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在单个微流控装置中实现高通量确定性单细胞封装以及液滴配对、融合和收缩。

High-throughput deterministic single-cell encapsulation and droplet pairing, fusion, and shrinkage in a single microfluidic device.

作者信息

Schoeman Rogier M, Kemna Evelien W M, Wolbers Floor, van den Berg Albert

机构信息

BIOS Lab on a Chip group, MESA+ Institute for Nanotechnology, University of Twente, Enschede, The Netherlands.

出版信息

Electrophoresis. 2014 Feb;35(2-3):385-92. doi: 10.1002/elps.201300179. Epub 2013 Sep 19.

Abstract

In this article, we present a microfluidic device capable of successive high-yield single-cell encapsulation in droplets, with additional droplet pairing, fusion, and shrinkage. Deterministic single-cell encapsulation is realized using Dean-coupled inertial ordering of cells in a Yin-Yang-shaped curved microchannel using a double T-junction, with a frequency over 2000 Hz, followed by controlled droplet pairing with a 100% success rate. Subsequently, droplet fusion is realized using electrical actuation resulting in electro-coalescence of two droplets, each containing a single HL60 cell, with 95% efficiency. Finally, volume reduction of the fused droplet up to 75% is achieved by a triple pitchfork structure. This droplet volume reduction is necessary to obtain close cell-cell membrane contact necessary for final cell electrofusion, leading to hybridoma formation, which is the ultimate aim of this research.

摘要

在本文中,我们展示了一种微流控装置,它能够在液滴中连续进行高产率的单细胞封装,并具备额外的液滴配对、融合和收缩功能。通过在阴阳形弯曲微通道中利用双T形结实现细胞的Dean耦合惯性排序,以超过2000 Hz的频率实现确定性单细胞封装,随后以100%的成功率进行受控液滴配对。接着,利用电驱动实现液滴融合,使两个各包含一个HL60细胞的液滴发生电聚结,效率达95%。最后,通过三尖叉结构使融合后的液滴体积减小多达75%。这种液滴体积减小对于实现最终细胞电融合所需的紧密细胞-细胞膜接触至关重要,从而导致杂交瘤形成,这是本研究的最终目标。

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