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Multiplex MicroRNA Detection on a Surface-Functionalized Power-Free Microfluidic Chip

机译:在表面官能化的无功微流体芯片上的多路复用MicroRNA检测

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Circulating microRNAs (miRNAs) have emerged as promising cancer biomarkers because their concentration profiles in body fluids are associated with the type and clinical stage of cancer. For multiplex miRNA detection, a novel surface-functionalized power-free microfluidic chip (SF-PF microchip) has been developed. The inner surface of the SF-PF microchip microchannels was functionalized via electron beam-induced graft polymerization and immobilization of capture probe DNAs. Simultaneous and specific duplex miRNA detection was achieved on the line-type SF-PF microchip with detection limits of 19.1 and 47.6 nmol L~(?1) for hsa-miR-16 and hsa-miR-500a-3p, respectively. Moreover, simultaneous and specific triplex miRNA detection was achieved on the stripe-type SF-PF microchip. The sample volume required for this microchip was 0.5 μL, and the time required for detection was 17 min. These results indicate that up to six types of miRNAs could be detected without compromising the advantages of the previous SF-PF microchips for cancer point-of-care testing.
机译:循环的microRNA(miRNA)被出现为有前途的癌症生物标志物,因为它们的体液中的浓度谱与癌症的类型和临床阶段有关。对于多重miRNA检测,已经开发了一种新型表面官能化的无功微流体芯片(SF-PF微芯片)。通过电子束诱导的接枝聚合和捕获探针DNA的固定化,使SF-PF微芯片微通道的内表面官能化官能化。对于HSA-MIR-16和HSA-MIR-500A-3P的检测限制,在具有19.1和47.6nmol L〜(α1)的检测限的线型SF-PF微芯片上实现了同时和特异性的双相MiRNA检测。此外,在条带型SF-PF微芯片上实现同时和特异性的三重双重检测。该微芯片所需的样品体积为0.5μL,检测所需的时间为17分钟。这些结果表明,可以检测到最多六种类型的miRNA,而不会影响先前的SF-PF微芯片用于癌症的护理点测试的优点。

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