Murugesan Gurunathan, Kottke-Marchant Kandice, Ellis Stephen, Agah Ramtin, Tubbs Raymond
The Cleveland Clinic Foundation, Department of Clinical Pathology, OH 44195, USA.
Expert Rev Mol Diagn. 2005 May;5(3):457-71. doi: 10.1586/14737159.5.3.457.
DNA sequence variations due to single nucleotide changes or polymorphisms (SNPs) have demonstrated an association with certain diseases as causative agents or surrogate biomarkers. Identification and genotyping of SNPs requires reliable and robust technologies. Multiple genotyping platforms are available to detect SNPs. Although many of these platforms meet the requirements of the research environment, technologies have also emerged for high-throughput clinical genotyping as well. The LightTyper is one such platform, providing SNP identification by employing melting curve analysis of fluorescently labeled probes. The LightTyper has been used to identify SNPs associated with myocardial infarction, developing and validating assays for approximately 100 SNPs in 30 candidate genes. The LightTyper is also amenable to the use of assays already developed for the LightCycler, which is widely used in clinical laboratories. The initial experience presented here suggests the potential use of the LightTyper for high-throughput clinical genotyping.
由于单核苷酸变化或多态性(SNP)导致的DNA序列变异已被证明与某些疾病存在关联,这些变异可作为致病因素或替代生物标志物。SNP的鉴定和基因分型需要可靠且强大的技术。有多种基因分型平台可用于检测SNP。尽管这些平台中的许多都满足研究环境的要求,但也出现了用于高通量临床基因分型的技术。LightTyper就是这样一个平台,它通过对荧光标记探针进行熔解曲线分析来鉴定SNP。LightTyper已被用于鉴定与心肌梗死相关的SNP,开发并验证了30个候选基因中约100个SNP的检测方法。LightTyper也适用于已经为广泛应用于临床实验室的LightCycler开发的检测方法。此处介绍的初步经验表明LightTyper在高通量临床基因分型方面具有潜在用途。