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一种基于 quantifiler™ trio 的 HRM 筛选分析方法,可准确预测单一来源与混合生物样本。

A quantifiler™ trio-based HRM screening assay for the accurate prediction of single source versus mixed biological samples.

机构信息

Department of Forensic Science, Virginia Commonwealth University, 1015 Floyd Avenue, Richmond, VA, 23284, USA.

Integrative Life Sciences, Virginia Commonwealth University, 1000 Cary Street, Richmond, VA, 23284, USA.

出版信息

Int J Legal Med. 2023 Nov;137(6):1639-1651. doi: 10.1007/s00414-023-03070-6. Epub 2023 Aug 8.

Abstract

At present, the forensic DNA workflow is not capable of providing information about the contributor status (single source vs. multiple contributors) of evidentiary samples prior to end-point analysis. This exacerbates the challenges inherent to mixtures and low-template DNA samples. If additional sample information could be provided earlier in the workflow, protocols could be implemented to mitigate these challenges. An integrated Quantiplex®- high resolution melt (HRM) assay was shown to be effective in distinguishing between single source and mixture DNA samples; however, integration of the HRM assay into a more commonly used chemistry would be beneficial to the practitioner community. Thus, the assay was redesigned as an integrated Quantifiler™ Trio-HRM assay, which included the identification of a new DNA-binding dye, an increased reaction volume, and the establishment of new data analysis and standard curve metrics for all targets. This redesigned assay produced quantification values and qualitative values that were comparable to those produced when the same samples were tested using the standard Quantifiler™ Trio chemistry and settings. Further, STR profiles generated with quantification values produced from the integrated Quantifiler™ Trio-HRM assay and standard Quantifiler™ Trio chemistry were complete and fully concordant. Most importantly, the integrated Quantifiler™ Trio-HRM assay was able to accurately predict whether a sample was single source or a mixture 79.2% of the time, demonstrating the potential of this approach. With the incorporation of an expanded training set for prediction modeling, and completion of critical developmental validation studies, this assay could prove useful to the forensic DNA practitioner community.

摘要

目前,法医 DNA 工作流程在终点分析之前无法提供关于证据样本供体状态(单一来源与多个来源)的信息。这加剧了混合物和低模板 DNA 样本固有的挑战。如果能在工作流程早期提供更多的样本信息,就可以实施方案来缓解这些挑战。事实证明,集成 Quantiplex®-高分辨率熔解(HRM)分析在区分单一来源和混合物 DNA 样本方面非常有效;然而,将 HRM 分析集成到更常用的化学方法中,将有利于从业人员社区。因此,该分析被重新设计为集成的 Quantifiler™ Trio-HRM 分析,其中包括鉴定一种新的 DNA 结合染料、增加反应体积以及为所有靶标建立新的数据分析和标准曲线指标。该重新设计的分析产生的定量值和定性值与使用标准 Quantifiler™ Trio 化学和设置测试相同样本时产生的定量值和定性值相当。此外,使用集成的 Quantifiler™ Trio-HRM 分析和标准 Quantifiler™ Trio 化学产生的定量值生成的 STR 谱图完整且完全一致。最重要的是,集成的 Quantifiler™ Trio-HRM 分析能够以 79.2%的准确率准确预测样本是单一来源还是混合物,证明了这种方法的潜力。通过纳入更广泛的预测模型训练集并完成关键的开发验证研究,该分析可能对法医 DNA 从业人员社区有用。

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