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一种用于免疫测定的手持式即插即用微流控液体处理自动化平台。

A handheld plug-and-play microfluidic liquid handling automation platform for immunoassays.

作者信息

Wang Sheng, Li Baichen, McLeod David, Li Zhenyu

机构信息

Department of Biomedical Engineering, The George Washington University, 800 22nd Street, NW, Washington, DC 20052, USA.

出版信息

HardwareX. 2023 Apr 17;14:e00420. doi: 10.1016/j.ohx.2023.e00420. eCollection 2023 Jun.

Abstract

Lab-on-a-chip technologies and microfluidics have pushed miniaturized liquid handling to unprecedented precision, integration, and automation, which improved the reaction efficiency of immunoassays. However, most microfluidic immunoassay systems still require bulky infrastructures, such as external pressure sources, pneumatic systems, and complex manual tubing and interface connections. Such requirements prevent plug-and-play operation at the point-of-care (POC) settings. Here we present a fully automated handheld general microfluidic liquid handling automation platform with a plug-and-play 'clamshell-style' cartridge socket, a miniature electro-pneumatic controller, and injection-moldable plastic cartridges. The system achieved multi-reagent switching, metering, and timing control on the valveless cartridge using electro-pneumatic pressure control. As a demonstration, a SARS-CoV-2 spike antibody sandwich fluorescent immunoassay (FIA) liquid handling was performed on an acrylic cartridge without human intervention after sample introduction. A fluorescence microscope was used to analyze the result. The assay showed a limit of detection at 31.1 ng/mL, comparable to some previously reported enzyme-linked immunosorbent assays (ELISA). In addition to automated liquid handling on the cartridge, the system can operate as a 6-port pressure source for external microfluidic chips. A rechargeable battery with a 12 V 3000 mAh capacity can power the system for 42 h. The footprint of the system is 16.5 × 10.5 × 7 cm, and the weight is 801 g, including the battery. The system can find many other POC and research applications requiring complex liquid manipulation, such as molecular diagnostics, cell analysis, and on-demand biomanufacturing.

摘要

芯片实验室技术和微流控技术已将小型化液体处理提升到了前所未有的精度、集成度和自动化程度,这提高了免疫分析的反应效率。然而,大多数微流控免疫分析系统仍然需要庞大的基础设施,如外部压力源、气动系统以及复杂的手动管路和接口连接。这些要求阻碍了即时检测(POC)环境下的即插即用操作。在此,我们展示了一个全自动手持式通用微流控液体处理自动化平台,它具有即插即用的“翻盖式”试剂盒插槽、微型电动气动控制器和可注塑塑料试剂盒。该系统通过电动气压控制实现了在无阀试剂盒上的多试剂切换、计量和定时控制。作为演示,在引入样品后,在丙烯酸试剂盒上进行了SARS-CoV-2刺突抗体夹心荧光免疫分析(FIA)液体处理,无需人工干预。使用荧光显微镜分析结果。该分析的检测限为31.1 ng/mL,与一些先前报道的酶联免疫吸附测定(ELISA)相当。除了在试剂盒上进行自动液体处理外,该系统还可以作为外部微流控芯片的6端口压力源运行。一个容量为12 V 3000 mAh的可充电电池可为系统供电42小时。该系统的占地面积为16.5×10.5×7 cm,重量为801 g,包括电池。该系统可用于许多其他需要复杂液体操作的即时检测和研究应用,如分子诊断、细胞分析和按需生物制造。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a57/10160774/94316d1c552c/ga1.jpg

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