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On-site, parallel detection of bio-analytes in water by an integrated capillary flow based opto-microfluidic device

机译:集成的基于毛细管流的光电微流控设备可现场并行检测水中的生物分析物

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An integrated capillary-flow driven opto-microfluidic device for on-site, parallel detection of bio-analytes has been demonstrated in this work. An array of capillary-induced flow microchannels and chambers were arranged on a microfluidic chip made of poly(methyl methacrylate). This poly(methyl methacrylate) chip was further integrated with an array of eight ring-shaped organic photodiodes for measuring chemiluminescence of pathogen immunoassays. Highly sensitive detection of chemiluminescence was ensured by the use of gold nanoparticles, which were attached to the chambers of the microfluidic chip. The developed device demonstrated a detection limit in the range of ~10 cells/mL for bacteria detection in water. Furthermore, the device revealed feasibility to perform parallel detection of two types of bacteria and two types of viruses quantitatively. The presented concept may offer a promising route to realize truly in-the-field devices for medical and/or environmental measurements.
机译:在这项工作中,已经证明了用于现场并行检测生物分析物的集成毛细管流驱动的光微流体装置。在由聚(甲基丙烯酸甲酯)制成的微流体芯片上布置了由毛细管引起的流动微通道和室的阵列。该聚(甲基丙烯酸甲酯)芯片进一步与八个环形有机光电二极管阵列集成在一起,用于测量病原体免疫测定的化学发光。通过使用附着在微流控芯片腔室中的金纳米颗粒,可以确保化学发光的高度灵敏检测。研发的设备对水中的细菌进行检测时,其检测限在〜10个细胞/ mL范围内。此外,该设备显示了对两种细菌和两种病毒进行定量平行检测的可行性。提出的概念可能为实现真正用于医疗和/或环境测量的现场设备提供一条有希望的途径。

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