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The use of denaturing high-performance liquid chromatography (DHPLC) for the analysis of genetic variations: impact for diagnostics and pharmacogenetics.

机译:使用变性高效液相色谱(DHPLC)分析遗传变异:对诊断和药物遗传学的影响。

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摘要

Over the past five years, denaturing high-performance liquid chromatography (DHPLC) has emerged as one of the most versatile technologies for the analysis of genetic variations. With the benefit of novel polymer chemistries used for separation, the accuracy, sensitivity, and the throughput of DHPLC for DNA and RNA analysis have greatly improved. DHPLC has been adopted in many laboratories for the screening of mutations and single-nucleotide polymorphisms (SNPs). The ability of DHPLC to detect known and unknown mutations simultaneously has put this technology at the forefront of genetic analysis for a wide variety of diseases. In addition, the high sensitivity of DHPLC combined with the accuracy of the heteroduplex analysis has allowed the development of applications beyond the scope of traditional sequencing or genotyping, e.g., the early detection of cancer. This article reviews the methods, which made DHPLC a widely used tool for diagnosis in molecular genetics and pharmacogenetics. The article provides an overview of current applications in these fields and points to novel applications in areas like epigenetics and the analysis of heteroplasmic mitochondrial DNA, in which DHPLC is becoming the leading technology.
机译:在过去的五年中,变性高效液相色谱(DHPLC)已成为分析遗传变异的最通用的技术之一。得益于用于分离的新型聚合物化学方法,DHPLC用于DNA和RNA分析的准确性,灵敏度和通量得到了极大的提高。 DHPLC已在许多实验室中用于筛选突变和单核苷酸多态性(SNP)。 DHPLC同时检测已知和未知突变的能力使该技术处于针对多种疾病的遗传分析的最前沿。此外,DHPLC的高灵敏度与异源双链分析的准确性相结合,已使应用程序的开发超出了传统测序或基因分型的范围,例如癌症的早期检测。本文对这些方法进行了综述,这些方法使DHPLC成为诊断分子遗传学和药物遗传学的一种广泛使用的工具。本文概述了这些领域的当前应用,并指出了表观遗传学和线粒体DNA异质分析等领域的新应用,其中DHPLC已成为其中的领先技术。

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