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使用前端细胞分离和概率建模简化复杂的 DNA 图谱。

Simplification of complex DNA profiles using front end cell separation and probabilistic modeling.

机构信息

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

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

出版信息

Forensic Sci Int Genet. 2018 Sep;36:205-212. doi: 10.1016/j.fsigen.2018.07.004. Epub 2018 Jul 17.

Abstract

Forensic samples comprised of cell populations from multiple contributors often yield DNA profiles that can be extremely challenging to interpret. This frequently results in decreased statistical strength of an individual's association to the mixture and the loss of probative data. The purpose of this study was to test a front-end cell separation workflow on complex mixtures containing as many as five contributors. Our approach involved selectively labelling certain cell populations in dried whole blood mixture samples with fluorescently labeled antibody probe targeting the HLA-A02 allele, separating the mixture using Fluorescence Activated Cell Sorting (FACS) into two fractions that are enriched in A02 positive and A*02 negative cells, and then generating DNA profiles for each fraction. We then tested whether antibody labelling and cell sorting effectively reduced the complexity of the original cell mixture by analyzing STR profiles quantitatively using the probabilistic modeling software, TrueAllele Casework. Results showed that antibody labelling and FACS separation of target populations yielded simplified STR profiles that could be more easily interpreted using conventional procedures. Additionally, TrueAllele analysis of STR profiles from sorted cell fractions increased statistical strength for the association of most of the original contributors interpreted from the original mixtures.

摘要

法医样本通常由多个供体的细胞群体组成,这些样本的 DNA 图谱往往极难解读。这通常会导致个体与混合物关联的统计强度降低,并丢失有价值的数据。本研究的目的是测试一种前端细胞分离工作流程,该工作流程可用于包含多达五个供体的复杂混合物。我们的方法涉及使用针对 HLA-A02 等位基因的荧光标记抗体探针选择性标记干燥全血混合物样本中的某些细胞群体,使用荧光激活细胞分选(FACS)将混合物分离成富含 A02 阳性和 A*02 阴性细胞的两个部分,然后为每个部分生成 DNA 图谱。然后,我们使用概率建模软件 TrueAllele Casework 对 STR 图谱进行定量分析,以测试抗体标记和细胞分选是否有效地降低了原始细胞混合物的复杂性。结果表明,抗体标记和目标群体的 FACS 分离产生了简化的 STR 图谱,使用传统程序更容易解释。此外,对来自经分选的细胞部分的 STR 图谱进行 TrueAllele 分析增加了大多数从原始混合物中解释的原始供体的关联的统计强度。

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