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Updated: Feb 15, 2026

MEDUSA for Identifying Death Regulatory Genes in Chemo-genetic Profiling Data
Published on: February 7, 2025
Exome analysis in 34 sudden unexplained death (SUD) victims mainly identified variants in channelopathy-associated
Jacqueline Neubauer1, Maria Rita Lecca2, Giancarlo Russo2
1Zurich Institute of Forensic Medicine, Forensic Genetics, University of Zurich, Winterthurerstrasse 190/52, 8057, Zurich, Switzerland. jacqueline.neubauer@irm.uzh.ch.
Insights
Genetic testing identified likely causes for sudden unexplained death (SUD) in nearly 30% of cases, particularly in young individuals. This molecular autopsy approach highlights the role of genetic cardiac diseases in unexplained fatalities.
Area of Science:
- Cardiovascular Genetics
- Forensic Pathology
- Molecular Autopsy
Background:
- Sudden cardiac death (SCD) is a significant global mortality cause, often linked to coronary artery disease in the elderly.
- Sudden death in younger individuals frequently stems from undiagnosed genetic cardiac diseases.
- Sudden unexplained death (SUD) cases lack a clear cardiac cause after investigation, representing a diagnostic challenge.
Purpose of the Study:
- To genetically investigate a cohort of 34 sudden unexplained death (SUD) cases.
- To identify pathogenic variants in candidate genes associated with cardiomyopathies and channelopathies.
- To assess the diagnostic yield of molecular autopsy in SUD cases, especially in younger individuals.
Main Methods:
- High-throughput sequencing (exome analysis) was employed.
- Focus was placed on candidate genes linked to cardiomyopathies and channelopathies.
- Post-mortem molecular genetic testing was performed on the SUD cohort.
Main Results:
- Potentially disease-causing sequence alterations were found in 29.4% of the SUD cases.
- Six individuals (17.6%) harbored likely pathogenic variants in channelopathy genes (AKAP9, KCNE5, RYR2, SEMA3A).
- Four of these six cases involved individuals under 18, indicating a high diagnostic yield in pediatric and adolescent SUD cases.
Conclusions:
- Molecular genetic testing is a valuable tool for diagnosing the cause of death in some SUD victims.
- Genetic channelopathies are implicated in a significant proportion of SUD cases, particularly in the young.
- A substantial percentage of SUD cases (70-80%) remain unexplained, underscoring the need for further research into underlying mechanisms.
Abstract:
Sudden cardiac death (SCD) is one of the major causes of mortality worldwide, mostly involving coronary artery disease in the elderly. In contrary, sudden death events in young victims often represent the first manifestation of undetected genetic cardiac diseases, which remained without any symptoms during lifetime. Approximately 30% of these sudden death cases have no definite cardiac etiology after a comprehensive medicolegal investigation and are therefore termed as sudden unexplained death (SUD) cases. Advances in high-throughput sequencing approaches have provided an efficient diagnostic tool to identify likely pathogenic variants in cardiovascular disease-associated genes in otherwise autopsy-negative SUD cases. The aim of this study was to genetically investigate a cohort of 34 unexplained death cases by focusing on candidate genes associated with cardiomyopathies and channelopathies. Exome analysis identified potentially disease-causing sequence alterations in 29.4% of the 34 SUD cases. Six (17.6%) individuals had variants with likely functional effects in the channelopathy-associated genes AKAP9, KCNE5, RYR2, and SEMA3A. Interestingly, four of these six SUD individuals were younger than 18 years of age. Since the total SUD cohort of this study included five children and adolescents, post-mortem molecular autopsy screening indicates a high diagnostic yield within this age group. Molecular genetic testing represents a valuable approach to uncover the cause of death in some of the SUD victims; however, 70-80% of the cases still remain elusive, emphasizing the importance of additional research to better understand the pathological mechanisms leading to a sudden death event.
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