Research Site
Beijing, China
NCT Number: NCT07646600
This is a multicentre, prospective cohort study designed to elucidate the natural history of dilated cardiomyopathy (DCM) associated with specific gene mutations in Chinese patients. By establishing a cohort of patients with inherited cardiomyopathy, the study will collect comprehensive data, including demographic characteristics, disease history, clinical features, prior treatments, current treatment patterns, clinical outcomes, and patient-reported outcomes (PROs). The objective is to describe the disease profile, current diagnostic and therapeutic landscape, clinical progression, and prognosis of this specific patient population in China. The data generated will provide a foundational basis for deepening the understanding of disease progression, identifying unmet clinical needs, and exploring potential surrogate endpoints for future clinical trials in drug development. The study plans to enroll 10 eligible patients with BCL-2-associated athanogene 3 (BAG3)-associated inherited DCM from 3 research sites across China.
Trial opening soon.
Get Notified18 year and older
All sexes
Observational
Beijing, China
This is a multicentre, prospective, observational natural history study targeting Chinese adults with BAG3 DCM. Approximately 10 patients with BAG3 DCM will be enrolled from 3 research sites in China. Comprehensive clinical data, including demographic characteristics, medical history, clinical manifestations, treatment records, clinical outcomes, and PROs, will be collected. After completing the informed consent process, eligible patients will undergo screening and enrollment, planned to last 1 year. Patients with a confirmed diagnosis of BAG3 DCM will be directly enrolled; those initially diagnosed only with DCM will undergo genetic testing (e.g., whole-exome sequencing), and carriers of BAG3 mutations will be included upon confirmation. After enrollment, participants will undergo a comprehensive baseline assessment of clinical parameters (including imaging, cardiopulmonary function, and laboratory tests) and enter a subsequent 2-year follow-up evaluation period. Patient follow-up will continue until any of the following events occurs: death, study withdrawal, loss to follow-up (defined as failure to contact via three attempts including telephone, WeChat, medical record review, and contact with family members/treating physicians), early study termination/suspension, or completion of the scheduled 2-year follow-up period.
Medical history and cardiomyopathy treatment history at baseline (e.g., medications, surgical procedures, hospitalizations / resuscitation records) will be retrieved from patients' electronic medical records at enrollment. After enrollment, prospective data collection will include information from routine clinical practice, investigator-solicited clinical outcomes, and Patient-reported outcomes (PROs). An Electronic Data Capture (EDC) system will be used for data collection. All enrolled cardiomyopathy patients will be followed at regular intervals until the end of the observation follow-up period.
This study will collect electronic medical record data from cardiomyopathy patients at 3 research sites in China. Data sources include hospital electronic health records, medical records, and patient-reported outcome questionnaires. Routine clinical data (including but not limited to baseline information, assessments, and treatment records) will be collected during routine clinical visits or via remote questionnaires. Follow-up frequency is set at baseline (Day 1, V1), Month 3 (V2), Month 6 (V3), Month 12 (V4), Month 18 (V5), and Month 24 (V6). All data will be collected and managed using an EDC system.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Observational, None intervention
Time frame: Baseline (at Day 1 post-enrollment), 12 months and 24 months
Primary endpoints include changes from baseline in cardiac structure and function parameters, left ventricular ejection fraction (LVEF) and global longitudinal strain (GLS), at Month 12 and subsequent follow-ups. Changes in the above imaging assessment results are presented as continuous numerical variables and the results of changes expressed as percentages.
Time frame: Baseline (at Day 1 post-enrollment), 12 months and 24 months
Primary endpoints include changes from baseline in cardiac structure and function parameters, left ventricular end diastolic diameter (LVEDD), at Month 12 and subsequent follow-ups. Changes in the above imaging assessment results are presented as continuous numerical variables and the results of changes expressed as percentages.
Time frame: Baseline (at Day 1 post-enrollment), 12 months and 24 months
Primary endpoints include changes from baseline in cardiac structure and function parameters, left ventricular end systolic volume index (LVESVi) and left ventricular end diastolic volume index (LVEDVi), at Month 12 and subsequent follow-ups. Changes in the above imaging assessment results are presented as continuous numerical variables and the results of changes expressed as percentages.
Time frame: Baseline (at Day 1 post-enrollment), 12 months and 24 months
Primary endpoints include changes from baseline in cardiac structure and function parameters, left ventricular mass index (LVMi), at Month 12 and subsequent follow-ups. Changes in the above imaging assessment results are presented as continuous numerical variables and the results of changes expressed as percentages.
Time frame: Baseline (at Day 1 post-enrollment), 3 months, 6 months, 12 months, 18 months, and 24 months
Descriptive summaries of High-sensitivity cardiac troponin I (hs-cTnI), High-sensitivity cardiac troponin T (hs-cTnT), and N-terminal pro b-type natriuretic peptide (NT-proBNP), and other circulating biomarkers level at baseline and each follow-up visit, including absolute and relative percentage changes from baseline. All of the above test parameters are measured in ng/L, and the changes are treated as continuous numerical variables.
Time frame: Baseline (at Day 1 post-enrollment) and 12 months.
Peak oxygen capacity (VO₂) measured by cardiopulmonary exercise testing (CPET) will be summarized at baseline and each time point, along with absolute and relative changes over time.
Time frame: Baseline (at Day 1 post-enrollment), 3 months, 6 months, 12 months, 18 months, and 24 months
Changes from baseline in KCCQ-23 overall and domain scores will be described using absolute and relative changes. Raw summary scores are converted to a 0-100 scale, with higher scores indicating better health status.
Time frame: Baseline (at Day 1 post-enrollment), 3 months, 6 months, 12 months, 18 months, and 24 months
Changes from baseline in EQ-5D-5L overall and domain scores will be described using absolute and relative changes. The EQ-5D was developed by the EuroQol Group to provide a simple, generic measure of health. The EQ-5D primarily consists of two parts: the EQ-5D descriptive system and the EQ-5D visual analogue scale (VAS). The score ranges from <0 to 1. Higher scores men a better outcome.
Time frame: Baseline (at Day 1 post-enrollment), 3 months, 6 months, 12 months, 18 months, and 24 months
Changes from baseline in SF-36 overall and domain scores will be described using absolute and relative changes. The questionnaire comprises 8 health domain scales. The raw scores for each health domain scale are converted to a 0-100 scale score and can then be transformed into norm-based T-scores (Mean = 50, Standard Deviation = 10) using scoring software provided by the developer.
Time frame: Baseline (at Day 1 post-enrollment), 3 months, 6 months, 12 months, 18 months, and 24 months
The cumulative number and frequency of notable cardiac status events will be reported. Notable cardiac status changes include but are not limited to: new or worsening signs/symptoms of fluid overload (e.g., edema, pulmonary congestion), new or worsening renal impairment (e.g., cardiorenal syndrome, acute renal failure), heart failure (HF) hospitalization, need for unscheduled intravenous diuretics, HF exacerbation, cardiovascular death, myocardial infarction (MI), hospitalization for unstable angina, coronary revascularization, stroke, new or worsening ventricular or supraventricular arrhythmias, sudden cardiac death (SCD), or SCD-equivalent events (e.g., appropriate implantable cardioverter-defibrillator [ICD] shock, sustained ventricular arrhythmia). Event rates per 100 patient-years with 95% confidence intervals will be calculated.
AstraZeneca
Industry
Natural History of BAG3 Gene Mutation-Associated Dilated Cardiomyopathy in Chinese Adults: A Multicentre, Prospective, Observational Cohort Study
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View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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