Key result
Site-directed next generation sequencing yielded a genetic diagnosis in 47.3% of Mexican patients with dilated cardiomyopathy, higher in familial (63.6%) than idiopathic (36.4%) cases (p=0.047).
Why the study?
Pathogenic variant databases mainly include European/Caucasian populations, making variant interpretation challenging in underrepresented groups, and no genomic diagnosis studies of DCM had been conducted in Mexico.
What is the diagnostic yield of site-directed next generation sequencing in Mexican patients with dilated cardiomyopathy?
Observational (n=55)
What is the diagnostic yield of site-directed next generation sequencing in Mexican patients with dilated cardiomyopathy?
Absolute Event Rate: 63.6% vs 36.4%
p-value: p=0.047
Site-directed next-generation sequencing provides a high diagnostic yield in Mexican patients with dilated cardiomyopathy, particularly in familial cases.
Hypothesis-generating for variant interpretation in underrepresented DCM populations; larger diverse cohorts needed before clinical adoption.
BACKGROUND: Dilated cardiomyopathy (DCM) is a major cause of nonischemic heart failure and death in young adults. Next generation sequencing (NGS) has become part of the diagnostic workup in idiopathic and familial DCM. More than 50 DCM genes have been identified, revealing great molecular heterogeneity and variable diagnostic yield. Interpretation of variant pathogenicity is challenging particularly in underrepresented populations, as pathogenic variant databases include studies mainly from European/Caucasian populations. To date, no studies on genomic diagnosis of DCM have been conducted in Mexico. METHODS: We recruited 55 unrelated DCM patients, 22 familial (F-DCM), and 33 idiopathic (I-DCM), and performed site-directed NGS seeking causal mutations. Diagnostic yield was defined as the proportion of individuals with at least one pathogenic (P) or likely pathogenic (LP) variant in DCM genes. RESULTS: Overall diagnostic yield was 47.3%, and higher in F-DCM (63.6%) than in I-DCM (36.4%, p = 0.047). Overall, NGS disclosed 41 variants of clinical interest (61.0% novel), 27 were classified as P/LP and 14 of unknown clinical significance. Of P/LP variants, 10 were A-band region TTN truncating variants, five were found in DSP (18.5%), five in MYH7 (18.5%), two in LMNA (7.4%), and one in RBM20, ABCC9, FKTN, ACTA1, and TNNT2. NGS findings suggested autosomal recessive inheritance in three families, two with DSP loss of function mutations in affected individuals. The increasing number of mutation reports in DCM, increasing knowledge on the functional consequences of mutations, mutational hotspots and functional domains of DCM-related proteins, the recent refinement ACMG/ClinGen Guidelines, and co-segregation analysis in DCM families helped increase the diagnostic yield. CONCLUSION: This is the first NGS study performed in a group of Mexican DCM patients, contributing to understand the mutational spectrum and complexity of DCM molecular diagnosis.
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Carnevale et al. (2020) conducted an observational in Dilated cardiomyopathy (n=55). Familial dilated cardiomyopathy vs. Idiopathic dilated cardiomyopathy was evaluated on Diagnostic yield (proportion of individuals with at least one pathogenic or likely pathogenic variant) (p=0.047). Site-directed next generation sequencing yielded a genetic diagnosis in 47.3% of Mexican patients with dilated cardiomyopathy, higher in familial (63.6%) than idiopathic (36.4%) cases (p=0.047).
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