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药物遗传学研究中分析技术的发展。

Development of analytical technology in pharmacogenetic research.

作者信息

Daly Ann K

机构信息

Pharmacogenetics Group, School of Clinical and Laboratory Sciences, Medical School, University of Newcastle upon Tyne, Framlington Place, Newcastle upon Tyne, NE2 4HH, UK.

出版信息

Naunyn Schmiedebergs Arch Pharmacol. 2004 Jan;369(1):133-40. doi: 10.1007/s00210-003-0794-4. Epub 2003 Sep 25.

Abstract

Methods used to determine phenotype and genotype for pharmacogenetic polymorphisms are discussed. Phenotyping is mainly applicable to polymorphisms affecting drug disposition rather than drug response and can involve either direct measurement of enzyme activity or administration of a probe drug followed by measurement of drug and/or metabolite levels. Genotyping is now more widely used than phenotyping and can be used to determine genotype for polymorphisms affecting either drug disposition (for example those in the cytochromes P450 or N-acetyltransferases) or drug response (for example those in drug receptors). Most genotyping for known polymorphisms involves use of the polymerase chain reaction and the wide variety of methods based on this technique that are now used for routine genotyping are discussed in detail. In addition, a range of methods that can be used to detect novel polymorphisms, thereby further increasing understanding of interindividual variability in drug disposition and response, is described.

摘要

本文讨论了用于确定药物遗传多态性的表型和基因型的方法。表型分析主要适用于影响药物处置而非药物反应的多态性,可涉及酶活性的直接测量或给予探针药物后测量药物和/或代谢物水平。基因分型目前比表型分析应用更广泛,可用于确定影响药物处置(例如细胞色素P450或N - 乙酰转移酶中的多态性)或药物反应(例如药物受体中的多态性)的多态性的基因型。大多数已知多态性的基因分型涉及聚合酶链反应的使用,本文详细讨论了目前用于常规基因分型的基于该技术的多种方法。此外,还描述了一系列可用于检测新型多态性的方法,从而进一步加深对药物处置和反应个体间差异的理解。

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