DNA 和金属颗粒的转移和回收:DNA 与环境扫描电子显微镜分析并行策略的概念验证应用。

IF 3.2 2区 医学 Q2 GENETICS & HEREDITY
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引用次数: 0

摘要

根据洛卡德原理 "每次接触都会留下痕迹",在接触表面时,手上和接触物体上的自身和非自身 DNA 可能会发生双向转移。在法医证据中经常会遇到金属,当手接触这些表面时,金属颗粒可能会与人类 DNA 一起转移。本研究提出了一种原始检测金属颗粒和触摸 DNA 的概念验证方法,以跟踪捐赠者的活动,特别是评估与后续表面接触前所接触的金属基质。为此,三名志愿者模拟了接触事件的场景,首先在铜表面,然后在塑料和玻璃表面留下指纹。研究人员在志愿者的双手和二次表面上收集了 24 个指纹存根,然后用环境扫描电子显微镜(ESEM)进行了分析。仅对铜和塑料表面的 DNA 进行了量化。另外 10 名志愿者按照同样的方案,先在铜表面沉积,然后再在塑料表面沉积,只对 DNA 转移进行评估。在 20 份接触过的 DNA 样品中,铜表面产生的 DNA 量(从 0.001 到 0.129 纳克/微升不等)明显低于二次接触过的塑料表面(从 0.007 到 0.362 纳克/微升不等)。ESEM-EDS 分析表明,志愿者的双手在接触铜表面后可以检测到大量的铜颗粒。含有铜硅酸盐的微粒出现在塑料上,而在玻璃上仅有 1/3 的样品中发现了铜硅酸盐。我们的概念验证研究表明,ESEM-EDS 分析有可能检测到志愿者在接触铜金属表面时转移到手上并沉积在二次接触物品上的铜微粒。研究结果表明,这种独创的 ESEM-DNA 并行方法有可能在犯罪现场追踪 DNA 转移和金属颗粒,尽管这仅仅是第一步,对更广泛的案例进行进一步研究将有助于解决活动水平命题下的结果解释问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transfer and recovery of DNA and metal particles: A proof-of-concept application of a parallel strategy by DNA and environmental scanning electron microscopy analysis

According to the principle of Locard “Every contact leaves a trace", when touching a surface, a bi-directional transfer of self and non-self-DNA residing on the hands and touched objects can occur. Metals are commonly encountered in forensic evidence and, during hand contact with these surfaces, a transfer of metal particles could occur together with the transfer of human DNA. This study proposes a proof-concept approach for the original detection of metal particles and touch DNA to track the activity performed by a donor and particularly to assess the metallic substrate touched before the contact with a subsequent surface. To this scope, a scenario of contact events was simulated by three volunteers, who participated in fingerprint deposition firstly on copper and then on plastic and glass surfaces. Twenty-four stubs were collected on the hands of volunteers and the secondary surfaces and then analyzed by environmental scanning electron microscopy (ESEM). DNA was quantified only from copper and plastic surfaces. Ten additional volunteers followed the same protocol of deposition on copper and then on plastic surfaces to evaluate DNA transfer only. On 20 touch DNA samples, the copper surface yielded significantly lower DNA amounts, ranging from 0.001 to 0.129 ng/μl, compared to the secondary touched plastic surface, ranging from 0.007 to 0.362 ng/μl. ESEM-EDS analysis showed that copper particles could be abundantly detected on the hands of the volunteers after contact with the copper surface. Particles containing silicates with copper were shown on plastic, while they were only found in 1/3 of samples on glass. Our proof-of-concept study has shown that ESEM-EDS analysis has the potential to detect copper particles transferred to the hands of volunteers during contact with a copper metallic surface and deposited on secondarily touched items. The results suggest that this original ESEM-DNA parallel approach could potentially allow the tracking of DNA transfer and metal particles at a crime scene, although this represents only a first step and further research on a wider casuistry could help to address the interpretation of results given activity level propositions.

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来源期刊
CiteScore
7.50
自引率
32.30%
发文量
132
审稿时长
11.3 weeks
期刊介绍: Forensic Science International: Genetics is the premier journal in the field of Forensic Genetics. This branch of Forensic Science can be defined as the application of genetics to human and non-human material (in the sense of a science with the purpose of studying inherited characteristics for the analysis of inter- and intra-specific variations in populations) for the resolution of legal conflicts. The scope of the journal includes: Forensic applications of human polymorphism. Testing of paternity and other family relationships, immigration cases, typing of biological stains and tissues from criminal casework, identification of human remains by DNA testing methodologies. Description of human polymorphisms of forensic interest, with special interest in DNA polymorphisms. Autosomal DNA polymorphisms, mini- and microsatellites (or short tandem repeats, STRs), single nucleotide polymorphisms (SNPs), X and Y chromosome polymorphisms, mtDNA polymorphisms, and any other type of DNA variation with potential forensic applications. Non-human DNA polymorphisms for crime scene investigation. Population genetics of human polymorphisms of forensic interest. Population data, especially from DNA polymorphisms of interest for the solution of forensic problems. DNA typing methodologies and strategies. Biostatistical methods in forensic genetics. Evaluation of DNA evidence in forensic problems (such as paternity or immigration cases, criminal casework, identification), classical and new statistical approaches. Standards in forensic genetics. Recommendations of regulatory bodies concerning methods, markers, interpretation or strategies or proposals for procedural or technical standards. Quality control. Quality control and quality assurance strategies, proficiency testing for DNA typing methodologies. Criminal DNA databases. Technical, legal and statistical issues. General ethical and legal issues related to forensic genetics.
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