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Single Quantum Dot Analysis Enables Multiplexed Point Mutation Detection by Gap Ligase Chain Reaction

机译:单量子点分析通过间隙连接酶链反应使复用点突变检测能够

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摘要

Gene point mutations present important biomarkers for genetic diseases. However, existing point mutation detection methods suffer from low sensitivity, specificity, and tedious assay processes. In this report, we propose an assay technology which combines the outstanding specificity of gap ligase chain reaction (Gap-LCR), the high sensitivity of single molecule coincidence detection and superior optical properties of quantum dots (QDs) for multiplexed detection of point mutations in genomic DNA. Mutant-specific ligation products are generated by Gap-LCR and subsequently captured by QDs to form DNA-QD nanocomplexes that are detected by single molecule spectroscopy (SMS) through multi-color fluorescence burst coincidence analysis, allowing for multiplexed mutation detection in a separation-free format. The proposed assay is capable of detecting zeptomoles of KRAS codon 12 mutation variants with near 100% specificity. Its high sensitivity allows direct detection of KRAS mutation in crude genomic DNA without PCR pre-amplification.
机译:基因点突变是遗传疾病的重要生物标志物。但是,现有的点突变检测方法具有灵敏度低,特异性差和繁琐的测定过程的缺点。在本报告中,我们提出了一种结合了缺口连接酶链反应(Gap-LCR)的出色特异性,单分子重合检测的高灵敏度和量子点(QD)的优异光学特性的多重检测点突变的检测技术。基因组DNA。突变特异性连接产物由Gap-LCR生成,然后由QD捕获以形成DNA-QD纳米复合物,通过多色荧光猝发符合分析通过单分子光谱(SMS)检测,从而可以在分离中检测多重突变-免费格式。提出的测定法能够以接近100%的特异性检测KRAS密码子12突变变体的分子。它的高灵敏度允许直接检测粗基因组DNA中的KRAS突变,而无需进行PCR预扩增。

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