AI Article Synopsis

  • Coronary artery disease (CAD) is influenced by genetic, epigenetic, and environmental factors, with strong evidence of similar conditions in identical twins.
  • A case study of monozygotic twins showed they both experienced acute coronary syndrome (ACS) simultaneously, highlighting notable similarities in their coronary anatomy and occlusion sites.
  • A systematic review yielded 25 reports of 31 twin pairs with CAD, revealing high rates of concordance in coronary lesions, suggesting that further twin studies could enhance understanding of CAD's genetic and environmental influences.

Article Abstract

Coronary artery disease (CAD) is multifactorial and strongly affected by genetic, epigenetic and environmental factors. Several studies have reported development of concomitant CAD in identical twins. We report a case in which a pair of Caucasian male monozygotic twins presented almost concomitantly with acute coronary syndrome (ACS) and had concordant coronary anatomy and identical site of occlusion. We performed a systematic literature review of PubMed, Web Of Science and Scopus databases from inception until 28 February 2023 of case reports/case series reporting the concomitant development of CAD in monozygotic twins. We found 25 eligible case reports with a total of 31 monozygotic twin pairs (including the case from our center) suffering from CAD and presenting (most of them simultaneously) with ACS (mean age of presentation: 45 ± 12 years, males: 81%). Coronary angiograms demonstrated lesion and anatomy concordance in 77% and 79% of the twin pairs, respectively. Screening for disease-related genetic mutations was performed in six twin pairs leading to the identification of five CAD-related genetic polymorphisms. This is the first systematic literature review of studies reporting identical twin pairs suffering from CAD. In summary, there is high concordance of coronary anatomy and clinical presentation between monozygotic twins. Future monozygotic twin studies-unbiased by age effects-can provide insights into CAD heritability being able to disentangle the traditional dyad of genetic and environmental factors and investigate the within-pair epigenetic drift.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10489011PMC
http://dx.doi.org/10.3390/jcm12175742DOI Listing

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