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TaqMan在遗传和分子毒理学中的应用。

TaqMan applications in genetic and molecular toxicology.

作者信息

Watson David E, Li Baohui

机构信息

Investigative Toxicology, Toxicology and Drug Disposition, A Division ofEli Lilly and Company, Greenfield, Indiana 46140, USA.

出版信息

Int J Toxicol. 2005 May-Jun;24(3):139-45. doi: 10.1080/10915810590948299.

Abstract

Quantification of nucleic acids has become a common procedure in many toxicology laboratories. Among the technologies that accomplish this is the fluorogenic 5'-nuclease assay, commonly known as TaqMan. Three TaqMan applications for genetic and molecular toxicology are presented in this article: quantification of gene expression, detection of genetic polymorphisms, and quantification of chromosomal DNA deletions. Of these, quantification of gene expression is the most widely used, and established TaqMan as a benchmark technology for nucleic acid quantification. Two additional applications, polymorphism detection and quantification of DNA deletions, demonstrate the flexibility and quantitative strengths that make TaqMan so powerful, including high precision, excellent sensitivity, and broad linear dynamic range. These and similar applications improve our ability to investigate genetic and molecular dimensions of toxicological phenomena, and have promoted the widespread use of TaqMan in toxicology departments in the pharmaceutical industry. In addition to presenting these applications, the authors discuss some of the challenges of integrating TaqMan and other new technologies into the drug development process.

摘要

核酸定量已成为许多毒理学实验室的常规操作。实现这一目标的技术之一是荧光5'-核酸酶测定法,通常称为TaqMan。本文介绍了TaqMan在遗传和分子毒理学中的三个应用:基因表达定量、基因多态性检测和染色体DNA缺失定量。其中,基因表达定量应用最为广泛,并使TaqMan成为核酸定量的基准技术。另外两个应用,即多态性检测和DNA缺失定量,展示了TaqMan强大的灵活性和定量优势,包括高精度、高灵敏度和宽线性动态范围。这些及类似应用提高了我们研究毒理学现象遗传和分子层面的能力,并推动了TaqMan在制药行业毒理学部门的广泛应用。除了介绍这些应用外,作者还讨论了将TaqMan和其他新技术整合到药物开发过程中面临的一些挑战。

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