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基于阀的微流控芯片用于对单个细胞进行处理。

A valve-based microfluidic device for on-chip single cell treatments.

机构信息

School of Physics and Technology, Wuhan University, Wuhan, P. R. China.

Research Center for Tissue Engineering and Regenerative Medicine, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, P. R. China.

出版信息

Electrophoresis. 2019 Mar;40(6):961-968. doi: 10.1002/elps.201800213. Epub 2018 Sep 9.

Abstract

Assays toward single-cell analysis have attracted the attention in biological and biomedical researches to reveal cellular mechanisms as well as heterogeneity. Yet nowadays microfluidic devices for single-cell analysis have several drawbacks: some would cause cell damage due to the hydraulic forces directly acting on cells, while others could not implement biological assays since they could not immobilize cells while manipulating the reagents at the same time. In this work, we presented a two-layer pneumatic valve-based platform to implement cell immobilization and treatment on-chip simultaneously, and cells after treatment could be collected non-destructively for further analysis. Target cells could be encapsulated in sodium alginate droplets which solidified into hydrogel when reacted with Ca . The size of hydrogel beads could be precisely controlled by modulating flow rates of continuous/disperse phases. While regulating fluid resistance between the main channel and passages by the integrated pneumatic valves, on-chip capture and release of hydrogel beads was implemented. As a proof of concept for on-chip single-cell treatments, we showed cellular live/dead staining based on our devices. This method would have potential in single cell manipulation for biochemical cellular assays.

摘要

用于单细胞分析的分析方法引起了生物和生物医学研究的关注,以揭示细胞机制和异质性。然而,如今用于单细胞分析的微流控设备存在几个缺点:由于液压直接作用于细胞,一些设备会导致细胞损伤,而另一些设备则无法进行生物分析,因为它们无法在操作试剂的同时固定细胞。在这项工作中,我们提出了一种基于双层气动阀的平台,可实现细胞的固定和处理的同时进行,并且处理后的细胞可以无损收集,以便进一步分析。靶细胞可以被包裹在海藻酸钠液滴中,当与 Ca 反应时,海藻酸钠液滴会固化成水凝胶。通过调节连续/分散相的流速,可以精确控制水凝胶珠的大小。通过集成的气动阀调节主通道和通道之间的流体阻力,实现了水凝胶珠的片上捕获和释放。作为在片上单细胞处理的概念验证,我们展示了基于我们的设备的细胞死活染色。该方法在用于生化细胞分析的单细胞操作中具有潜在应用。

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