首页> 美国卫生研究院文献>The Journal of Molecular Diagnostics : JMD >Rapid Genotyping of Single Nucleotide Polymorphisms Influencing Warfarin Drug Response by Surface-Enhanced Laser Desorption and Ionization Time-of-Flight (SELDI-TOF) Mass Spectrometry
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Rapid Genotyping of Single Nucleotide Polymorphisms Influencing Warfarin Drug Response by Surface-Enhanced Laser Desorption and Ionization Time-of-Flight (SELDI-TOF) Mass Spectrometry

机译:通过表面增强激光解吸和电离飞行时间质谱(SELDI-TOF)快速分析影响华法林药物反应的单核苷酸多态性

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摘要

Warfarin exhibits significant interindividual variability in dosing requirements. Different drug responses are partly attributed to the single nucleotide polymorphisms (SNPs) that influence either drug action or drug metabolism. Rapid genotyping of these SNPs helps clinicians to choose appropriate initial doses to quickly achieve anticoagulation effects and to prevent complications. We report a novel application of surface-enhanced laser desorption and ionization time-of-flight mass spectrometry (SELDI-TOF MS) in the rapid genotyping of SNPs that impact warfarin efficacy. The SNPs were first amplified by PCR and then underwent single base extension to generate the specific SNP product. Next, genetic variants displaying different masses were bound to Q10 anionic proteinChips and then genotyped by using SELDI-TOF MS in a multiplex fashion. SELDI-TOF MS offered unique properties of on-chip sample enrichment and clean-ups, which streamlined the testing procedures and eliminated many tedious experimental steps required by the conventional MS-based method. The turn-around time for genotyping three known warfarin-related SNPs, CYP2C9*2, CYP2C9*3, and VKORC1 3673G>A by SELDI-TOF MS was less than 5 hours. The analytical accuracy of this method was confirmed both by bidirectional DNA sequencing and by comparing the genotype results (n = 189) obtained by SELDI-TOF MS to reports from a clinical reference laboratory. This new multiplex genotyping method provides an excellent clinical laboratory platform to promote personalized medicine in warfarin therapy.
机译:华法林在剂量要求上表现出明显的个体差异。不同的药物反应部分归因于影响药物作用或药物代谢的单核苷酸多态性(SNP)。这些SNP的快速基因分型有助于临床医生选择合适的初始剂量,以快速达到抗凝作用并预防并发症。我们报告了表面增强的激光解吸和电离飞行时间质谱(SELDI-TOF MS)在对华法林功效产生影响的SNPs快速基因分型中的新应用。首先通过PCR扩增SNP,然后进行单碱基延伸以产生特异性SNP产物。接下来,将表现出不同质量的遗传变异体与Q10阴离子蛋白芯片结合,然后通过SELDI-TOF MS以多重方式进行基因分型。 SELDI-TOF MS提供了片上样品富集和净化的独特特性,从而简化了测试程序并消除了传统基于MS的方法所需的许多繁琐的实验步骤。通过SELDI-TOF MS对三种已知的华法林相关SNPs,CYP2C9 * 2,CYP2C9 * 3和VKORC1 3673G> A进行基因分型的时间不到5小时。通过双向DNA测序以及将SELDI-TOF MS获得的基因型结果(n = 189)与临床参考实验室的报告进行比较,证实了该方法的分析准确性。这种新的多重基因分型方法为推广华法林治疗中的个性化药物提供了一个极好的临床实验室平台。

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