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Simulated radioactive decontamination of biological samples using a portable DNA extraction instrument for rapid DNA profiling

机译:使用便携式DNA提取仪器对生物样品进行放射性去污模拟,以快速进行DNA分析

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A portable DNA extraction instrument was evaluated for its ability to decontaminate blood and saliva samples deposited on different surfaces (metal, plastic and glass) contaminated with stable isotopes of cobalt (Co), cesium (Cs), and strontium (Sr) as equivalents to their radiogenic Co-60, Cs-137, and Sr-90 isotopes, respectively, that could be released during a nuclear weapon accident or a radiological dispersal device (RDD) detonation. Despite the very high contamination levels tested in this study, successful removal of greater than 99.996% of the Co, Cs, Sr contaminants was achieved based on inductively coupled plasma-mass spectrometry (ICP-MS) and neutron activation analyses carried out on all liquids (including DNA eluates) and solid waste produced during automated DNA extraction. The remaining amounts of Co, Cs and Sr in the DNA eluates, when converted to dose rates (corresponding to Co-60, Cs-137 and Sr-90), were determined to be below the recommended dose limits for the general public in most of the scenarios tested. The presence of Co, Cs and Sr contaminants in the cell lysates had no adverse impact on the binding of DNA onto the magnetic DNA IQ (TM) beads. DNA yields were similar to uncontaminated controls. The remaining Co, Cs and Sr in the DNA eluates did not interfere with real-time PCR DNA quantification. In addition, the quality of the AmpFlSTR (R) Identifiler (R) profiles derived in 26 min using an accelerated protocol was very good and comparable to controls. This study emphasizes the use of an accelerated process involving a portable DNA extraction instrument to significantly reduce radioactive dose rates to allow contaminated samples to be processed safely in a forensic mobile laboratory to expedite the identification of individuals potentially involved in the dispersal of nuclear or other radioactive materials. Crown Copyright (C) 2016 Published by Elsevier Ireland Ltd. All rights reserved.
机译:评估了便携式DNA提取仪对沉积在不同表面(金属,塑料和玻璃)上的血液和唾液样品进行污染的能力,这些样品被钴(Co),铯(Cs)和锶(Sr)的稳定同位素污染,相当于它们的放射性Co-60,Cs-137和Sr-90同位素,可能在核武器事故或放射扩散装置(RDD)爆炸时释放。尽管在这项研究中测试了很高的污染水平,但基于电感耦合等离子体质谱法(ICP-MS)和对所有液体进行的中子活化分析,仍成功去除了超过99.996%的Co,Cs,Sr污染物(包括DNA洗脱液)和自动DNA提取过程中产生的固体废物。当将DNA洗脱液中的Co,Cs和Sr的剩余量转换为剂量率(对应于Co-60,Cs-137和Sr-90)时,在大多数情况下被确定低于建议的剂量限值测试的场景。细胞裂解物中Co,Cs和Sr污染物的存在对DNA与磁性DNA IQ(TM)磁珠的结合没有不利影响。 DNA产量与未污染的对照相似。 DNA洗脱液中剩余的Co,Cs和Sr不会干扰实时PCR DNA定量。另外,使用加速方案在26分钟内得到的AmpF1STR(R)Identifiler(R)图谱的质量非常好并且与对照相当。这项研究强调使用加速过程,包括便携式DNA提取仪,以显着降低放射性剂量率,以便在法医移动实验室中安全处理受污染的样品,以加快识别可能涉及核扩散或其他放射性物质扩散的个人材料。官方版权(C)2016,由Elsevier Ireland Ltd.发布。保留所有权利。

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