Epigenetic analyses in forensic medicine: future and challenges
Эпигенетический анализ в судебной медицине: перспективы и проблемы
2024-01-19
SCID: 54.1/dnj7ryg2
Discuss with AI
DNA methylationepigenetic biomarkersforensic epigeneticspost-mortem intervaltissue specificity
Figures from the paper
Abstract (AI)
The possibility of using epigenetics in forensic investigation has gradually risen over the last few years. Epigenetic changes with their dynamic nature can either be inherited or accumulated throughout a lifetime and be reversible, prompting investigation of their use across various fields. In forensic sciences, multiple applications have been proposed, such as the discrimination of monozygotic twins, identifying the source of a biological trace left at a crime scene, age prediction, determination of body fluids and tissues, human behavior association, wound healing progression, and determination of the post-mortem interval (PMI). Despite all these applications, not all the studies considered the impact of PMI and post-sampling effects on the epigenetic modifications and the tissue-specificity of the epigenetic marks.This review aims to highlight the substantial forensic significance that epigenetics could support in various forensic investigations. First, basic concepts in epigenetics, describing the main epigenetic modifications and their functions, in particular, DNA methylation, histone modifications, and non-coding RNA, with a particular focus on forensic applications, were covered. For each epigenetic marker, post-mortem stability and tissue-specificity, factors that should be carefully considered in the study of epigenetic biomarkers in the forensic context, have been discussed. The advantages and limitations of using post-mortem tissues have been also addressed, proposing directions for these innovative strategies to analyze forensic specimens.
Key Findings
1
Additional proposed applications include associating epigenetic patterns with human behavior, monitoring wound-healing progression, and estimating the post-mortem interval.
2
DNA methylation, histone modifications, and non-coding RNAs are highlighted as principal epigenetic mechanisms relevant to forensic biomarker development.
3
Epigenetic markers have potential forensic applications including monozygotic twin discrimination, biological-trace source identification, age prediction, and body-fluid or tissue determination.
4
Post-mortem stability and tissue specificity must be carefully evaluated because post-mortem interval and post-sampling effects can alter epigenetic modifications.
5
The review identifies both advantages and limitations of post-mortem tissues and proposes directions for applying epigenetic strategies to forensic specimens.
Research Object
Epigenetic modifications and biomarkers in forensic specimens, particularly post-mortem tissues
Research Subject
Their forensic applicability, focusing on post-mortem stability, tissue specificity, and effects of post-sampling conditions across forensic investigations
Publication Details
Publication Date
2024-01-19
Journal
Publisher
ISSN
Cited by
33
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest