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Cardiomyopathies clinical trials

View clinical trials related to Cardiomyopathies.

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NCT ID: NCT04303364 Recruiting - Clinical trials for Cardiomyopathy, Diabetic

CARdiomyopathy in Type 2 DIAbetes Mellitus

CARDIATEAM
Start date: October 2, 2020
Phase:
Study type: Observational

The objective of the CARDIATEAM clinical study is to assess the uniqueness of diabetic cardiomyopathy (DCM) relative to other forms of cardiomyopathy using unsupervised clustering approaches based on deep phenotyping (clinical, imaging and biological) information.

NCT ID: NCT04294771 Recruiting - Clinical trials for Cardiovascular Diseases

JOint Use of Database to Identify Risk Factors of CARDio-vascular Toxicity Induced by Immune Checkpoint Inhibitors

JOCARDITE
Start date: January 1, 2019
Phase:
Study type: Observational

Immune checkpoint inhibitors (ICIs) might induce high grade immune-related adverse events (irAEs) involving the cardio-vascular system. This study investigates reports of cardio-vascular toxicity associated with treatment including anti-PD1, Anti-PDL-1, and Anti CTLA4 classes using the World Health Organization (WHO) database VigiBase, Assistance Publique Hopitaux de Paris Entrepot de Données de Santé (APHP.EDS), French Système National Des Données de Santé (SNDS) Databases and a retrospective international multicenter registry of ICI-associated myocarditis

NCT ID: NCT04291352 Recruiting - Thalassemia Major Clinical Trials

Thalassemic Iron Overload Cardiomyopathy is Ameliorated by Taurine Supplementation

TICATS
Start date: June 1, 2020
Phase: N/A
Study type: Interventional

Hypothesis: Taurine, in combination with standard iron chelation therapy, is more effective than chelation therapy alone in reducing cardiac iron overload, oxidative stress and cardiac damage in β-Thalassemia. Protocol: Sixty subjects with transfusion dependent β-Thalassemia receiving deferasirox iron chelation therapy will be recruited and randomized in a 1:1 ratio to either (1) placebo and continuation of their iron chelation or (2) a combination of iron chelation plus taurine. Transfusion and safety visits will be scheduled monthly with clinical/biochemical assessment visits every three months. The efficacy of taurine combined with standard chelation therapy will be assessed at baseline and 12 months posttreatment by both cardiac T2*MRI, and cardiac function. The recruitment period is projected to be 12 months from initiation.

NCT ID: NCT04265040 Recruiting - Amyloidosis Clinical Trials

DZHK TORCH-Plus is a Registry for Patients With Cardiomyopathies and Serves as Source for Cardiovascular Research Studies

TORCH-Plus
Start date: August 18, 2020
Phase:
Study type: Observational [Patient Registry]

The DZHK TranslatiOnal Registry for CardiomyopatHies (DZHK TORCH) represents a unique resource of clinical data and high quality biological samples to enable innovative clinical and molecular studies on cardiomyopathies (CMP). As a multi-center German cardiomyopathy registry, TORCH has been prospectively admitting patients since December 2014. 2,300 patients were recruited as planned. Taken together, patient data showed that the prevalence of these diseases is much higher in men than in women, atrial fibrillation is common in all forms of CMPs as well as rare forms of disease indicate a higher risk and higher morbidity. This DZHK TORCH register is now to be expanded with a second phase (DZHK TORCH-Plus). The second phase DZHK TORCH-Plus consists of 4 main modules: 1. "Clinical phenotyping, follow-up & biosampling" 2. "Genomics", 3. "Inflammation" and 4. "Biomarker". The central aims are 1) to significantly increase the number of probands (n = 4340) in order to better address the different types of CMPs, especially patients with rare CMP forms such as LVNC and ARVC or with probably molecularly explainable cardiomyopathies (familial DCM), 2) to prolong the longitudinal with a further follow-up to achieve sufficient events and thereby derive clinical recommendations for risk assessment, 3) to increase the number of probands with state-of-the-art phenotyping, 4) to pinpoint the effect of myocardial inflammation, fibrosis, gender and to determine or predict genotypes based for outcome, 5) to validate novel biomarkers developed in other DZHK studies, and 6) to foster active cooperation with international CMP registries and partners from industry.

NCT ID: NCT04246450 Recruiting - Clinical trials for Dilated Cardiomyopathy

Arrhythmic Risk Stratification in Nonischemic Dilated Cardiomyopathy

ReCONSIDER
Start date: September 1, 2020
Phase: N/A
Study type: Interventional

Nonischemic dilated cardiomyopathy is a heterogeneous disease often associated with increased rates of sudden cardiac death. Although many algorithms have been proposed, risk stratification remains suboptimal, and implantable cardioverter-defibrillators are currently recommended only in patients with poor left ventricular function. However, most cases of sudden cardiac death occur at earlier stages, in patients with relatively preserved left ventricular function and exercise capacity, for which device-therapy is currently not indicated. Several noninvasive risk factors have been associated with increased arrhythmic risk, including clinical history (syncope), imaging (fibrosis on cardiac magnetic resonance imaging and left ventricular dimensions in echocardiography) and electrocardiographic parameters (ventricular arrhythmic burden, late potentials, heart rate variability and repolarization abnormalities). The investigators hypothesized that the encouraging findings of studies assessing more sophisticated stratification-algorithms in patients with ischemic heart disease could be extrapolated in patients with nonischemic dilated cardiomyopathy. Thus, combining noninvasive risk factors with programmed ventricular stimulation may risk-stratify such patients more accurately. In this regard, the prospective observational multicenter ReCONSIDER study aims to integrate several approaches to arrhythmic risk stratification in nonischemic dilated cardiomyopathy in a tiered, multifactorial, approach, in which noninvasive risk factors are combined with electrophysiologic studies. This approach may pave the way for a more comprehensive risk stratification algorithm in patients with nonischemic dilated cardiomyopathy, leading to more rational device-therapy, and, ultimately to lower mortality.

NCT ID: NCT04239144 Recruiting - Clinical trials for Ventricular Arrythmia

Sympathetic Denervation by Video-assisted Thoracoscopy in Control of Cardiac Arrhythmias in Patients With Chagas Disease

Start date: November 9, 2018
Phase: N/A
Study type: Interventional

Ventricular tachycardia (VT) is the main cause of sudden death in patients with structural heart diseases. The use of ICD (implantable cardio-defibrillator) could prevent sudden death, however, the occurrence of repetitive shock decreases significantly the quality of life and could increase the mortality rate. Chagas disease in our environment is the most common heart disease and often associated with the occurrence appropriate ICD therapies. The chronic treatment of VT aims to prevent recurrences with the use of antiarrhythmic drugs and catheter ablation, but in many cases, these treatments are insufficient to control the VT. Cardiac Sympathetic Denervation by bilateral sympathectomy has been described as an alternative treatment of VT refractory to medical treatment and radiofrequency ablation, especially in patients with channelopathies. This treatment could have a role in patients with structural heart disease. The objective of this study is to evaluate the efficacy of the bilateral sympathectomy in the reduction of ventricular tachycardia in patients with Chagas cardiomyopathy. In this pilot study, the investigators will select 45 patients with Chagas cardiomyopathy with ICD who presented at least four ICD therapies in the prior six months. These patients will be randomly assigned to three groups, 15 patients in medical therapy group, 15 in catheter ablation and 15 in bilateral sympathectomy.

NCT ID: NCT04234659 Recruiting - Cardiogenic Shock Clinical Trials

PPCM Observational Study (Peripartum Cardiomyopathy)

Start date: January 11, 2021
Phase:
Study type: Observational

The purpose of this study is to examine the clinical treatment of patients diagnosed with peripartum cardiomyopathy complicated by cardiogenic shock.

NCT ID: NCT04230551 Recruiting - Clinical trials for Remodeling, Ventricular

Reverse Remodeling After PTSMA in Severe But Asymptomatic LVOT Obstruction

RASTA
Start date: January 21, 2020
Phase: N/A
Study type: Interventional

Patients with HOCM and severe LVOT obstruction can remain asymptomatic while significant cellular and structural changes of the heart (adverse remodeling) may occur preceding heart failure and rhythm disorders. Hence, preventing adverse remodeling through LVOT desobstruction may have significant impact on cardiac function and geometry in this particular population, as it is in symptomatic patients. The investigators will assess functional and structural characteristics of the myocardium in asymptomatic vs. symptomatic patients with severe LVOT obstruction before and after PTSMA, using advanced imaging studies with LGE-CMR and echocardiography.

NCT ID: NCT04225754 Recruiting - Cardiac Amyloidosis Clinical Trials

Identification of Prognostic Parameters in Patients With " Senile " Amyloid Cardiomyopathy

EVAMYLOSE
Start date: July 21, 2020
Phase:
Study type: Observational

The aging of the population is a reality in our society, with a strong increase in the number of elderly patients hospitalized for heart failure in our institutions. Heart failure in these patients is more present than to younger patients, with preserved ejection fraction form (HFpEF). Aging is responsible for the onset of senile amyloid cardiomyopathy. This pathology is still imperfectly understood and its link with the increase in the frequency of HFpEF is important. In addition, specific treatments have just shown their effectiveness. It is therefore urgent to better identify the prognostic predictive parameters of this cardiomyopathy. The pathophysiological involvement of the coronary microcirculation responsible for a true microvascular coronary disease (CMVD) has been described as predictive factor in all cardiomyopathies. However the implementation of preventive strategies and / or therapeutic of the coronary microcirculation dysfunction are limited because we lack of diagnostic tests available and applicable to large cohorts of patients. Our team INSERM U1039 Radiopharmaceutiques Biocliniques in collaboration with the laboratory GIPSA-lab (Grenoble Images Speech Signal Automatique), laboratory specialized in the signal analysis, has developed a new method of analysis allowing to measure the coronary microcirculation dysfunction usable in SPECT thanks to the measurement of a myocardial perfusion heterogeneity index (IHPM) (patented technique). The 3C registry (NCT03479580) is a registry studying the prevalence and cardiovascular prognosis of macro and microcirculatory coronary artery disease using the latest coronary evaluation techniques in patient with cardiomyopathy. This registry deployed on interventional cardiology centers on the Alpine Arc is therefore also addressed to patients with senile cardiomyopathy. The data collected will provide a better understanding of the factors influencing the prognosis of senile cardiomyopathy and the prognostic contribution of the measurement of the IHPM will be evaluated.

NCT ID: NCT04225520 Recruiting - Heart Failure Clinical Trials

AMEND-CRT: Mechanical Dyssynchrony as Selection Criterion for CRT

AMEND-CRT
Start date: December 10, 2020
Phase: N/A
Study type: Interventional

Previous experience with cardiac resynchronization therapy (CRT) candidates suggests that selection of these patients can be improved. Current clinical guideline approaches are mainly too unspecific and lead to a high non-responder rate of 30-40%, which causes a burden on health care systems and puts patients at risk of an unnecessary treatment who might benefit more from a conservative approach. Previous work indicated that using the assessment of mechanical dyssynchrony on echocardiography can lower the non-responder rate at least by 50% without compromising sensitivity for detecting amendable patients. The current prospective, randomized, multi-center trial was therefore designed to prove that the characterization of the mechanical properties of the left ventricle can improve patient selection for CRT. Patients will be randomized into one of two study arms: a control study arm with treatment recommendation based on clinical guidelines criteria, or an experimental study arm with treatment recommendation based on the presence of mechanical dyssynchrony. All patients will receive a CRT implantation. In the control study arm, bi-ventricular pacing will be turned on. In the experimental study arm, bi-ventricular pacing will be turned on or off, depending on the presence or absence of mechanical dyssynchrony, respectively. The primary endpoint will be non-inferiority in outcome of a treatment recommendation based on mechanical dyssynchrony, achieved with a lower number of CRT devices implanted, effectively leading to a lower number needed to treat. Outcome measures are the average relative change in continuously measured LVESV per arm and the percentage 'worsened' according to the Packer Clinical Composite Score per arm after 1 year follow-up.