Skip to Main Content (Press Enter)

Logo UNISR
  • ×
  • Home
  • People
  • Outputs
  • Organizations
  • Expertise & Skills

UNIFIND
Logo UNISR

|

UNIFIND

unisr.it
  • ×
  • Home
  • People
  • Outputs
  • Organizations
  • Expertise & Skills
  1. Outputs

Tetralogy of Fallot: Genetic, Epigenetic and Clinical Insights into a Multifactorial Congenital Heart Disease

Academic Article
Publication Date:
2026
Short description:
Tetralogy of Fallot: Genetic, Epigenetic and Clinical Insights into a Multifactorial Congenital Heart Disease / Gagliardi, M.F., Micaglio, E., Micheletti, A., Benedetti, S., Negura, D.G., Bevilacqua, F., Guglielmi, G., Pasqualin, G., Giamberti, A., Chessa, M.. - In: GENES. - ISSN 2073-4425. - 17:2(2026). [10.3390/genes17020181]
abstract:
Tetralogy of Fallot (TOF) is the most common cyanotic congenital heart disease, classically characterized by right ventricular outflow tract obstruction, ventricular septal defect, overriding aorta, and right ventricular hypertrophy. Recent advances in molecular and genomic research indicate that TOF is part of a phenotypic continuum encompassing Trilogy, Tetralogy, and Pentalogy of Fallot, in which the variability of anatomical presentation reflects shared genetic and epigenetic mechanisms with highly variable penetrance and expressivity. Variants in NOTCH1, FLT4, KDR, GATA6, and TBX1 highlight key pathways in conotruncal development and endothelial–mesenchymal transition, yet these well-known genes explain only a fraction of the genetic landscape. Emerging studies have identified additional candidate genes and networks involved in cardiac morphogenesis, including transcriptional regulators, signaling mediators, chromatin-remodeling factors, and splicing-associated genes such as PUF60 and DVL3. Epigenetic mechanisms, including DNA methylation, histone modifications, and non-coding RNA expression, further modulate phenotypic expressivity and contribute to variability along the Trilogy–Tetralogy–Pentalogy spectrum. This review integrates current genomic and clinical evidence to provide a comprehensive overview of the molecular architecture of Fallot-type conotruncal malformations, emphasizing the interplay between genetic and epigenetic mechanisms, genotype–phenotype correlations, and implications for diagnosis, risk stratification, counseling, and personalized management in the era of precision cardiology.
Iris type:
1.1 Articolo in rivista
Keywords:
congenital heart disease; epigenetics; FLT4; genetics; genotype–phenotype correlation; NOTCH1; precision medicine; tetralogy of Fallot
List of contributors:
Gagliardi, M. F.; Micaglio, E.; Micheletti, A.; Benedetti, S.; Negura, D. G.; Bevilacqua, F.; Guglielmi, G.; Pasqualin, G.; Giamberti, A.; Chessa, M.
Authors of the University:
CHESSA MASSIMO
GIAMBERTI ALESSANDRO
Handle:
https://iris.unisr.it/handle/20.500.11768/207659
Published in:
GENES
Journal
  • Use of cookies

Powered by VIVO | Designed by Cineca | 26.9.2.0