View clinical trials related to Heart Failure.
Filter by:Results from recent clinical trials on bone marrow mononuclear cell (BM-MNC) transplantation show that this intervention can help reduce the incidence of heart failure (HF) after acute myocardial infarction (AMI). However, no study has evaluated the effect of the transplantation of mesenchymal stem cells (MSCs) on a clinical endpoint such as HF. This single-blinded, randomized, multicenter trial aims to establish whether the intracoronary infusion of umbilical cord-derived Wharton's jelly MSCs (WJ-MSCs) helps prevent HF development after AMI. The study will enroll 240 patients 3 to 7 days following an AMI treated with primary percutaenous coronary intervention (PPCI). Only patients aged below 65 years with impaired LV function (LVEF < 40%) will be included. They will be randomized to receive either a single intracoronary infusion of WJ-MSCs or standard care. The primary outcome of this study is the assessment of HF development during long-term follow-up (four years). Since the efficacy of MSCs is higher than BM-MNCs after AMI in the improvement of LVEF, it would be probable that these cells may have a better clinical effect as well. However, no study has evaluated the impact of the transplantation of MSCs on a clinical endpoint such as HF. This study will help determine whether or not the infusion of intracoronary WJ-MSCs in patients
The aim of this trial is to assess the effect of Empagliflozin on lipid and glucose metabolism as well as volume homeostasis and renal function in elderly and obese patients with increased risk of developing heart failure. No history of established heart failure or diabetes is allowed. The primary hypotheses are that 6 months treatment with Empagliflozin 10 mg a day will: 1) decrease epicardial adipose tissue volume, and 2) reduce estimated extracellular volume compared with placebo.
The purpose of this study is to assess whether clinical ultrasound (CU)-guided treatment in acute heart failure (AHF) is superior to the standard care (SC)-guided treatment. We would like to see if using a portable ultrasound to guide diuretic therapy for AHF patients will prevent hospital readmissions in the setting of hospitalization at home (HAH). This study will use a handheld ultrasound called IVIZ-Sonosite and aims to see whether changing diuretic therapy based on the performance of the ultrasound will result in the less hospitalizations for heart failure as compared to performing just SC-guided therapy.
The effects of home noninvasive ventilation on renin-angiotensin system (RAS), kallikrein-kinin system (KKS) and cardiac remodeling in patients with chronic stable heart failure have not been reported. This project aims to clarify the efficacy and safety of home non-invasive ventilation in patients with chronic heart failure complicated with sleep-disordered breathing. First, patients with chronic stable heart failure were selected and monitored by polysomnography. Patients with sleep apnea hypopnea syndrome (SAHS, AHI≥15) were randomly divided into two groups: the treatment group was treated with non-invasive ventilator at home (≥5h/ night); The control group was only given routine treatment. After 6 months of follow-up, the effects of sleep disordered breathing and noninvasive ventilation on RAS, KKS, cardiac remodeling and function and cardiovascular adverse events in patients with chronic heart failure were evaluated. The results are helpful to further reveal the role of sleep disordered breathing in the occurrence and development of chronic heart failure, and provide a new diagnosis and treatment strategy for chronic heart failure.
Infants and children with heart conditions require treatment in children's hospitals that are typically located in large cities. This creates challenges for children and families who need to travel long distances to come to appointments. Providing quality care to children with heart disease has further been challenged by the COVID-19 pandemic, with a shift towards decreased in-person contact and an increase in virtual visits, where assessment by doctors and nurses is more limited. This research study will look at how families of children with heart disease access care and how investigators can improve care with virtual technologies. This will involve testing a new home-based virtual care platform that uses Bluetooth technology to connect weight scales, oxygen measuring devices and blood pressure cuffs with a smartphone app, allowing parents to easily use these devices and send accurate data directly to the cardiology team. Investigators will obtain feedback from families, patients, and healthcare providers about how this helped or did not help them, and adjust the technology as needed to make it better.
Heart failure with preserved ejection fraction has a high mortality, which is contrasted by a total absence of therapy options besides symptomatic diuretic treatment. This study aims to explore the potential of renal denervation as a treatment option for heart failure with preserved ejection fraction.
The PACE-FIB trial is a multicentre, randomised, open-label clinical trial. Patients older than 18 years, with permanent AF, LVEF>40%, average resting heart rate ≤ 110 beats per minute (bpm), at least one hospitalisation due to HF in the previous year and basal NT-proBNP level>900 pg/ml will be randomised to either CSP and subsequent AV node ablation (intervention group) vs. pharmacologic rate control optimised according to clinical practice guidelines. The impact of both strategies on a composite primary endpoint of all-cause mortality, HF hospitalisation and worsening HF will be evaluated during a 36-month follow-up.
This study is a prospective registry that aims to predict readmissions in patients with heart failure, using -omics, machine learning, patient reported outcomes, clinical data and other high-dimensional data sources.
Pediatric, adolescent and young adult cancer survivors (PAYA-CS) are at higher risk of cardiovascular (CV) morbidity and mortality. This is a consequence of prior cancer-related therapies that have the potential of producing cardiac dysfunction, reducing cardiorespiratory fitness (reduced VO2peak) and psychosocial morbidities (i.e., anxiety and depression). A reduction of physical activity levels can evoke functional limitations resulting in a vicious cycle of reduced exercise tolerance and physical deterioration. To date, there is limited evidence on the use of non-pharmacological strategies such as Cardio-Oncology Rehabilitation (CORE) including structured exercise, behavioural support and risk factor management to improve the outcomes of this underserved population. The HIMALAYAS study is a randomized controlled trial designed to evaluate the impact of a CORE intervention (consisting of six-months home and onsite-based structured moderate to high-intensity aerobic exercise training and CVD risk factor management) on CV and psychosocial health, and the cardiovascular disease risk in PAYA-CS with mild heart dysfunction (stage B heart failure) compared to standard of care (i.e. providing guidance on the current exercise recommendations for cancer survivors). The primary objective of the HIMALAYAS study is to determine whether a six-month supervised CORE intervention, consisting of individualized moderate to high-intensity aerobic exercise training, CVD risk factor modification and enhanced online behavioral support, improves cardiorespiratory fitness (VO2peak; primary outcome), cardiac function, CVD risk factors and biomarkers, and patient-reported outcomes (PROs) at six- months follow-up compared to standard of care (CON) in PAYA-CS with stage B heart failure. The secondary objective is to assess the same outcomes at 12- and 24-months follow-up. We will recruit 336 patients across 5 sites in Canada and upto 134 patients at UHN in 3 years and conclude in 6 years.
Global longitudinal strain emerged as an important predictive marker that could be assessed during echocardiography. It enabled the detection of subclinical myocardial systolic dysfunction, without observable reductions in cardiac output or left ventricular ejection fraction, often years before diabetes induced heart failure. In asymptomatic T2D patients with no history of cardiovascular disease, an impaired global longitudinal strain is a predictor of future adverse left ventricular remodeling and adverse cardiovascular events. Exercise training is a promising intervention to interfere in the diabetes induced heart failure pathophysiology. However, the impact of different exercise modalities (e.g. intensity and volume) on the global longitudinal strain in type 2 diabetes (T2D) is unknown.