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Gene Detection in Complex Biological Media Using Semiconductor Nanorods within an Integrated Microfluidic Device

机译:使用集成微流控设备中的半导体纳米棒在复杂生物介质中进行基因检测

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The salient optical properties of highly luminescent semiconductor nanocrystals render them ideal fluorophores for clinical diagnostics, therapeutics, and highly sensitive biochip applications. Microfluidic systems allow miniaturization and integration of multiple biochemical processes in a single device and do not require sophisticated diagnostic tools. Herein, we describe a microfluidic system that integrates RNA 'extraction, reverse transcription to cDNA, amplification and detection within one integrated device to detect histidine decarboxylase (HDC) gene directly from human white blood cells samples. When anisotropic semiconductor nanorods (NRs) were used as the fluorescent probes, the detection limit was found to be 0.4 ng of total RNA, which was much lower than that obtained using spherical quantum dots (QDs) or organic dyes. This was attributed to the large action cross-section of NRs and their high probability of target capture in a pull-down detection scheme. The combination of large scale integrated microfluidics with highly fluorescent semiconductor NRs may find widespread utility in point-of-care devices and multitarget diagnostics.
机译:高发光半导体纳米晶体的显着光学特性使其成为用于临床诊断,治疗和高度敏感生物芯片应用的理想荧光团。微流体系统允许在单个设备中将多个生化过程小型化和集成在一起,并且不需要复杂的诊断工具。在本文中,我们描述了一种微流体系统,该系统集成了RNA提取,cDNA的反转录,在一个集成设备内的扩增和检测,以直接从人白细胞样品中检测组氨酸脱羧酶(HDC)基因。当使用各向异性半导体纳米棒(NRs)作为荧光探针时,发现检测限为0.4 ng总RNA,远低于使用球形量子点(QD)或有机染料获得的RNA。这归因于NR的作用截面大,并且它们在下拉检测方案中捕获目标的可能性很高。大规模集成微流体与高荧光半导体NR的结合可能会在即时医疗设备和多目标诊断中得到广泛应用。

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