs. interventional group.
The goal of this clinical study is to compare treatment regimens of loop diuretics in patients with decompensated heart failure. The main aim is to answer if early change from intravenous to oral loop diuretics is safe and effective.
Type 2 diabetes (T2D), especially when associated with metabolic syndrome (MS) is at high risk to develop heart failure with preserved ejection fraction (HFpEF) or heart failure with mildly reduced ejection fraction (HFmrEF), and the specific impact of T2D+MS in cardiac function impairment is usually known as "diabetic cardiomyopathy" (DC). Cardiac remodelling (ie hypertrophy) and subtle myocardial dysfunction are highly prevalent in T2D+MS but not specific enough to predict further HFpEF or HFmrEF. Also, current biomarkers can identify but do not predict HFpEF or HFmrEF in T2D patients; Furthermore, specific biomarkers are needed. Peripheral blood mononuclear cells (PBMC) obtained from a peripheral blood sample can provide insights from calcic and inflammatory pathways, and may identify more specific molecular signatures shared between T2D+MS and HFpEF.
The investigators aim to prospectively test the comparative effectiveness of His or Left bundle branch pacing in relation to patient centered outcomes (quality of life, physical activity, heart failure hospitalization, mortality) and comparative safety in relation to device-related complications and re-interventions (e.g., lead dislodgement, infection) relative to standard of care biventricular pacing in patients with heart failure due to left ventricular systolic dysfunction (LVEF≤50%) and with either a wide QRS (≥130 ms) or with/anticipated >40% pacing who are already receiving current standard heart failure pharmacological therapy.
The primary purpose for this study is to support the hypothesis (pilot data) that the use of the CPM system reduces the rate of HF related events and the related healthcare cost. The study will also measure the impact on quality of care and patient satisfaction. In order to support the primary objective, the study will compare the outcomes and costs for patients using the CPM system against those who are not. This can either be done using institutions averages, if available, or through a control group.
Cardiovascular disease is the leading cause of death worldwide. It is becoming clearer that heart failure (HF) is closely associated with body's metabolism. Even before the heart becomes weaker, it responds to the stresses by changing the fuels it burns, which results in a reduction in the heart's metabolic efficiency that worsens the heart's condition. Since the heart burns so much fuel and consumes fats and carbohydrates along with other available substrates, any changes in its metabolic efficiency could impact metabolism throughout the body. Specifically, HF is characterized by limited flexibility in substrate utilization leading to an overall energetic deficit. Such energetic deficit is associated with progressive remodeling and alter cardiac hemodynamics. For example, obesity is a widely known risk factor for cardiovascular disease likely lie in how the heart handles energy (substrate utilization and energetics). One commonly recommended treatment for cardiovascular disease, especially coronary artery disease (CAD) or congestive heart failure (CHF), is cardiac rehabilitation. Cardiac rehabilitation for symptomatic cardiovascular disease has been shown to promote a healthy lifestyle, improve physical health and reduce cardiovascular death iii with an apparent dose-dependent response. Participation results in a reduced risk of hospitalization and revascularization procedures, and improved functional status in randomized controlled trials. Thus, cardiac rehabilitation is recommended for individuals with symptomatic CAD or CHF by the American College of Cardiology and American Heart Association. In addition, exercise training in preclinical animal models mirroring the exercise component of cardiac rehabilitation routines have shown increased myocardial regeneration and cardioprotective molecular effects ameliorating adverse myocardial remodeling. Despite these benefits, there is vast heterogeneity in the efficiency of cardiac rehabilitation on the individual level with large variances in improved exercise capacity and cardiac function recovery. Personalization of cardiac rehabilitation necessitates a non-invasive approach to monitor the direct beneficial effects on the heart and more ideally, predict efficacy at baseline. Taken together, understanding how metabolic interventions including bariatric surgery and cardiac rehabilitation change myocardial structure and function is critical for the prevention, diagnosis and prognosis for patients with cardiovascular diseases. Advanced cardiovascular imaging using Magnetic Resonance Imaging (MRI) has proven to be effective in providing gold standard myocardial tissue characterization. Our team has developed novel cardiac MRI techniques that leverages endogenous tissue properties to reveal a milieu of deep tissue phenotypes including myocardial inflammation, fibrosis, metabolism, and microstructural defects. Among these phenotypes, myocardial microstructure has proven to be most sensitive to early myocardial tissue damage and is predictive of myocardial regeneration. In collaboration with cardiologists at Cleveland Clinic, the investigators aim to study how myocardial microstructure revealed by cardiac MRI changes cardiovascular disease patient population before and after metabolic interventions.