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Multiplexed Efficient On-Chip Sample Preparation and Sensitive Amplification-Free Detection of Ebola Virus

机译:埃博拉病毒多重高效芯片上样品制备和无灵敏扩增检测

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摘要

An automated microfluidic sample preparation multiplexer (SPM) has been developed and evaluated for Ebola virus detection. Metered air bubbles controlled by microvalves are used to improve bead-solution mixing thereby enhancing the hybridization of the target Ebola virus RNA with capture probes bound to the beads. The method uses thermally stable 4-formyl benzamide functionalized (4FB) magnetic beads rather than streptavidin coated beads with a high density of capture probes to improve the target capture efficiency. Exploiting an on-chip concentration protocol in the SPM and the single molecule detection capability of the antiresonant reflecting optical waveguide (ARROW) biosensor chip, a detection limit of 0.021 pfu/mL for clinical samples is achieved without target amplification. This RNA target capture efficiency is two orders of magnitude higher than previous results using streptavidin beads and the limit of detection (LOD) improves 10X. The wide dynamic range of this technique covers the whole clinically applicable concentration range. In addition, the current sample preparation time is ~1 hour which is eight times faster than previous work. This multiplexed, miniaturized sample preparation microdevice establishes a key technology that intended to develop next generation point-of-care (POC) detection system.
机译:已经开发了自动化的微流体样品制备多路复用器(SPM),并对其埃博拉病毒检测进行了评估。由微阀控制的计量气泡用于改善微珠溶液的混合,从而增强目标埃博拉病毒RNA与与微珠结合的捕获探针的杂交。该方法使用具有高密度捕获探针的热稳定的4-甲酰基苯甲酰胺官能化(4FB)磁珠,而不是链霉亲和素包被的磁珠来提高目标捕获效率。利用SPM中的片上浓度协议和反共振反射光波导(ARROW)生物传感器芯片的单分子检测功能,无需目标扩增即可实现临床样品的检测限为0.021 pfu / mL。该RNA目标捕获效率比以前使用链霉亲和素珠的结果高两个数量级,并且检测限(LOD)提高了10倍。该技术的宽动态范围涵盖了整个临床适用浓度范围。此外,当前的样品制备时间约为1小时,比以前的工作快八倍。这种多元化,小型化的样品制备微设备确立了一项关键技术,旨在开发下一代即时医疗点(POC)检测系统。

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