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法医表观遗传学分析:未来之路。

Forensic Epigenetic Analysis: The Path Ahead.

机构信息

Molecular Infection and Functional Biology Lab, Kusuma School of Biological Sciences, Indian Institute of Technology Delhi, New Delhi, India.

Molecular Infection and Functional Biology Lab, Kusuma School of Biological Sciences, Indian Institute of Technology Delhi, New Delhi, India,

出版信息

Med Princ Pract. 2019;28(4):301-308. doi: 10.1159/000499496. Epub 2019 Mar 12.

Abstract

Unlike DNA fingerprinting, which scores for differences in the genome that are phenotype neutral, epigenetic variations are gaining importance in forensic investigations. Methylation of DNA has a broad range of effects on the lifestyle, health status, and physical appearance of individuals. DNA methylation profiling of forensic samples is useful in determination of the cell or tissue type of the DNA source and also for estimation of age. The quality and quantity of the biosample available from the crime scene limits the possible number of DNA methylation tests and the selection of the technology that can be used. Several techniques have been used for DNA methylation analysis for epigenetic investigations of forensic biological samples. However, novel techniques are needed for multiplex analysis of epigenetic markers as the techniques that are currently available require a large amount of high-quality DNA and are also limited in their multiplexing capacities that are often insufficient to fully resolve a forensic query of interest.

摘要

与 DNA 指纹图谱技术不同,后者针对的是基因组中表型中性的差异,而表观遗传变异在法医学调查中越来越受到重视。DNA 的甲基化对个体的生活方式、健康状况和外貌有广泛的影响。对法医样本进行 DNA 甲基化分析有助于确定 DNA 来源的细胞或组织类型,也有助于估计年龄。犯罪现场获得的生物样本的质量和数量限制了可能进行的 DNA 甲基化测试数量和可使用技术的选择。已经使用了几种技术来分析 DNA 甲基化,以对法医生物样本进行表观遗传学研究。然而,需要新的技术来进行表观遗传标记的多重分析,因为目前可用的技术需要大量高质量的 DNA,并且在多重分析能力方面也受到限制,通常不足以完全解决感兴趣的法医学查询。

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Forensic Epigenetic Analysis: The Path Ahead.法医表观遗传学分析:未来之路。
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