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Automation of DNA and miRNA co-extraction for miRNA-based identification of human body fluids and tissues

机译:DNA和miRNA共提取的自动化,用于基于miRNA的人体体液和组织鉴定

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In the last years, microRNA (miRNA) analysis came into focus in the field of forensic genetics. Yet, no standardized and recommendable protocols for co-isolation of miRNA and DNA from forensic relevant samples have been developed so far. Hence, this study evaluated the performance of an automated Maxwell (R) 16 System-based strategy (Promega) for co-extraction of DNA and miRNA from forensically relevant (blood and saliva) samples compared to (semi-)manual extraction methods. Three procedures were compared on the basis of recovered quantity of DNA and miRNA (as determined by real-time PCR and Bioanalyzer), miRNA profiling (shown by Cq values and extraction efficiency), STR profiles, duration, contamination risk and handling. All in all, the results highlight that the automated co-extraction procedure yielded the highest miRNA and DNA amounts from saliva and blood samples compared to both (semi-) manual protocols. Also, for aged and genuine samples of forensically relevant traces the miRNA and DNA yields were sufficient for subsequent downstream analysis. Furthermore, the strategy allows miRNA extraction only in cases where it is relevant to obtain additional information about the sample type. Besides, this system enables flexible sample throughput and labor-saving sample processing with reduced risk of cross-contamination.
机译:在过去的几年中,microRNA(miRNA)分析成为法医遗传学领域的焦点。但是,到目前为止,尚未开发出用于从法医相关样本中共分离miRNA和DNA的标准化且可推荐的方案。因此,本研究评估了与(半)手动提取方法相比,从法医相关(血液和唾液)样本中共提取DNA和miRNA的基于Maxwell(R)16系统的自动化策略(Promega)的性能。根据回收的DNA和miRNA量(通过实时PCR和Bioanalyzer确定),miRNA分析(以Cq值和提取效率表示),STR曲线,持续时间,污染风险和处理,对三种方法进行了比较。总而言之,结果突出表明,与两种(半)手动方案相比,自动共提取程序从唾液和血液样品中产生的miRNA和DNA量最高。同样,对于老化且真实的法医相关痕迹样品,miRNA和DNA产量足以用于后续的下游分析。此外,该策略仅在与获取有关样品类型的其他信息相关的情况下才允许提取miRNA。此外,该系统可实现灵活的样品通量和省力的样品处理,并降低了交叉污染的风险。

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