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机械定时驱动流体分配系统:在高灵敏度自动化多步侧向流动免疫分析中的应用。

Mechanical Timer-Actuated Fluidic Dispensing System: Applications to an Automated Multistep Lateral Flow Immunoassay with High Sensitivity.

机构信息

Department of Mechanical Engineering, Konkuk University, Seoul 05029, Republic of Korea.

Department of Bioscience and Biotechnology, Konkuk University, Seoul 05029, Republic of Korea.

出版信息

Anal Chem. 2022 Sep 20;94(37):12884-12889. doi: 10.1021/acs.analchem.2c02945. Epub 2022 Sep 7.

DOI:10.1021/acs.analchem.2c02945
PMID:36069050
Abstract

In this study, we present a fluidic dispensing system that can automate the sequential fluidic delivery of multiple reagents for lateral flow assays. Highly sensitive assays typically require multiple solution-based sequences, including washing steps and signal amplification. However, implementation of these types of sequences on an automated and highly sensitive point-of-care testing (POCT) platform remains challenging. Our platform consists of two disposable cartridges with reagent chambers and a test strip and an instrument that has a mechanical timer to actuate the cam-follower-gear components. The timer rotation sequentially shifts the position of the chambers and loads the reagents to the test paper strip. The dispensing intervals are controlled at a variation of <1% within a total actuation time of 60 min. Unlike other POCT devices, the timing of fluid delivery in our timer-actuated platform is not dependent on the selection of substrates and reagents, and the unique approach to fluidic delivery results in no reagent overlap or carryover, minimal reagent loss, and highly accurate fluidic timing control for highly sensitive solution-based assays. As a model application, the proposed platform applies a gold enhancement solution to amplify the detection signal and detect prostate-specific antigen with a limit of detection of 86 pg/mL within 27 min. This platform provides an opportunity for solution-based POCT applications with high sensitivity, thereby satisfying the requirement for user-friendly operations in resource-limited settings.

摘要

在这项研究中,我们提出了一种流体分配系统,可实现侧向流动分析中多种试剂的顺序流体输送自动化。高度灵敏的检测通常需要多个基于溶液的序列,包括洗涤步骤和信号放大。然而,在自动化和高度灵敏的即时护理检测(POCT)平台上实施这些类型的序列仍然具有挑战性。我们的平台由两个带有试剂腔室和测试条的一次性墨盒以及一个具有机械定时器的仪器组成,该定时器用于驱动凸轮从动齿轮组件。定时器的旋转顺序改变腔室的位置,并将试剂加载到测试纸条上。分配间隔的变化在 60 分钟的总致动时间内控制在 <1%以内。与其他 POCT 设备不同,我们的定时器驱动平台中的流体输送时间与底物和试剂的选择无关,并且独特的流体输送方法可防止试剂重叠或残留、最小化试剂损失,并实现高度灵敏的基于溶液的检测的精确流体定时控制。作为模型应用,该平台应用金增强溶液来放大检测信号,并在 27 分钟内检测到前列腺特异性抗原,检测限为 86pg/mL。该平台为具有高灵敏度的基于溶液的 POCT 应用提供了机会,从而满足了在资源有限的环境中操作简便的要求。

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