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Micro- and Nanopillar Chips for Continuous Separation of Extracellular Vesicles

机译:微型和纳米玻璃芯片,用于连续分离细胞外囊囊泡

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摘要

Micro- and nanopillar chips are widely used to separate and enrich biomolecules, such as DNA, RNA, protein, and cells, as an analytical technique and to provide a confined nanospace for polymer science analyses. Herein, we demonstrated a continuous accurate and precise separation technique for extracellular vesicles (EVs), nanometer-sized vesicles (typically 50-200 nm) currently recognized as novel biomarkers present in biofluids, based on the principle of electroosmotic flow-driven deterministic lateral displacement in micro- and nanopillar array chips. Notably, the easy-to-operate flow control afforded by electroosmotic flow allowed nanoparticles 50-500 nm in size, including EVs, to be precisely separated and enriched in a continuous manner. By observation of the flow behavior of nanoparticles, we found that electroosmotic flow velocity in the nanopillar arrays did not solely depend on counterion mobility on the surface of nanopillar chips, but rather showed a parabolic flow profile. This hydrodynamic pressure-free and easy-to-use separation and enrichment technique, which requires only electrode insertion into the reservoirs and electric field application, may thus serve as a promising technique for future precise and accurate EV analysis, reflecting both size and composition for research and potential clinical diagnostic applications.
机译:微型和纳米玻璃碎片广泛用于分离和富集生物分子,例如DNA,RNA,蛋白质和细胞,作为分析技术,并为聚合物科学分析提供狭窄的纳米空间。在此,我们证明了用于细胞外囊泡(EVS)的连续精确且精确的分离技术,目前公认为生物流体中存在的新型生物标志物的纳米尺寸囊泡(通常为50-200nm),基于电渗流动的确定性横向位移原理在微型和纳米玻璃阵列芯片中。值得注意的是,易于操作的流动控制允许纳米颗粒允许纳米颗粒,包括EV,以连续方式精确地分离和富集。通过观察纳米颗粒的流动行为,我们发现纳米玻璃阵列中的电渗流流速并不仅仅取决于纳米玻璃芯片表面上的抗衡离子迁移率,而是显示出抛物线流动曲线。这种流体动力学无压和易于使用的分离和富集技术,其仅需要将电极插入储存器和电场应用中,因此可以作为未来精确和准确的EV分析的有希望的技术,反映了尺寸和组成研究和潜在的临床诊断应用。

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  • 来源
    《Analytical chemistry》 |2019年第10期|共8页
  • 作者单位

    Nagoya Univ Grad Sch Engn Dept Biomol Engn Chikusa Ku Furo Cho Nagoya Aichi 4648603 Japan;

    Nagoya Univ Grad Sch Engn Dept Biomol Engn Chikusa Ku Furo Cho Nagoya Aichi 4648603 Japan;

    Nagoya Univ Grad Sch Engn Dept Biomol Engn Chikusa Ku Furo Cho Nagoya Aichi 4648603 Japan;

    PRESTO JST 4-1-8 Honcho Kawaguchi Saitama 3320012 Japan;

    Nagoya Univ Grad Sch Engn Dept Biomol Engn Chikusa Ku Furo Cho Nagoya Aichi 4648603 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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