Next-Generation STR Genotyping Kits for Forensic Applications.

Q1 Social Sciences
Forensic Science Review Pub Date : 2012-01-01
J J Mulero, L K Hennessy
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引用次数: 0

Abstract

Forensic DNA typing has been a constantly evolving field driven by innovations from academic laboratories as well as kit manufacturers. Central to these technological advances has been the transition from multilocus-probe restriction fragment length polymorphism (RFLP) methods to short tandem repeat (STR) PCR-based assays. STRs are now the markers of choice for forensic DNA typing and a wide variety of commercial STR kits have been designed to meet the various needs of a forensic lab. This review provides an overview of the commercial STR kits made available since the year 2000 and explains the rationale for creating these kits. Substantial progress has been made in key areas such as sample throughput, speed, and sensitivity. For example, a significant advancement for databasing labs was the capability of direct amplification from a blood or buccal sample without need for DNA extraction or purification, enabling increased throughput. Other key improvements are greater tolerance for inhibitors (e.g., humic acid, hematin, and tannic acid) present in evidence samples, PCR cycling times decreased by 1-1.5 h, and greater sensitivity with improved buffer components and thermal cycling conditions. These improvements that have been made over the last 11 years have enhanced the ability of forensic laboratories to obtain a DNA profile from more challenging samples. However, with the proliferation of kits from different vendors the primer binding sequences of the loci vary, which could result in discordant events that would need to be resolved either via a database-driven software solution or simply by evaluating discordant samples with multiple kits.

用于法医应用的下一代STR基因分型试剂盒。
法医DNA分型一直是一个不断发展的领域,由学术实验室和试剂盒制造商的创新驱动。这些技术进步的核心是从多位点探针限制性片段长度多态性(RFLP)方法过渡到基于短串联重复(STR) pcr的检测。STR现在是法医DNA分型的首选标记,各种各样的商业STR试剂盒已被设计用于满足法医实验室的各种需求。本审查概述了自2000年以来提供的商业STR工具包,并解释了创建这些工具包的基本原理。在样品通量、速度和灵敏度等关键领域取得了实质性进展。例如,数据库实验室的一个重大进步是能够从血液或口腔样本中直接扩增,而无需提取或纯化DNA,从而提高了吞吐量。其他关键的改进是对证据样品中存在的抑制剂(例如,腐植酸,血红素和单宁酸)的耐受性更强,PCR循环时间减少了1-1.5小时,并且通过改进缓冲成分和热循环条件提高了灵敏度。过去11年来取得的这些改进提高了法医实验室从更具挑战性的样本中获得DNA图谱的能力。然而,随着来自不同供应商的试剂盒的激增,基因座的引物结合序列也会发生变化,这可能导致不一致的事件,需要通过数据库驱动的软件解决方案或简单地通过使用多个试剂盒评估不一致的样本来解决。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Forensic Science Review
Forensic Science Review Social Sciences-Law
CiteScore
1.90
自引率
0.00%
发文量
5
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