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Natural History and Clinical Outcomes of Patients With DSG2/DSC2 Variant-Related Arrhythmogenic Right Ventricular
Liang Chen1,2,3, Yuxiao Hu1,4,3, Ardan M Saguner4,3
1State Key Laboratory of Cardiovascular Disease, National Clinical Research Center for Cardiovascular Diseases (L.C., Y.H., Y. Liu, A.S., Zhongli Chen, L.W., X.L., X. Zhou, S.H.), Fuwai Hospital, National Center for Cardiovascular Diseases, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, China.
Insights
Genetic variants in DSG2 and DSC2 genes cause arrhythmogenic right ventricular cardiomyopathy (ARVC). Multiple variants are linked to earlier disease onset and worse outcomes in ARVC patients.
Area of Science:
- Cardiology
- Genetics
- Molecular Biology
Background:
- Arrhythmogenic right ventricular cardiomyopathy (ARVC) is a distinct inherited heart muscle disease.
- Genetic variants in desmoglein 2 (DSG2) and desmocollin 2 (DSC2) are known causes of ARVC.
- This specific ARVC subset is underreported, necessitating comprehensive characterization.
Purpose of the Study:
- To comprehensively describe the phenotypic spectrum of ARVC caused by DSG2 and DSC2 variants.
- To elucidate the natural history and clinical outcomes in patients with this ARVC subtype.
- To investigate the impact of multiple genetic variants on disease presentation and progression.
Main Methods:
- Collected genetic and clinical data from 271 individuals across 5 European and Asian countries.
- Assessed phenotypic profiles, focusing on heart failure and ventricular arrhythmias.
- Analyzed outcomes based on single vs. multiple variant carrier status and exercise levels.
Main Results:
- Multiple variants were found in 28.8% of subjects and were associated with higher ARVC diagnosis rates (96.2%) and earlier onset (median 33 years).
- Multiple variant carriers showed more severe left ventricular dysfunction (44.4%) and right ventricular dilation (88.9%).
- Compared to single-variant carriers, multiple-variant carriers experienced more frequent end-stage heart failure and malignant ventricular arrhythmias.
Conclusions:
- ARVC due to DSG2/DSC2 variants often presents with right or biventricular disease.
- Multiple genetic variants are prevalent and associated with increased penetrance, earlier disease onset, and adverse clinical outcomes.
- DSG2/DSC2 variants confer a higher risk of end-stage heart failure compared to PKP2 variants.
Background:
Genetic variants in desmosomal cadherins, desmoglein 2 (DSG2) and desmocollin 2 (DSC2), cause a distinct form of arrhythmogenic right ventricular cardiomyopathy (ARVC), which remains poorly reported. In this study, we aimed to provide a comprehensive description of the phenotypic expression, natural history, and clinical outcomes of patients with this ARVC subset.
Methods:
Genetic and clinical data of DSG2 and DSC2 variant carriers were collected from 5 countries in Europe and Asia. We assessed the phenotypic profile of these patients and their clinical outcomes, focusing on heart failure and ventricular arrhythmia events.
Results:
Overall, 271 subjects, 254 with DSG2 variants, were included in this study (median age, 38 years [interquartile range, 25-52]; 62.7% male). Of these, 165 were probands, and 200 were diagnosed with definite ARVC. A total of 181 (66.8%) individuals carried missense variants, mainly distributed in the extracellular domains. Notably, we included 78 (28.8%) individuals with multiple variants. Of the 200 cases with diagnosed ARVC, 41 (20.5%) experienced premature cardiac death before the age of 65. Among the 81 individuals for whom both left ventricular ejection fraction and right ventricular fractional area change data were available at presentation, 29 (35.8%) had isolated right ventricular dysfunction, and 16 (19.8%) had biventricular dysfunction. Single-variant carriers who engaged in intense physical exercise were younger at disease onset compared with those who did not (P=0.001). Compared with single-variant carriers, those with multiple variants were more likely to be diagnosed with ARVC (96.2% versus 64.8%; P<0.001) and exhibited more severe left ventricular dysfunction (44.4% versus 22.1%; P=0.001) and right ventricular dilation (88.9% versus 55.8%, P<0.001). Multiple-variant carriers were significantly younger at ARVC diagnosis compared with single-variant carriers (33 [18-49] years versus 42 [27-54] years; P<0.001]. During follow-up, end-stage heart failure (P<0.001) and malignant ventricular arrhythmias (P=0.004) were significantly more frequent in multiple-variant compared with single-variant carriers. Compared with PKP2 patients, DSG2/DSC2 patients exhibited a significantly higher risk of end-stage heart failure (P<0.001).
Conclusions:
ARVC attributable to variants in desmosomal cadherins mostly present with right ventricular or biventricular disease. Multiple variants are common in these patients and are associated with more frequent clinical penetrance, earlier onset of disease, and adverse clinical outcomes.
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