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Expanding the Use of RNA in Forensic Science: A Quantum Dot Molecular Beacon Approach.

机译:在法医学中扩大RNA的使用:量子点分子信标方法。

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摘要

As the popularity of shows such as CSI increases, so does the demand for DNA evidence in court cases. This has led to the overwhelming of capacity for analysis of biological samples at crime labs across the country, and to the development of a massive backlog of DNA evidence waiting to be processed. At the end of 2011, labs had a processing capacity of 250,000 cases per year, but an annual total of nearly 350,000 that needed to be processed. Such delays have effects throughout the US justice system. One way to reduce the backlog would be to increase the value of the evidence retrieved from the scene, reduce the collection of unnecessary evidence, and retrieve as much data from the evidence as possible in the fewest steps. We investigated a novel, confirmatory method of body fluid identification using quantum dot molecular beacons (QDMBs). The QDMBs target RNA species that are tissue-specific or sex-specific, allowing for the identification of body fluid stains and identifying the sex of the depositor of a bloodstain. Our results show that we were successful in developing QDMBs that identify blood, semen, saliva, male blood, and female blood, along with a human-specific beacon. We were also able to detect aged stains, although the age detectable is dependent upon the particular fluid tested. This technique has a low cost, confirmatory testing, and a high potential for portability, meaning it could be performed at the scene to increase the value of evidence retrieved. In addition to being a confirmatory test, it does not lead to the degradation of DNA, as can some presumptive tests. We believe this technique holds great potential for increasing the value of RNA in forensic evidence and helping to reduce the biological evidence backlog.
机译:随着诸如CSI之类的节目越来越受欢迎,在法庭案件中对DNA证据的需求也在增加。这导致全国犯罪实验室对生物样品进行分析的能力不堪重负,并导致大量待处理的DNA证据积压。截至2011年底,实验室的处理能力为每年25万个案例,但每年总共需要处理近35万个案例。这种延误对整个美国司法系统都有影响。减少积压的一种方法是增加从现场获取的证据的价值,减少不必要的证据的收集,并以最少的步骤从证据中获取尽可能多的数据。我们研究了一种使用量子点分子信标(QDMB)进行体液识别的新颖,确认性方法。 QDMB靶向具有组织特异性或性别特异性的RNA种类,从而可以识别体液污渍并识别血迹沉积者的性别。我们的结果表明,我们成功地开发了可识别血液,精液,唾液,雄性血液和雌性血液以及人类专用信标的QDMB。我们也能够检测到老化的污渍,尽管可检测的年龄取决于所测试的特定液体。该技术具有成本低,验证性测试和便携性高的潜力,这意味着可以在现场进行以增加取回的证据的价值。除了进行验证性测试外,它不会导致DNA降解,某些推测性测试也不会导致DNA降解。我们认为,这项技术具有巨大的潜力,可以提高法医学证据中RNA的价值,并有助于减少生物学证据的积压。

著录项

  • 作者

    Moore, Joshua R.;

  • 作者单位

    West Virginia University.;

  • 授予单位 West Virginia University.;
  • 学科 Molecular biology.
  • 学位 M.S.
  • 年度 2015
  • 页码 37 p.
  • 总页数 37
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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