Related Experiment Video
Updated: Apr 28, 2026

Comprehensive Autopsy Program for Individuals with Multiple Sclerosis
Published on: July 19, 2019
DNA and RNA analysis of blood and muscle from bodies with variable postmortem intervals
Jakob Hansen1, Iana Lesnikova, Anette Mariane Daa Funder
1Department of Forensic Medicine, Faculty of Health Sciences, Aarhus University, Aarhus, Denmark, Jah@forensic.au.dk.
Abstract:
The breakdown of DNA and RNA in decomposing human tissue represents a major obstacle for postmortem forensic molecular analysis. This study investigated the feasibility of performing PCR-based molecular analysis of blood and muscle tissue from 45 autopsy cases with defined postmortem intervals ranging from one to more than 14 days. It was not possible to collect blood from 38 % of the autopsy cases due to severe coagulation and hemolysis, whereas muscle tissue was available for all cases. PCR-amplifiable DNA could be extracted from 96 % of the frozen muscle specimens and from 93 % of the formalin fixed and paraffin embedded (FFPE) muscle specimens. A quality assessment of muscle-derived DNA showed increased fragmentation with advancing body decomposition and generally more fragmentation in DNA from FFPE tissue than in DNA from frozen tissue. It was possible to amplify 1,000 basepair (bp) DNA fragments from all samples with postmortem intervals below 3 days whereas 400-600 bp long fragments typically could be amplified from the most decomposed muscle specimens. RNA was less stable than DNA in postmortem muscle tissue, yet selected mRNA molecules could be detected by reverse-transcriptase PCR in all samples up to 3 days after death. We conclude that analysis of DNA from bodies with a wide postmortem interval range is usually possible whereas the consistency of RNA analyses decreases considerably 3 days postmortem. We showed that muscle tissue is a highly usable source of DNA and RNA for postmortem forensic molecular analysis as well as for retrospective research projects based on archived FFPE specimens.
Insights
Postmortem DNA analysis is feasible using muscle tissue, even with advanced decomposition. RNA analysis is reliable up to three days postmortem, with muscle tissue proving a valuable source for forensic studies.
Area of Science:
- Forensic Science
- Molecular Biology
- Genetics
Background:
- Degradation of DNA and RNA in decomposing human tissue hinders forensic molecular analysis.
- Postmortem intervals significantly impact tissue integrity and molecular analysis feasibility.
Purpose of the Study:
- To assess the feasibility of PCR-based molecular analysis of blood and muscle tissue.
- To evaluate DNA and RNA stability in human tissues with varying postmortem intervals (1-14+ days).
Main Methods:
- Analysis of blood and muscle tissue from 45 autopsy cases.
- DNA extraction from frozen and formalin-fixed paraffin-embedded (FFPE) muscle specimens.
- Polymerase Chain Reaction (PCR) and reverse-transcriptase PCR (RT-PCR) for DNA and RNA amplification.
Main Results:
- Muscle tissue was consistently available, unlike blood (unavailable in 38% of cases).
- High success rates for PCR-amplifiable DNA extraction from frozen (96%) and FFPE (93%) muscle.
- DNA fragmentation increased with decomposition; longer fragments (1000 bp) amplifiable up to 3 days, shorter fragments (400-600 bp) from decomposed samples.
- RNA was less stable than DNA, but mRNA was detectable up to 3 days postmortem.
Conclusions:
- DNA analysis from human tissues is generally possible across a wide postmortem range.
- Muscle tissue is a reliable source for postmortem DNA and RNA forensic analysis.
- RNA analysis consistency decreases significantly after three days postmortem, impacting its forensic utility.
More Related Videos
12:53Collection and Processing of Lymph Nodes from Large Animals for RNA Analysis: Preparing for Lymph Node Transcriptomic Studies of Large Animal Species
Published on: May 19, 2018
08:17Cryosectioning of Contiguous Regions of a Single Mouse Skeletal Muscle for Gene Expression and Histological Analyses
Published on: December 12, 2016