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A microfluidic device for the automated electrical readout of low-density glass-slide microarrays

机译:一种用于低密度玻片微阵列自动电读出的微流控设备

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摘要

Microarrays are a powerful platform for rapid and multiplexed analysis in a wide range of research fields. Electrical readout systems have emerged as an alternative to conventional optical methods for microarray analysis thanks to its potential advantages like low-cost, low-power and easy miniaturization of the required instrumentation. In this work an automated electrical readout system for low-cost glass-slide microarrays is described. The system enables the simultaneous conductimetric detection of up to 36 biorecognition events by incorporating an array of interdigitated electrode transducers. A polydimethylsiloxane microfluidic structure has been designed that creates microwells over the transducers and incorporates the microfluidic channels required for filling and draining them with readout and cleaning solutions, thus making the readout process fully automated. Since the capture biomolecules are not immobilized on the transducer surface this readout system is reusable, in contrast to previously reported electrochemical microarrays. A low-density microarray based on a competitive enzymatic immunoassay for atrazine detection was used to test the performance of the readout system. The electrical assay shows a detection limit of 0.22 +/- 0.03 mu g L-1 similar to that obtained with fluorescent detection and allows the direct determination of the pesticide in polluted water samples. These results proved that an electrical readout system such as the one presented in this work is a reliable and cost-effective alternative to fluorescence scanners for the analysis of low-density microarrays. (C) 2015 Elsevier B.V. All rights reserved.
机译:微阵列是在广泛的研究领域中进行快速和多重分析的强大平台。由于其潜在的优势,如低成本,低功耗和所需仪器的轻松小型化,电读出系统已经成为用于微阵列分析的传统光学方法的替代品。在这项工作中,描述了一种用于低成本玻片微阵列的自动电读出系统。该系统通过并入一个叉指式电极换能器阵列,可以同时电导检测多达36个生物识别事件。设计了一种聚二甲基硅氧烷微流体结构,该结构可在换能器上形成微孔,并结合了用读出和清洁溶液填充和排放它们所需的微流体通道,从而使读出过程实现了全自动。由于捕获的生物分子未固定在换能器表面上,因此与以前报道的电化学微阵列相反,该读出系统是可重复使用的。基于竞争性酶免疫分析法检测at去津的低密度微阵列用于测试读数系统的性能。电分析显示的检出限为0.22 +/- 0.03μg L-1,类似于荧光检测所获得的检出限,并且可以直接测定污水中的农药。这些结果证明,像本工作中介绍的那样的电读出系统是用于分析低密度微阵列的荧光扫描仪的可靠且具有成本效益的替代方案。 (C)2015 Elsevier B.V.保留所有权利。

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