Forensic significance of VOCs profiling in decayed ante- and post-mortem injuries by GC×GC-TOF/MS.

IF 1.5 4区 医学 Q2 MEDICINE, LEGAL
Forensic Science, Medicine and Pathology Pub Date : 2025-03-01 Epub Date: 2024-07-13 DOI:10.1007/s12024-024-00843-2
Damascene Nteziryayo, Jing Wang, Hongyan Qian, Ran An, Gao Baoyao, Hua Liu, Min Liang, Xinshe Liu, Tao Li, Jeannette Uwiragiye, Phazha Joseph
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引用次数: 0

Abstract

Accurately identifying and differentiating the types of injuries in decomposed corpses is a major challenge in forensic identification. Forensic investigations involving decomposed cadavers pose challenges in determining the cause of death. Traditional methods often lack conclusive evidence. However, the implementation of advanced analytical techniques, such as comprehensive two-dimensional gas chromatography coupled with time-of-flight mass spectrometry (GC × GC-TOF/MS), shows promise in overcoming these limitations, but the potential in this area remains limited. Therefore, this study aims to bridge this gap by exploring the potential of GC × GC-TOF/MS in the analysis of volatile organic compounds (VOCs) changes within decaying ante- and post-mortem injuries.The research emphasizes the forensic significance of VOCs changes in decomposed cadavers. We used GC × GC-TOF/MS analysis to identify the specific volatile compounds in putrefied corpse tissue samples from mice. The GC × GC-TOF/MS analysis results showed that under winter conditions, PC1 explained 57.16% of the variance, and PC2 explained 25.23% of the variance; while under summer conditions, PC1 explained 71.89% of the variance, and PC2 explained 24.49% of the variance. This demonstrates the potential of GC × GC-TOF/MS in identifying specific VOCs present in tissue samples that can serve as potential biomarkers for distinguishing between antemortem and postmortem injury. GC × GC-TOF/MS analysis revealed distinct VOC patterns in both conditions. Comprehensive use of GC × GC-TOF/MS analysis enhances accuracy in identifying and characterizing ante- and post-mortem injuries in decomposed cadavers. This study can significantly contribute to the field of forensic medicine and improve the accuracy of forensic investigations.

利用 GC×GC-TOF/MS 分析腐烂的死前和死后伤痕中的挥发性有机化合物的法医学意义。
准确识别和区分腐烂尸体的损伤类型是法医鉴定中的一大挑战。涉及腐烂尸体的法医调查给确定死因带来了挑战。传统方法往往缺乏确凿证据。然而,采用先进的分析技术,如全面二维气相色谱-飞行时间质谱联用技术(GC × GC-TOF/MS),有望克服这些限制,但这一领域的潜力仍然有限。因此,本研究旨在通过探索 GC × GC-TOF/MS 在分析腐烂的死前和死后伤害中挥发性有机化合物(VOCs)变化的潜力来弥补这一差距。我们采用 GC × GC-TOF/MS 分析方法鉴定了小鼠腐尸组织样本中的特定挥发性化合物。GC × GC-TOF/MS 分析结果表明,在冬季条件下,PC1 解释了 57.16% 的方差,PC2 解释了 25.23% 的方差;而在夏季条件下,PC1 解释了 71.89% 的方差,PC2 解释了 24.49% 的方差。这表明 GC × GC-TOF/MS 在鉴定组织样本中存在的特定挥发性有机化合物方面具有潜力,可作为区分死前和死后损伤的潜在生物标记物。GC × GC-TOF/MS 分析揭示了两种情况下不同的挥发性有机化合物模式。综合利用 GC × GC-TOF/MS 分析提高了鉴定和描述腐烂尸体死前和死后损伤的准确性。这项研究可为法医学领域做出重大贡献,并提高法医调查的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Forensic Science, Medicine and Pathology
Forensic Science, Medicine and Pathology MEDICINE, LEGAL-PATHOLOGY
CiteScore
3.90
自引率
5.60%
发文量
114
审稿时长
6-12 weeks
期刊介绍: Forensic Science, Medicine and Pathology encompasses all aspects of modern day forensics, equally applying to children or adults, either living or the deceased. This includes forensic science, medicine, nursing, and pathology, as well as toxicology, human identification, mass disasters/mass war graves, profiling, imaging, policing, wound assessment, sexual assault, anthropology, archeology, forensic search, entomology, botany, biology, veterinary pathology, and DNA. Forensic Science, Medicine, and Pathology presents a balance of forensic research and reviews from around the world to reflect modern advances through peer-reviewed papers, short communications, meeting proceedings and case reports.
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