Blackman Stephen, Dawnay Nick, Ball Glyn, Stafford-Allen Beccy, Tribble Nicholas, Rendell Paul, Neary Kelsey, Hanson Erin K, Ballantyne Jack, Kallifatidis Beatrice, Mendel Julian, Mills DeEtta K, Wells Simon
Product Development Group, LGC Ltd., Culham Science Centre, Abingdon OX14 3ED, UK.
Product Development Group, LGC Ltd., Culham Science Centre, Abingdon OX14 3ED, UK.
Forensic Sci Int Genet. 2015 Jul;17:137-148. doi: 10.1016/j.fsigen.2015.04.009. Epub 2015 May 6.
DNA profiling through the analysis of STRs remains one of the most widely used tools in human identification across the world. Current laboratory STR analysis is slow, costly and requires expert users and interpretation which can lead to instances of delayed investigations or non-testing of evidence on budget grounds. The ParaDNA(®) Intelligence System has been designed to provide a simple, fast and robust way to profile DNA samples in a lab or field-deployable manner. The system analyses 5-STRs plus amelogenin to deliver a DNA profile that enables users to gain rapid investigative leads and intelligent prioritisation of samples in human identity testing applications. Utilising an innovative sample collector, minimal training is required to enable both DNA analysts and nonspecialist personnel to analyse biological samples directly, without prior processing, in approximately 75min. The test uses direct PCR with fluorescent HyBeacon(®) detection of STR allele lengths to provide a DNA profile. The developmental validation study described here followed the Scientific Working Group on DNA Analysis Methods (SWGDAM) guidelines and tested the sensitivity, reproducibility, accuracy, inhibitor tolerance, and performance of the ParaDNA Intelligence System on a range of mock evidence items. The data collected demonstrate that the ParaDNA Intelligence System displays useful DNA profiles when sampling a variety of evidence items including blood, saliva, semen and touch DNA items indicating the potential to benefit a number of applications in fields such as forensic, military and disaster victim identification (DVI).
通过分析短串联重复序列(STR)进行DNA分型仍然是全球人类身份识别中使用最广泛的工具之一。当前实验室的STR分析速度慢、成本高,需要专业人员操作和解读,这可能导致调查延迟或因预算原因不对证据进行检测的情况。ParaDNA(®)智能系统旨在提供一种简单、快速且可靠的方法,以实验室可部署或现场可部署的方式对DNA样本进行分型。该系统分析5个STR加上牙釉蛋白基因,以生成DNA图谱,使用户能够在人类身份测试应用中快速获得调查线索并对样本进行智能排序。利用创新的样本采集器,DNA分析人员和非专业人员只需经过最少的培训,就能在大约75分钟内直接分析生物样本,无需事先处理。该测试采用直接聚合酶链反应(PCR),通过荧光HyBeacon(®)检测STR等位基因长度来提供DNA图谱。此处描述的开发验证研究遵循了DNA分析方法科学工作组(SWGDAM)的指导方针,并在一系列模拟证据样本上测试了ParaDNA智能系统的灵敏度、可重复性、准确性、抑制剂耐受性和性能。收集到的数据表明,当对包括血液、唾液、精液和触摸DNA样本在内的各种证据样本进行采样时,ParaDNA智能系统能够显示有用的DNA图谱,这表明该系统有潜力在法医、军事和灾难受害者身份识别(DVI)等领域的诸多应用中发挥作用。