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现场采集和保存分解的人体组织,以促进快速纯化和 STR 分型。

In-field collection and preservation of decomposing human tissues to facilitate rapid purification and STR typing.

机构信息

Department of Forensic Science, College of Criminal Justice, Sam Houston State University, Huntsville, TX 77340, United States.

出版信息

Forensic Sci Int Genet. 2018 Sep;36:124-129. doi: 10.1016/j.fsigen.2018.06.015. Epub 2018 Jun 25.

Abstract

Short tandem repeats (STR) are currently the gold standard in human identification for forensic casework purposes, and successful STR typing is dependent on sufficient quantity and quality DNA. In the aftermath of a mass disaster and some forensic cases, human remains are recovered for identification in various stages of decomposition, and ideally these remains are transported to a refrigerated facility in order to halt the decomposition process and preserve the integrity of DNA within the tissue. However, in situations where refrigeration is not available (e.g., after a mass disaster or in rural forensic casework), remains continue to be exposed to environmental insults after collection, causing further DNA damage and degradation. Therefore, successful STR typing is dependent on the time of collection and preservation of the DNA sample. This study aims to test two simple in-field collection and preservation methods for decomposing human tissues that are subsequently stored at room temperature for up to six months either in a tissue preservative solution (modified TENT buffer) or on an FTA Elute Card. In addition, these collection and preservation methods were tested for their ability to facilitate more direct and faster processing of DNA from preserved tissues or DNA leached into the surrounding TENT preservative solution for STR typing. Pre-PCR methods tested in this study include a quick lysis of FTA Elute Cards, silica-based purification (QIAquick), enzyme-based extractions (PDQeX), and simple dilution of liquid preservative. The traditional DNA analysis pipeline, which includes DNA extraction and quantification, will be compared to an alternate direct PCR method, thereby allowing the elimination of these two time-consuming and costly steps. The results indicate that modified TENT preservative and FTA Elute Cards both preserved DNA from relatively fresh tissue for up to six months at room temperature. However, mostly partial profiles were produced from decomposed tissues (day 6 - day 14 in this study) when stored for up to six months compared to when tissues were processed immediately following collection. Overall, the modified TENT preservative produced higher DNA concentrations and more successful STR results than FTA Elute Cards. In addition, a rapid DNA extraction platform (PDQeX) generated the most successful STR typing results from the decomposed tissues stored in TENT for up to six months at room temperature. The direct PCR method used in this study generated comparable STR results to the traditional DNA analysis approach, warranting further investigation of direct PCR methods for forensic casework type samples.

摘要

短串联重复序列(STR)目前是法医案件中进行人类身份识别的黄金标准,成功的 STR 分型依赖于足够数量和质量的 DNA。在大规模灾难和一些法医案件发生后,为了进行身份识别,人类遗骸会在不同分解阶段被回收,理想情况下,这些遗骸会被运送到冷藏设施中,以阻止分解过程并保存组织内 DNA 的完整性。然而,在没有冷藏条件的情况下(例如,在大规模灾难或农村法医案件中),遗骸在收集后仍会继续受到环境侵害,导致进一步的 DNA 损伤和降解。因此,成功的 STR 分型依赖于 DNA 样本的采集和保存时间。本研究旨在测试两种简单的现场采集和保存方法,用于分解人类组织,随后将其在室温下保存在组织保存溶液(改良 TENT 缓冲液)或 FTA Elute 卡中长达六个月。此外,还测试了这些采集和保存方法是否能够促进从保存的组织中更直接和更快地处理 DNA,或者从周围 TENT 保存溶液中浸出的 DNA 进行 STR 分型。本研究中测试的预 PCR 方法包括快速裂解 FTA Elute 卡、基于硅的纯化(QIAquick)、基于酶的提取(PDQeX)以及简单稀释液体保存剂。传统的 DNA 分析流程,包括 DNA 提取和定量,将与替代的直接 PCR 方法进行比较,从而可以省去这两个耗时且昂贵的步骤。结果表明,改良 TENT 保存剂和 FTA Elute 卡都可以在室温下保存相对新鲜组织的 DNA 长达六个月。然而,与组织收集后立即处理相比,当储存长达六个月时,从分解组织(本研究中第 6 天至第 14 天)中获得的大多是部分图谱。总体而言,改良 TENT 保存剂产生的 DNA 浓度更高,STR 结果更成功,比 FTA Elute 卡更成功。此外,从在 TENT 中储存长达六个月的分解组织中,快速 DNA 提取平台(PDQeX)产生了最多成功的 STR 分型结果。本研究中使用的直接 PCR 方法与传统 DNA 分析方法产生的 STR 结果相当,值得进一步研究直接 PCR 方法在法医案件类型样本中的应用。

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