View clinical trials related to Heart Failure.
Filter by:Heart failure with preserved ejection fraction (HFpEF) is a leading cause of mortality in the elderly. Outcomes of patients with HFpEF are poor and so far, no treatment has been shown to decrease morbidity or mortality. Recent animal and human studies suggest that a systemic proinflammatory state, produced by comorbidities, including aging, plays a central role in the development of HFpEF, supporting the notion that attenuating the proinflammatory state is an attractive therapeutic target for HFpEF. We have previously shown that low-level transcutaneous electrical stimulation of the vagus nerve (tVNS) suppresses inflammation in patients with atrial fibrillation. The overall objective of this proposal is to examine the effects of tVNS on diastolic dysfunction, exercise capacity and inflammation in patients with HFpEF. Our specific aims include: 1. To examine the effect of intermittent (1 hour daily for 3 months) tVNS on diastolic dysfunction and exercise capacity, relative to sham stimulation, in patients with HFpEF and 2. To examine the effect of intermittent (1 hour daily for 3 months) LLTS on inflammatory cytokines relative to sham stimulation, in patients with HFpEF. The proposed proof-of-concept studies will provide the basis for the design of further human studies using LLTS among populations with HFpEF. In light of the increasing number of elderly patients with HFpEF and the poor success of the currently available treatment options, an alternative and novel approach such as tVNS has the potential to impact clinical practice and improve health outcomes among a large number of patients. It is anticipated that these investigations will contribute to the broader understanding of the role of inflammation in the pathogenesis of HFpEF and how its inhibition can be used to provide therapeutic effects. Moreover, it is anticipated that a better understanding of how modulation of inflammation affects one of the hallmarks of HFpEF, diastolic dysfunction, will lead to the development of novel pharmacological and non-pharmacological approaches to treat this disease.
Heart Failure is a progressive disorder that begins after an insult to the heart muscle resulting in the loss of functional cardiomyocytes, or even compromising the ability of the myocardium to contract and/or relax normally. A common finding in heart failure is exercise intolerance that generates a vicious cycle, in which the individual starts to limit his activities even further due to progressive fatigue. Studies demonstrate that regular physical exercise can increase the aerobic capacity of these individuals, delay the anaerobic threshold, and reestablish the sympathovagal balance. Paradoxically, many of these patients assume an even more sedentary lifestyle, which leads to a greater physical limitation and the progression of symptoms. Patients with heart failure present a 30% reduction in their ability to perform their daily life activities when compared to healthy individuals, and this has also been attributed to reduced muscle mass, as well as lower aerobic capacity. In this sense, strength training increases the torque and muscular endurance, capacity and functional independence, as well as the quality of life, reducing the morbidity of individuals with and without cardiovascular disease, with a lower overload to the cardiorespiratory system. It is known, however, that daily life activities require a combination of resistance and muscle strength. Aerobic training does not improve muscle strength, just as traditional strength training does not ideally represent the movements performed during daily life activities, since it does not include exercises on unstable surfaces and exercises on different axes. Functional training emerges as a simple and low cost alternative for the treatment of patients with heart failure. This method consists of integrated movements of the body, in several axes, involving joint acceleration and deceleration, stabilization, strength and neuromuscular efficiency. It aims to improve the functional capacity of the individual using exercises that relate to their specific physical activity, transferring their gains effectively to their daily lives. The aim of the present study is to evaluate the effects of functional training on cardiopulmonary capacity and quality of life in patients with heart failure, comparing it to strength training.
This study aims to assess the effectiveness of a social incentive-based gamification intervention to increase physical activity in the 3 months after hospital discharge.
Patients with chronic heart failure (CHF) underwent to a hospital-based cardiac rehabilitation (CR) program in the Lisbon district Hospitals will be recruited. The participants will be randomized into one of the following exercise groups: A) combined exercise training with more aerobic training and less strength training (CAT); B) combined exercise training with more strength training and less aerobic training (CST). The investigators will test two proportions in combined training, CAT and CST. There hasn't been any data on the so called combined regimes, which include both aerobic exercise with HIIT and ST and the investigators will evaluate the effects of acute and chronic response. The research project will contribute to a better understanding in several aspects that are unexplained by scientific research.
A study to assess the safety, tolerability, and pharmacokinetics of AMG 986 given orally as a single dose to healthy participants and participants with severely impaired kidney function.
Human heart failure (HF) has been associated with reduced cardiac sodium channel current and other electrical remodeling. Recently, the investigators have shown that downregulation of cardiac Na+ channels (SCN5A) can contribute to arrhythmic risk and that upregulation can mitigate that risk. Furthermore, the investigators have shown that the reduction in cardiac SCN5A mRNA abundance is reflected in circulating white blood cells (WBCs), which also express SCN5A, and that a reduction in SCN5A is highly predictive of appropriate implanted cardiac defibrillator (ICD) therapy. These data suggest that SCN5A regulation contributes to arrhythmic risk in HF. Other electrical remodeling events thought to contribute to arrhythmic risk include reductions in K+ currents, including Ito, IK1 and IKs are responsible. These current reductions have been linked to reduced transcription, translation and expression of the corresponding channel subunits, such as Kv4.3, Kir2.1, KvLQT1, and accessory proteins including minK and K+ channel interacting protein 2. That all these ion channels are downregulated may suggest a common mechanism to reduce ion channel expression. In this application, the investigators intend to explore an entirely novel mechanism by which SCN5A and other ion channel mRNA abundances are reduced in HF.
The investigators hypothesize that a dietary intervention aimed at increasing unsaturated fatty acids (UFA) consumption is feasible and has the potential to improve cardiorespiratory fitness, metabolic flexibility and glucose tolerance in symptomatic obese heart failure with preserved ejection fraction (HFpEF) patients.
the objective of this study is to : -Determinate wether the circulating levels of iFGF23 and klotho can be a predictor biomarker of HF in patients with CKD-MBD.
Poor sleep quality is common in patients with heart failure. The limited available evidence intimates that improving sleep quality in patients with heart failure may improve morbidity and quality of life in this patient population. However, there is a paucity of evidence assessing the use of effective pharmacologic therapies in heart failure. The nonbenzodiazepine, GABA receptor agonist, zolpidem, has been found to have considerable benefits over traditional benzodiazepines as a soporific medication. The investigators hypothesize that zolpidem will safely improve sleep quality in patients with heart failure.
To compare in vivo platelet and leukocyte activation and phenotype before and after Left ventricular assist device (LAVD) implantation