Chowdhury Jeeshan, Kaigala Govind V, Pushpakom Sudeep, Lauzon Jana, Makin Alistair, Atrazhev Alexey, Stickel Alex, Newman William G, Backhouse Christopher J, Pilarski Linda M
Cross Cancer Institute, 11560 University Ave., Edmonton AB T6G1Z2, Canada.
J Mol Diagn. 2007 Sep;9(4):521-9. doi: 10.2353/jmoldx.2007.070014. Epub 2007 Aug 9.
Prospective clinical pharmacogenetic testing of the thiopurine S-methyltransferase gene remains to be realized despite the large body of evidence demonstrating clinical benefit for the patient and cost effectiveness for health care systems. We describe an entirely microchip-based method to genotype for common single nucleotide polymorphisms in the thiopurine S-methyltransferase gene that lead to serious adverse drug reactions for patients undergoing thiopurine therapy. Restriction fragment length polymorphism and allele-specific polymerase chain reaction have been adapted to a microfluidic chip-based polymerase chain reaction and capillary electrophoresis platform to genotype the common *2, *3A, and *3C functional alleles. In total, 80 patients being treated with thiopurines were genotyped, with 100% concordance between microchip and conventional methods. This is the first report of single nucleotide polymorphism detection using portable instrumentation and represents a significant step toward miniaturized for personalized treatment and automated point-of-care testing.
尽管有大量证据表明硫嘌呤甲基转移酶基因的前瞻性临床药物遗传学检测对患者具有临床益处且对医疗保健系统具有成本效益,但该检测仍有待实现。我们描述了一种完全基于微芯片的方法,用于对硫嘌呤甲基转移酶基因中的常见单核苷酸多态性进行基因分型,这些多态性会导致接受硫嘌呤治疗的患者发生严重药物不良反应。限制性片段长度多态性和等位基因特异性聚合酶链反应已被应用于基于微流控芯片的聚合酶链反应和毛细管电泳平台,以对常见的*2、3A和3C功能等位基因进行基因分型。总共对80名接受硫嘌呤治疗的患者进行了基因分型,微芯片方法与传统方法之间的一致性为100%。这是使用便携式仪器进行单核苷酸多态性检测的首次报告,代表了向个性化治疗小型化和自动化即时检测迈出的重要一步。