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A Single-Bead-Based, Fully Integrated Microfluidic System for High-Throughput CD4+T Lymphocyte Enumeration

机译:基于单珠的完全集成的微流控系统,用于高通量CD4 + T淋巴细胞枚举

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摘要

A single-bead-based, fully integrated microfluidic system has been developed for high-throughput CD4+T lymphocyte enumeration at point-of-care testing. Instead of directly counting CD4+T lymphocytes, CD4+T lymphocyte enumeration is achieved by quantitatively detecting CD4 antigen from the lysed blood sample with a functionalized polycarbonate single bead based on chemiluminescence. To implement the sandwiched chemiluminescence immunoassay with reduced nonspecific binding, a streamlined microfluidic chip with multiple reaction chambers is developed to allow each reaction step to be completed in an independent chamber where reagent is pre-stored. With simple magnetic control, the single bead with an embedded ferrous core can be consecutively transported between each of two adjacent chambers for different reactions. Meanwhile, enhanced mixing can be achieved by moving the single bead back and forth inside one chamber with magnetic actuation. High-throughput detection can be performed when a linear actuation stage is adopted to introduce synchronous magnetic control to multiple single beads in parallel microfluidic chips. A sensitive charge-coupled device (CCD) camera is adopted for high-throughput chemiluminescence detection from multiple single beads. Experimental results show that with the fully integrated microfluidic system, easy-to-operate, accurate, low-cost, immediate, and high-throughput CD4+T lymphocyte enumeration can be successfully achieved at resource-poor settings.
机译:已开发了一种基于单珠的完全集成的微流控系统,用于即时护理测试中的高通量CD4 + T淋巴细胞计数。代替直接计数CD4 + T淋巴细胞,CD4 + T淋巴细胞计数是通过基于化学发光的功能化聚碳酸酯单珠从溶解的血样中定量检测CD4抗原来实现的。为了实现具有减少的非特异性结合的夹心化学发光免疫测定,开发了具有多个反应室的流线型微流控芯片,以允许每个反应步骤在预装有试剂的独立室中完成。通过简单的磁控制,具有嵌入式铁芯的单个磁珠可以连续地在两个相邻腔室之间进行传输,以进行不同的反应。同时,可以通过磁致动在一个腔室内来回移动单个磁珠来实现增强的混合。当采用线性驱动级将同步磁控制引入并行微流控芯片中的多个单个磁珠时,可以执行高通量检测。采用灵敏的电荷耦合器件(CCD)相机对多个单个珠子进行高通量化学发光检测。实验结果表明,通过完全集成的微流体系统,可以在资源贫乏的环境中成功实现易于操作,准确,低成本,即时和高通量的CD4 + T淋巴细胞计数。

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