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在模拟人身攻击中,从接触性DNA混合物中的皮肤和织物分离出的单细胞中恢复单源DNA图谱。

Single source DNA profile recovery from single cells isolated from skin and fabric from touch DNA mixtures in mock physical assaults.

作者信息

Farash Katherine, Hanson Erin K, Ballantyne Jack

机构信息

Graduate Program in Forensic Science, Biochemistry Track, Department of Chemistry, University of Central Florida, PO Box 162366, Orlando, FL 32816-2366, USA.

National Center for Forensic Science, PO Box 162367, Orlando, FL 32816-2367, USA.

出版信息

Sci Justice. 2018 May;58(3):191-199. doi: 10.1016/j.scijus.2017.12.006. Epub 2017 Dec 22.

Abstract

The ability to obtain DNA profiles from trace biological evidence is routinely demonstrated with so-called 'touch DNA evidence', which is generally perceived to be the result of DNA obtained from shed skin cells transferred from a donor's hands to an object or person during direct physical contact. Current methods for the recovery of trace DNA employ swabs or adhesive tape to sample an area of interest. While of practical utility, such 'blind-swabbing' approaches will necessarily co-sample cellular material from the different individuals whose cells are present on the item, even though the individuals' cells are principally located in topographically dispersed, but distinct, locations on the item. Thus the act of swabbing itself artifactually creates some of the DNA mixtures encountered in touch DNA samples. In some instances involving transient contact between an assailant and victim, the victim's DNA may be found in such significant excess as to preclude the detection and typing of the perpetrator's DNA. In order to circumvent the challenges with standard recovery and analysis methods for touch DNA evidence, we reported previously the development of a 'smart analysis' single cell recovery and DNA analysis method that results in enhanced genetic analysis of touch DNA evidence. Here we use the smart single cell analysis method to recover probative single source profiles from individual and agglomerated cells from various touched objects and clothing items belonging to known donors. We then use the same approach for the detection of single source male donor DNA in simulated physical contact/assault mixture samples (i.e. male 'assailant' grabbing the wrist, neck or clothing from the female 'victim', or being in transient contact with bedding from the 'victim'). DNA profiles attributable to the male or female known donors were obtained from 31% and 35% of the single and agglomerated bio-particles (putative cells) tested. The known male donor 'assailant' DNA profile was identified in the cell sampling from every mixture type tested. The results of this work demonstrate the efficacy of an alternative strategy to recover single source perpetrator DNA profiles in physical contact/assault cases involving trace perpetrator/victim cellular admixtures.

摘要

从微量生物证据中获取DNA图谱的能力通常通过所谓的“触摸DNA证据”得到证明,一般认为这是在直接身体接触过程中从捐赠者手上转移到物体或人身上的脱落皮肤细胞所获得的DNA的结果。目前用于微量DNA回收的方法采用拭子或胶带对感兴趣的区域进行采样。虽然具有实际用途,但这种“盲目擦拭”方法必然会从物品上存在细胞的不同个体中共同采样细胞物质,即使个体的细胞主要位于物品上地形分散但不同的位置。因此,擦拭行为本身人为地造成了触摸DNA样本中遇到的一些DNA混合物。在一些涉及袭击者与受害者短暂接触的情况下,受害者的DNA可能大量存在,以至于无法检测和分型犯罪者的DNA。为了规避触摸DNA证据标准回收和分析方法的挑战,我们之前报道了一种“智能分析”单细胞回收和DNA分析方法的开发,该方法可增强对触摸DNA证据的遗传分析。在这里,我们使用智能单细胞分析方法从属于已知捐赠者的各种触摸过的物体和衣物上的单个和聚集细胞中回收 probative 单源图谱。然后,我们使用相同的方法在模拟身体接触/袭击混合样本(即男性“袭击者”抓住女性“受害者”的手腕、颈部或衣物,或与“受害者”的床上用品短暂接触)中检测单源男性捐赠者DNA。从测试的31%和35%的单个和聚集生物颗粒(假定细胞)中获得了可归因于已知男性或女性捐赠者的DNA图谱。在测试的每种混合类型的细胞采样中都鉴定出了已知男性捐赠者“袭击者”的DNA图谱。这项工作的结果证明了在涉及微量犯罪者/受害者细胞混合物的身体接触/袭击案件中回收单源犯罪者DNA图谱的替代策略的有效性。

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