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High-performance UV-curable epoxy resin-based microarray and microfluidic immunoassay devices

机译:高性能基于紫外线固化环氧树脂的微阵列和微流体免疫分析设备

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摘要

Immunoassay devices including microarray and microfluidic systems we re fabricated with an UV-curable resin by a new economic approach, which call not only simply produce a 3-dimensional (3D) patterned structure, but also simultaneously introduce functional epoxide groups for efficient protein immobilization. The performance of the epoxy resin-based microarray was improved by optimization of printing buffer, probe concentration, and immobilization time, showing a detection dynamic range of 5 orders of magnitude and a limit of detection (LOD) of 10 pg mL(-1) for immunoglobulin G (IgG). The developed microfluidic immunoassay device demonstrates a LOD of 100 pg mL(-1) for IL-5 detection. The device call also be used to colorimetrically detect proteins via naked human eyes for immunoassays. This work provides a simple and inexpensive method to fabricate a sensitive immunoassay device, especially a 3D microfluidic system, which has great potential to develop a portable immunoassay device via human eye detection for point-of-care service and/or high throughput screening of infectious diseases.
机译:我们通过一种新的经济方法用紫外线可固化树脂重新制造了包括微阵列和微流控系统在内的免疫分析设备,该方法不仅可以简单地产生3维(3D)图案化结构,而且还可以引入功能性环氧基团来有效地固定蛋白质。通过优化打印缓冲液,探针浓度和固定时间来改善基于环氧树脂的微阵列的性能,显示出5个数量级的检测动态范围和10 pg mL(-1)的检测限(LOD)用于免疫球蛋白G(IgG)。研发的微流体免疫测定装置显示出用于IL-5检测的LOD为100 pg mL(-1)。该设备调用还可用于通过肉眼肉眼比色检测蛋白质以进行免疫测定。这项工作提供了一种简单而便宜的方法来制造灵敏的免疫测定设备,尤其是3D微流体系统,该方法具有巨大的潜力,可以通过人眼检测开发便携式免疫测定设备,以提供即时服务和/或高通量的传染病筛查疾病。

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