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一种微流体盖将标准的96孔板转变为一个传质控制的免疫分析系统。

A microfluidic cover converts a standard 96-well plate into a mass-transport-controlled immunoassay system.

作者信息

Wang Sheng, Zhou You, Li Zhenyu

机构信息

Department of Biomedical Engineering, The George Washington University, District of Columbia, 20052, USA.

Department of Electrical and Computer Engineering, The George Washington University, District of Columbia, 20052, USA.

出版信息

Biomicrofluidics. 2024 Jan 18;18(1):014102. doi: 10.1063/5.0183651. eCollection 2024 Jan.

Abstract

96-well microtiter plates, widely used in immunoassays, face challenges such as prolonged assay time and limited sensitivity due to the lack of analyte transport control. Orbital shakers, commonly employed to facilitate mass transport, offer limited improvements and can introduce assay inconsistencies. While microfluidic devices offer performance enhancements, their complexity and incompatibility with existing platforms limit their wide adoption. This study introduces a novel microfluidic 96-well cover designed to convert a standard 96-well plate to a mass-transport-controlled surface bioreactor. The cover employs microfluidic methods to enhance the diffusion flux of analytes toward the receptors immobilized on the well bottom. Both simulation and experimental results demonstrated that the cover significantly enhances the capture rate of analyte molecules, resulting in increased signal strength for various detection methods and a lower detection limit. The cover serves as an effective add-on to standard 96-well plates, offering enhanced assay performance without requiring modifications to existing infrastructure or reagents. This innovation holds promise for improving the efficiency and reliability of microtiter plate based immunoassays.

摘要

96孔微量滴定板广泛应用于免疫测定,但由于缺乏分析物传输控制,面临着检测时间长和灵敏度有限等挑战。通常用于促进质量传输的轨道振荡器改善有限,还可能导致检测不一致。虽然微流控设备性能有所提升,但其复杂性以及与现有平台的不兼容性限制了其广泛应用。本研究介绍了一种新型微流控96孔盖,旨在将标准96孔板转变为质量传输控制的表面生物反应器。该盖子采用微流控方法增强分析物向固定在孔底部的受体的扩散通量。模拟和实验结果均表明,该盖子显著提高了分析物分子的捕获率,从而提高了各种检测方法的信号强度并降低了检测限。该盖子可作为标准96孔板的有效附加装置,无需对现有基础设施或试剂进行修改即可提高检测性能。这一创新有望提高基于微量滴定板的免疫测定的效率和可靠性。

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Materials for Microfluidic Immunoassays: A Review.微流控免疫分析的材料:综述。
Adv Healthc Mater. 2017 Aug;6(15). doi: 10.1002/adhm.201601403. Epub 2017 Mar 21.
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