A Multicenter Analysis of Abnormal Chromosomal Microarray Findings in Congenital Heart Disease

Benjamin J Landis1, Lindsey R Helvaty1, Gabrielle C Geddes1

  • 1Indiana University School of Medicine Indianapolis IN.

Insights

Detailed cardiac phenotyping in patients with congenital heart disease (CHD) and chromosomal microarray analysis (CMA) abnormalities reveals new genotype-phenotype associations. This study enhances understanding of genetic causes of CHD, improving clinical interpretation and genetic research.

Area of Science:

  • Medical Genetics
  • Cardiology
  • Bioinformatics

Background:

  • Chromosomal microarray analysis (CMA) is crucial for identifying genetic causes of congenital heart disease (CHD).
  • Inconsistent cardiac phenotyping methods complicate CMA result interpretation and genotype-phenotype relationship studies in CHD.
  • Standardized phenotyping is needed to fully understand genetic contributions to CHD.

Purpose of the Study:

  • To systematically classify detailed cardiac phenotypes in patients with CHD and abnormal CMA.
  • To analyze the association between CMA abnormalities and specific cardiac phenotypes.
  • To improve understanding of genotype-phenotype relationships in CHD.

Main Methods:

  • Collected data from 1363 CHD patients with abnormal clinical CMA across 9 pediatric cardiac centers.
  • Employed hierarchical and inclusive classification for detailed cardiac phenotyping.
  • Analyzed associations between copy number variants (CNVs) and CHD types, including gene content and pathways.

Main Results:

  • 28% of patients had known genomic disorders associated with CHD, 67% had CNVs with rare/no prior CHD association, and 5% had regions of homozygosity.
  • Hierarchical classification identified expected and uncharacteristic CHDs in genomic disorders.
  • Submicroscopic CNVs were linked to more complex CHDs, with specific CNVs associated with left ventricular obstruction, septal defects, or conotruncal defects. Neuronal pathways were over-represented in single-gene CNVs.

Conclusions:

  • Intensive cardiac phenotyping in a multisite registry is effective for identifying genotype-phenotype associations in CHD patients with abnormal CMA.
  • This approach refines the understanding of genetic variants contributing to diverse CHD presentations.
  • Findings support the utility of standardized, detailed phenotyping for advancing CHD genetic research and clinical practice.

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