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Postmortem Diagnosis of Dilated Cardiomyopathy: A Systematic Review Revisiting Fundamentals
Simona Calabrese1, Vincenzo Cianci1, Daniela Sapienza1
1Department of Biomedical and Dental Sciences and Morphofunctional Imaging, Section of Legal Medicine, University of Messina, via Consolare Valeria, 1, 98125 Messina, Italy.
Insights
Dilated cardiomyopathy (DCM) can cause sudden cardiac death. Postmortem analysis, including genetic testing, is crucial for diagnosing DCM, especially in young individuals with no prior symptoms.
Area of Science:
- Cardiovascular Pathology
- Forensic Medicine
- Genetics
Background:
- Dilated cardiomyopathy (DCM) is a heart muscle disorder causing chamber enlargement and impaired function.
- It is a major cause of sudden cardiac death, often undiagnosed until autopsy, particularly in young individuals.
Purpose of the Study:
- To systematically review postmortem findings for diagnosing dilated cardiomyopathy (DCM).
- To identify key gross, microscopic, and genetic markers for postmortem DCM diagnosis.
Main Methods:
- Systematic literature review following PRISMA guidelines.
- Searched PubMed and Scopus for studies on postmortem DCM findings up to February 2025.
- Included studies reporting macroscopic, microscopic, and genetic variants in DCM cases.
Main Results:
- Common findings: increased heart weight, dilated chambers, thinned walls, fibrosis, myocyte hypertrophy.
- Genetic variants (TTN, FLNC, DSP, PKP2, MYH7) frequently found, especially in young decedents.
- Genetic analysis was absent in about half of reviewed studies, highlighting a diagnostic gap.
Conclusions:
- Dilated cardiomyopathy (DCM) can lead to sudden death without prior symptoms.
- Genetic testing is essential for diagnosis, particularly in cases with a negative phenotype.
- Molecular autopsy combined with traditional methods enhances forensic assessment of DCM.
Abstract:
Background: Dilated cardiomyopathy (DCM) is a myocardial disorder characterized by structural and functional abnormalities, in particular left or biventricular chamber dilatation and systolic dysfunction, occurring without evidence of coronary artery disease, hypertension, valvular disease, or congenital heart defects. It is a significant cause of sudden cardiac death, particularly in young individuals, often remaining undiagnosed until autopsy. Methods: A systematic review of the literature was conducted following PRISMA guidelines to revisit the main postmortem findings (gross, microscopic, and genetic) useful to perform the postmortem diagnosis of DCM. Scientific databases (PubMed and Scopus) were searched for articles published up to February 2025 describing postmortem findings in individuals diagnosed with DCM. Inclusion criteria were focused on studies reporting macroscopic cardiac findings, and microscopic and genetic variants identified postmortem or in related familial studies. Data were extracted and categorized to identify consistent diagnostic markers and to assess the frequency and relevance of genetic findings in autopsy-confirmed DCM cases. From 2081 initial records, 30 studies met inclusion criteria. Two reviewers independently performed study selection and data extraction, and methodological limitations of the included studies were considered qualitatively to inform the synthesis. Results: Common macroscopic features included increased heart weight (often > 350 g), dilated left or biventricular chambers, and thinning of the ventricular walls. Histologically, the most consistent findings were diffuse interstitial fibrosis, myocyte hypertrophy, and nuclear atypia. Particular attention was given to morphological features essential to distinguish between genetic and nongenetic forms of DCM and, thus, useful to perform a differential diagnosis with disease having a DCM-like pattern. Notably, truncating variants in genes such as TTN, FLNC, DSP, PKP2, and MYH7 were frequently reported, particularly in young decedents with no significant history of cardiac disease. However, only about half of reviewed studies included any form of genetic analysis, reflecting a significant gap in current practice for forensic pathologists. Conclusions: DCM may cause sudden death without prior symptoms, making genetic testing essential to uncover the diagnosis, especially in cases with a negative phenotype. Therefore, molecular autopsy combined with careful macroscopic and microscopic analysis can strengthen the forensic assessment.
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