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The use of DNA microarrays to investigate the pharmacogenomics of drug response in living systems.

机译:DNA微阵列用于研究生命系统中药物反应的药物基因组学。

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摘要

With the advent of DNA microarray analysis, it is now possible to examine the response of virtually the entire human genome to cellular drug exposure and to uncover a wide variety of genes correlating with the establishment of drug resistance. This relatively new field of pharmacogenomics mechanisms of drug action and how cells respond and adapt to drug exposure. However, DNA microarray studies typically result in the identification of hundreds of genes that may or may not be of relevance in vivo-particularly when large, genetically diverse study populations are used. The challenge to the researcher is to design experimental systems and approaches which minimize variability in the data, increase the reproducibility amongst experiments, allow array data from multiple experiments to be assessed by a variety of statistical, supervised learning, and data clustering approaches, and provide a clear link between drug response and the expression of specific genes. This review provides a description and critical analysis of recent studies on the pharmacogenomics of drug response and discusses current guidelines and approaches for the performance and analysis of DNA microarray experiments in this area.
机译:随着DNA芯片分析的出现,现在可以检查几乎整个人类基因组对细胞药物暴露的反应,并发现与耐药性建立相关的各种基因。药物作用机理的药物基因组学这一相对较新的领域以及细胞如何响应和适应药物暴露。但是,DNA芯片研究通常会鉴定出数百个可能在体内或不相关的基因,尤其是在使用具有大量遗传多样性的研究人群时。研究人员面临的挑战是设计一种实验系统和方法,以最小化数据的变异性,提高实验之间的可重复性,允许通过多种统计,监督学习和数据聚类方法评估来自多个实验的阵列数据,并提供药物反应与特定基因表达之间的明确联系。这篇综述提供了对药物反应的药物基因组学的最新研究的描述和批判性分析,并讨论了在该领域进行性能和分析的最新指南和方法。

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