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从非法毒品片剂中回收整合和表面痕迹 DNA。

Recovery of integrated and surface trace DNA from illicit drug tablets.

机构信息

College of Science & Engineering, Flinders University, Adelaide 5042, Australia.

College of Science & Engineering, Flinders University, Adelaide 5042, Australia.

出版信息

Forensic Sci Int Genet. 2022 Nov;61:102772. doi: 10.1016/j.fsigen.2022.102772. Epub 2022 Sep 9.

Abstract

In many parts of the world, tablets are a commonly encountered form of illicit drug preparation. Whilst previous research has investigated the feasibility of detecting trace DNA on illicit drug capsules, this has not been performed for tablets. Tablets have a unique substrate surface and therefore the amount of DNA transferring to them and persisting on them may be different to capsules; there may also be differences in the collection efficiency and the outcome of downstream DNA processing and analysis steps. The ability to profile the DNA from individuals who handled tablets during their preparation and distribution would add another level of discrimination between various drug seizures or corroborate chemical profiling outcomes which may link various seizures to a common origin. DNA from two different individuals (male and female) was added to the tablets in two stages. Firstly, tablet powder was spiked with DNA from one individual to mimic the situation where DNA traces are incorporated during the drug synthesis or final drying stages. The powder was then pressed into tablets in a clean environment without intentional addition of DNA. Subsequently, a second individual counted out the tablets into bags of ten to mimic the preparation for distribution at a user level. The exterior of the tablet was swabbed and then the entire tablet and the swab were put through separate DNA extractions, yielding two DNA extracts for each tablet. Swabs of the exterior tablet surface yielded single source DNA profiles that identified the tablet handler in 100 % of samples. The tablet extract yielded the donor of the DNA intentionally added within the drug powder in 80% of samples with varying levels of support, however contributions of the exterior handler were detected in 60 % of samples. The identification of individuals potentially involved in the synthesis of the drugs compared to the distribution of the tablets will provide invaluable strategic intelligence related to illicit drug investigations and to law enforcement agencies.

摘要

在世界上许多地方,片剂是一种常见的非法药物制剂形式。虽然以前的研究已经调查了在非法药物胶囊上检测痕量 DNA 的可行性,但尚未对片剂进行过研究。片剂具有独特的基质表面,因此转移到片剂上并在片剂上持续存在的 DNA 量可能与胶囊不同;在收集效率以及下游 DNA 处理和分析步骤的结果方面也可能存在差异。能够对在准备和分发过程中处理片剂的个人的 DNA 进行分析,将为各种毒品缉获物之间提供另一种鉴别手段,或者可以佐证将各种缉获物与共同来源联系起来的化学特征分析结果。将来自两个不同个体(男性和女性)的 DNA 添加到片剂中分为两个阶段。首先,将个体的 DNA 添加到片剂粉末中,以模拟在药物合成或最终干燥阶段将 DNA 痕迹掺入的情况。然后,在没有故意添加 DNA 的清洁环境中将粉末压制成片剂。随后,第二个人将片剂数出十片放入一个袋子中,以模拟在用户级别进行分发的准备工作。用拭子擦拭片剂的外部,然后分别对片剂和拭子进行 DNA 提取,每个片剂可得到两个 DNA 提取物。拭子的片剂外部表面可提取出可识别出 100%样本中片剂处理人的单源 DNA 图谱。从片剂中提取的 DNA 提取物可在 80%的样本中检测到有意添加到药物粉末中的 DNA 供体,但在 60%的样本中检测到外部处理人的贡献。与片剂的分发相比,鉴定潜在参与药物合成的个人将为非法药物调查和执法机构提供宝贵的战略情报。

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