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GlobalFiler™ PCR扩增试剂盒的发育验证:一种用于扩增法医样本的六色多重检测方法。

Developmental validation of GlobalFiler™ PCR amplification kit: a 6-dye multiplex assay designed for amplification of casework samples.

作者信息

Ludeman Matthew J, Zhong Chang, Mulero Julio J, Lagacé Robert E, Hennessy Lori K, Short Marc L, Wang Dennis Y

机构信息

Thermo Fisher Scientific Inc., 180 Oyster Point Blvd, South San Francisco, CA, 94080, USA.

Spring Bioscience, 4300 Hacienda Dr., Pleasanton, CA, 94588, USA.

出版信息

Int J Legal Med. 2018 Nov;132(6):1555-1573. doi: 10.1007/s00414-018-1817-5. Epub 2018 Mar 9.

Abstract

The GlobalFiler™ PCR Amplification Kit is a single multiplex assay that amplifies a set of 24 markers, which encompass the European Standard Set and CODIS (Combined DNA Index System) recommended composite set of loci. In addition to more loci and a 6-dye chemistry format, the Master Mix has been formulated to allow higher sample loading volume for trace DNA samples. The GlobalFiler™ Kit has been optimized to deliver high performance on casework samples, while also delivering fast thermal cycling, with an amplification time of approximately 80 min. Here, we report the results of the developmental validation study which followed the SWGDAM (Scientific Working Group on DNA Analysis Methods) guidelines and includes data for PCR-based studies, sensitivity, species specificity, stability, precision, reproducibility and repeatability, concordance, stutter, DNA mixtures, and performance on mock casework samples. The results validate the multiplex design as well as demonstrate the kit's robustness, reliability, and suitability as an assay for human identification with casework DNA samples.

摘要

GlobalFiler™ PCR扩增试剂盒是一种单一的多重检测方法,可扩增一组24个标记物,其中包括欧洲标准集和联合DNA索引系统(CODIS)推荐的复合基因座集。除了更多的基因座和6染料化学格式外,预混液的配方还允许对痕量DNA样本进行更高的上样量。GlobalFiler™试剂盒经过优化,可在实际案件样本上实现高性能,同时还能实现快速热循环,扩增时间约为80分钟。在此,我们报告了遵循DNA分析方法科学工作组(SWGDAM)指南的开发验证研究结果,包括基于PCR的研究、灵敏度、物种特异性、稳定性、精密度、重现性和重复性、一致性、拖尾、DNA混合物以及模拟实际案件样本性能的数据。结果验证了多重检测设计,并证明了该试剂盒作为一种用于实际案件DNA样本人类身份鉴定检测方法的稳健性、可靠性和适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c831/6208722/cb8cc70aaac2/414_2018_1817_Fig1_HTML.jpg

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