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用于对参与药物代谢、排泄和转运的基因进行综合基因分型的多重检测法。

Multiplex assay for comprehensive genotyping of genes involved in drug metabolism, excretion, and transport.

作者信息

Daly Thomas M, Dumaual Carmen M, Miao Xin, Farmen Mark W, Njau Reuben K, Fu Dong-Jing, Bauer Nancy L, Close Sandra, Watanabe Nancy, Bruckner Carsten, Hardenbol Paul, Hockett Richard D

机构信息

Eli Lilly and Company, Lilly Corporate Center, Indianapolis, Indiana 46285, USA.

出版信息

Clin Chem. 2007 Jul;53(7):1222-30. doi: 10.1373/clinchem.2007.086348. Epub 2007 May 17.

Abstract

BACKGROUND

Drug metabolism is a multistep process by which the body disposes of xenobiotic agents such as therapeutic drugs. Genetic variation in the enzymes involved in this process can lead to variability in a patient's response to medication.

METHODS

We used molecular-inversion probe technology to develop a multiplex genotyping assay that can simultaneously test for 1227 genetic variants in 169 genes involved in drug metabolism, excretion, and transport. Within this larger set of variants, we performed analytical validation of a clinically defined core set of 165 variants in 27 genes to assess accuracy, imprecision, and dynamic range.

RESULTS

In a test set of 91 samples, genotyping accuracy for the core set probes was 99.8% for called genotypes, with a 1.2% no-call (NC) rate. The majority of the core set probes (133 of 165) had < or = 1 genotyping failure in the test set; a subset of 12 probes was responsible for the majority of failures (mainly NC). Genotyping results were reproducible upon repeat testing with overall within- and between-run variation of 1.1% and 1.4%, respectively-again, primarily NCs in a subset of probes. The assay showed stable genotyping results over a 6-fold range of input DNA.

CONCLUSIONS

This assay generates a comprehensive assessment of a patient's metabolic genotype and is a tool that can provide a more thorough understanding of patient-to-patient variability in pharmacokinetic responses to drugs.

摘要

背景

药物代谢是一个多步骤过程,机体通过该过程处理诸如治疗药物等外源性物质。参与此过程的酶的基因变异可导致患者对药物反应的变异性。

方法

我们使用分子倒置探针技术开发了一种多重基因分型检测方法,该方法可同时检测参与药物代谢、排泄和转运的169个基因中的1227个基因变异。在这一较大的变异组中,我们对27个基因中临床定义的165个变异的核心组进行了分析验证,以评估准确性、不精密度和动态范围。

结果

在91个样本的测试集中,核心组探针的基因型分型准确率为99.8%,无分型率为1.2%。核心组的大多数探针(165个中的133个)在测试集中的基因分型失败数≤1;12个探针的子集导致了大多数失败(主要是无分型)。重复测试时基因分型结果可重复,批内和批间总体变异分别为1.1%和1.4%,同样,主要是一部分探针中的无分型情况。该检测方法在输入DNA 6倍范围内显示出稳定的基因分型结果。

结论

该检测方法可对患者的代谢基因型进行全面评估,是一种能够更深入了解患者间药物药代动力学反应变异性的工具。

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