Bonicelli Andrea, Cheung William, Hughes Sheree, Wescott Daniel J, Procopio Noemi
The Forensic Science Unit, Faculty of Health and Life Sciences, Ellison Building, Northumbria University, Newcastle upon Tyne NE1 8ST, UK.
Department of Applied Sciences, Faculty of Health and Life Sciences, Northumbria University, Newcastle upon Tyne NE1 8ST, UK.
Metabolites. 2022 Oct 25;12(11):1020. doi: 10.3390/metabo12111020.
The study of post-mortem changes is a crucial component of forensic investigation. Human forensic taphonomic facilities (HFTFs) are the only institutions allowing the design and execution of controlled human decomposition experiments. When bodies are skeletonized, bones are normally stored in skeletal collections and used for anthropological studies. However, HFTFs apply chemical and/or thermal treatments to the remains prior bone long-term storage. These treatments are believed to alter heavily the original biochemical and molecular signature of bone material. The present study aims to evaluate the effect of these procedures on the bone metabolome and lipidome by using an animal bone model. Three intact bovine tibiae were processed using three protocols routinely applied at HFTFs, and their three counterparts were used as non-treated controls. Bone powder samples were subjected to biphasic extraction and both metabolites and lipids were analysed via liquid chromatography tandem mass-spectrometry. Results showed severe reductions in the abundances of both metabolites and lipids, and the presence of contamination introduced by cleaning agents. Despite the preliminary nature of the study, we demonstrated that the biochemical profile of bone is heavily affected by the maceration procedures. Ideally, these treatments should be avoided, or replaced by minimally invasive procedures agreed across HFTFs.
死后变化的研究是法医调查的关键组成部分。人类法医尸体埋藏学设施(HFTFs)是唯一允许设计和开展可控人体分解实验的机构。当尸体白骨化后,骨骼通常会被存放在骨骼收藏库中并用于人类学研究。然而,HFTFs在骨骼长期储存之前会对遗体进行化学和/或热处理。据信这些处理会严重改变骨材料的原始生化和分子特征。本研究旨在通过使用动物骨骼模型评估这些程序对骨代谢组和脂质组的影响。使用HFTFs常规应用的三种方案对三根完整的牛胫骨进行处理,并将其三个对应物用作未处理的对照。骨粉样品进行双相提取,代谢物和脂质均通过液相色谱串联质谱法进行分析。结果显示代谢物和脂质的丰度均大幅降低,并且存在清洁剂引入的污染。尽管本研究具有初步性质,但我们证明了浸软程序会严重影响骨骼的生化特征。理想情况下,应避免这些处理,或用HFTFs一致认可的微创程序取而代之。