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Microfluidic cartridge with integrated array of amorphous silicon photosensors for chemiluminescence detection of viral DNA

机译:具有集成的非晶硅光电传感器阵列的微流控盒,用于化学发光检测病毒DNA

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摘要

Portable and simple analytical devices based on microfluidics with chemiluminescence detection are particularly attractive for point-of-care applications, offering high detectability and specificity in a simple and miniaturized analytical format. Particularly relevant for infectious disease diagnosis is the ability to sensitively and specifically detect target nucleic acid sequences in biological fluids. To reach the goal of real-life applications for such devices, however, several technological challenges related to full device integration are still to be solved, one key aspect regarding on-chip integration of the chemiluminescence signal detection device. Nowadays, the most promising approach is on-chip integration of thin-film photosensors. We recently proposed a portable cartridge with microwells aligned with an array of hydrogenated amorphous silicon (a-Si:H) photosensors, reaching attomole level limits of detection for different chemiluminescence model reactions. Herein, we explore its applicability and performance for multiplex and quantitative detection of viral DNA. In particular, the cartridge was modified to accommodate microfluidic channels and, upon immobilization of three oligonucleotide probes in different positions along each channel, each specific for a genotype of Parvovirus B19, viral nucleic acid sequences were captured and detected. With this system, taking advantage of oligoprobes specificity, chemiluminescence detectability, and photosensor sensitivity, accurate quantification of target analytes down to 70 pmol L-1 was obtained for each B19 DNA genotype, with high specificity and multiplexing ability. Results confirm the good detection capabilities and assay applicability of the proposed system, prompting the development of innovative portable analytical devices with enhanced sensitivity and multiplexed capabilities.
机译:基于带有化学发光检测功能的微流体技术的便携式和简单分析设备对于现场护理应用特别有吸引力,它以简单和小型化的分析形式提供了高可检测性和特异性。与传染病诊断特别相关的是灵敏地和特异性地检测生物流体中靶核酸序列的能力。然而,为了达到此类设备的实际应用目标,与完整设备集成相关的若干技术挑战仍待解决,这是化学发光信号检测设备在芯片上集成的一个关键方面。如今,最有前途的方法是薄膜光电传感器的片上集成。我们最近提出了一种便携式微处理盒,其微孔与氢化非晶硅(a-Si:H)光电传感器阵列对齐,可针对不同的化学发光模型反应达到检测到的原子水平。在这里,我们探索其适用性和性能的病毒DNA的多重和定量检测。特别地,修改盒以适应微流体通道,并且在沿着每个通道的不同位置固定了三种细小病毒B19的基因型特异性的三个寡核苷酸探针后,捕获并检测了病毒核酸序列。使用该系统,利用寡核苷酸探针的特异性,化学发光可检测性和光敏传感器的灵敏度,可以对每种B19 DNA基因型进行低至70 pmol L-1的目标分析物的准确定量,并具有很高的特异性和多路复用能力。结果证实了所提出系统的良好检测能力和测定适用性,促使开发出具有增强的灵敏度和多重能力的创新便携式分析设备。

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