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Multiplex Single Nucleotide Polymorphism Genotyping Utilizing Ligase Detection Reaction Coupled Surface Enhanced Raman Spectroscopy

机译:利用连接酶检测反应耦合表面增强拉曼光谱的多重单核苷酸多态性基因分型

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摘要

Single nucleotide polymorphisms (SNPs) are one of the key diagnostic markers for genetic disease, cancer progression, and pharmcogenomics. The ligase detection reaction (LDR) is an excellent method to identify SNPs, combining low detection limits and high specificity. We present the first multiplex LDR-surface enhanced Raman spectroscopy (SERS) SNP genotyping scheme. The platform has the advantage in that the diagnostic peaks of Raman are more distinct than fluorescence, and in theory, a clinically significant number of markers can be multiplexed in a single sample using different SERS reporters. Here we report LDR-SERS multiplex SNP genotyping of K-Ras oncogene alleles at 10 pM detection levels, optimization of DNA labeling as well as Raman conditions, and the linear correlation of diagnostic peak intensity to SNP target concentration in heterozygous samples. Genomic DNA from typed cells lines was obtained and scored for the K-Ras genotype. These advances are significant as we have further developed our new SNP genotyping platform and have demonstrated the ability to correlate genotype ratios directly to diagnostic Raman peak signal intensity.
机译:单核苷酸多态性(SNP)是遗传疾病,癌症进展和药物基因组学的关键诊断标志之一。连接酶检测反应(LDR)是鉴定SNP的极佳方法,结合了低检测限和高特异性。我们提出了第一个多重LDR表面增强拉曼光谱(SERS)SNP基因分型方案。该平台的优势在于,拉曼的诊断峰比荧光的峰更鲜明,并且理论上,可以使用不同的SERS报告基因在单个样品中复用临床上大量的标志物。在这里,我们报告在10 pM检测水平下,K-Ras癌基因等位基因的LDR-SERS多重SNP基因分型,DNA标记优化以及拉曼条件,以及杂合子样品中诊断峰强度与SNP目标浓度的线性相关。获得来自分型细胞系的基因组DNA,并对K-Ras基因型进行评分。随着我们进一步开发了新的SNP基因分型平台,并证明了将基因型比率与诊断拉曼峰信号强度直接相关的能力,这些进步意义重大。

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