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Automation of Biomarker Preconcentration, Capture, and Nanozyme Signal Enhancement on Paper-Based Devices

机译:基于纸张的设备的生物标志物预浓度的自动化,捕获和纳米沸点信号增强

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Infectious diseases remain one of the leading causes of deaths in developing countries because of a lack of basic sanitation, healthcare clinics, and centralized laboratories. Paper-based rapid diagnostic tests, such as the lateral-flow immunoassay (LFA), provide a promising alternative to the traditional laboratory-based tests; however, they typically suffer from having a poor sensitivity. Biomarker preconcentration and signal enhancement are two common methods to improve the sensitivity of paper-based assays. While effective, these methods often require multiple liquid handling steps which are not ideal for use by untrained personnel in a point-of-care setting. Our lab previously discovered the phenomenon of an aqueous two-phase system (ATPS) separating on paper, which allowed for the seamless integration of concentration and detection of biomarkers on the LFA. In this work, we have extended the functionality of an ATPS separating on paper to automate the sequential delivery of signal enhancement reagents in addition to concentrating biomarkers. The timing of reagent delivery was controlled by changing the initial composition of the ATPS. We applied this technology to automate biomarker concentration and nanozyme signal enhancement on the LFA, resulting in a 30-fold improvement in detection limit over the conventional LFA when detecting Escherichia coli, all while maintaining a single application step.
机译:由于缺乏基本卫生,医疗保健诊所和集中的实验室,传染病仍然是发展中国家死亡的主要原因之一。基于纸张的快速诊断测试,如横向血流免疫测定(LFA),为传统的实验室测试提供了有希望的替代品;然而,它们通常患有较差的敏感性。生物标志物预浓缩和信号增强是改善基于纸种测定的灵敏度的两种常见方法。虽然有效,这些方法通常需要多种液体处理步骤,这不理想地用于未经培训的人员在护理点设置。我们的实验室之前发现了在纸上分离的两相系统(ATP)的现象,这允许无缝集成和检测LFA上的生物标志物。在这项工作中,我们扩展了在纸上分离的ATP的功能,除了集中生物标志物之外还可以自动化信号增强试剂的顺序递送。通过改变ATP的初始组成来控制试剂递送的时序。我们应用该技术以自动化LFA对LFA的生物标志物浓度和纳佐信号增强,导致在检测到大肠杆菌时,在传统LFA上的检测限制提高30倍,同时保持单个施加步骤。

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