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A new paper-based platform technology for point-of-care diagnostics

机译:一种新的基于纸的平台,用于即时诊断

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摘要

Currently, the Lateral flow Immunoassays (LFIAs) are not able to perform complex multi-step immunodetection tests because of their inability to introduce multiple reagents in a controlled manner to the detection area autonomously. In this research, a point-of-care (POC) paper-based lateral flow immunosensor was developed incorporating a novel microfluidic valve technology. Layers of paper and tape were used to create a three-dimensional structure to form the fluidic network. Unlike the existing LFIAs, multiple directional valves are embedded in the test strip layers to control the order and the timing of mixing for the sample and multiple reagents. In this paper, we report a four-valve device which autonomously directs three different fluids to flow sequentially over the detection area. As proof of concept, a three-step alkaline phosphatase based Enzyme-Linked Immunosorbent Assay (ELISA) protocol with Rabbit IgG as the model analyte was conducted to prove the suitability of the device for immunoassays. The detection limit of about 4.8 fm was obtained.
机译:当前,横向流免疫测定法(LFIA)无法执行复杂的多步免疫检测测试,因为它们无法以受控方式自动将多种试剂引入检测区域。在这项研究中,结合了一种新型微流阀技术,开发了一种基于医疗点(POC)的纸质侧向流动免疫传感器。纸和胶带层用于创建三维结构以形成射流网络。与现有的LFIA不同,在测试条层中嵌入了多个方向阀,以控制样品和多种试剂的混合顺序和混合时间。在本文中,我们报告了一种四阀装置,该装置可自动引导三种不同的流体依次流过检测区域。作为概念验证,进行了三步基于碱性磷酸酶的酶联免疫吸附测定(ELISA)方案,以Rabbit IgG作为模型分析物,以证明该装置适用于免疫测定。检出限约为4.8 fm。

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