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Transcriptome analysis device based on liquid phase detection by fluorescently labeled nucleic acid probes

机译:基于荧光标记的核酸探针进行液相检测的转录组分析装置

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Personalized medicine based on genetic information has been proposed as an attractive medical treatment. It is supported by the rapid development of the gene diagnosis utilizing on-chip analysis technology. This study reports characterizations of mRNA detection device by its hybridization with 2'-O-methyl oligoribonucleotide probe in a liquid phase, which eliminates time-consuming processes such as removing non-hybridized probes in conventional solid phase detection. In order to achieve a high sensitivity in the fluorescent detection of the target mRNA, we have optimized detection channel depth and width for a micro fluidic device, and investigated polydimethyl siloxiane components and observation setup to minimize background noise. Adopting optimized channel dimensions and setup for the probe, the fluorescent intensity increased 3.3-fold at the lowest detectable concentration of 7.8 nM.
机译:已经提出了基于遗传信息的个性化医学作为一种有吸引力的治疗方法。利用片上分析技术的基因诊断的迅速发展为它提供了支持。这项研究报告了通过在液相中与2'-O-甲基寡核糖核苷酸探针杂交来检测mRNA检测装置的特性,从而消除了诸如在常规固相检测中去除非杂交探针等耗时的过程。为了在目标mRNA的荧光检测中实现高灵敏度,我们优化了微流体设备的检测通道深度和宽度,并研究了聚二甲基硅氧烷化合物和观察装置,以将背景噪声降至最低。采用优化的通道尺寸和探头设置,在最低可检测浓度7.8 nM时,荧光强度增加了3.3倍。

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