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Quantum dots and single molecule detection enable highly sensitive analysis of genetic biomarkers

机译:量子点和单分子检测可对遗传生物标记物进行高度灵敏的分析

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There has been an increasing interest in using confocal single-molecule detection (SMD) for genomic detection. The driving force comes from its ultrahigh sensitivity for detection of low-abundance nucleic acids without the need for amplification. On the other hand, semiconductor quantum dots (QDs) have attracted a great deal of attention for biomedical applications. The unique photophysical properties of semiconductor quantum dots (QDs) such as high quantum yield and photostability make them ideal for use as spectral labels and luminescent probes. We have developed highly sensitive and quantitative technologies for clinically relevant analysis of DNA markers based on the convergence of SMD, microfluidic manipulation, and QDs.
机译:使用共聚焦单分子检测(SMD)进行基因组检测的兴趣日益增加。驱动力来自于无需扩增即可检测低丰度核酸的超高灵敏度。另一方面,半导体量子点(QD)在生物医学应用中引起了极大的关注。半导体量子点(QD)的独特光物理特性,例如高量子产率和光稳定性,使其非常适合用作光谱标记和发光探针。基于SMD,微流控和QD的融合,我们已经开发出了高度敏感的定量技术,用于与DNA标记物相关的临床分析。

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