Back to Search Start Over

Importance of genetic testing in unexplained cardiac arrest

Authors :
Steffany Grondin
Brianna Davies
Julia Cadrin-Tourigny
Christian Steinberg
Christopher C Cheung
Paloma Jorda
Jeffrey S Healey
Martin S Green
Shubhayan Sanatani
Wael Alqarawi
Paul Angaran
Laura Arbour
Pavel Antiperovitch
Habib Khan
Richard Leather
Peter G Guerra
Lena Rivard
Christopher S Simpson
Martin Gardner
Ciorsti MacIntyre
Colette Seifer
Anne Fournier
Jacqueline Joza
Michael H Gollob
Guillaume Lettre
Mario Talajic
Zachary W Laksman
Jason D Roberts
Andrew D Krahn
Rafik Tadros
Source :
European heart journal. 43(32)
Publication Year :
2021

Abstract

Aims Genetic testing is recommended in specific inherited heart diseases but its role remains unclear and it is not currently recommended in unexplained cardiac arrest (UCA). We sought to assess the yield and clinical utility of genetic testing in UCA using whole-exome sequencing (WES). Methods and results Survivors of UCA requiring external defibrillation were included from the Cardiac Arrest Survivor with Preserved Ejection fraction Registry. Whole-exome sequencing was performed, followed by assessment of rare variants in previously reported cardiovascular disease genes. A total of 228 UCA survivors (mean age at arrest 39 ± 13 years) were included. The majority were males (66%) and of European ancestry (81%). Following advanced clinical testing at baseline, the likely aetiology of cardiac arrest was determined in 21/228 (9%) cases. Whole-exome sequencing identified a pathogenic or likely pathogenic (P/LP) variant in 23/228 (10%) of UCA survivors overall, increasing the proportion of ‘explained’ cases from 9% only following phenotyping to 18% when combining phenotyping with WES. Notably, 13 (57%) of the 23 P/LP variants identified were located in genes associated with cardiomyopathy, in the absence of a diagnosis of cardiomyopathy at the time of arrest. Conclusions Genetic testing identifies a disease-causing variant in 10% of apparent UCA survivors. The majority of disease-causing variants was located in cardiomyopathy-associated genes, highlighting the arrhythmogenic potential of such variants in the absence of an overt cardiomyopathy diagnosis. The present study supports the use of genetic testing including assessment of arrhythmia and cardiomyopathy genes in survivors of UCA.

Details

ISSN :
15229645
Volume :
43
Issue :
32
Database :
OpenAIRE
Journal :
European heart journal
Accession number :
edsair.doi.dedup.....f33d92686284b107eec4568f543feb7d