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Exclusive Liquid Repellency: An Open Multi-Liquid-Phase Technology for Rare Cell Culture and Single-Cell Processing

机译:独家液体排斥性:用于稀有细胞培养和单细胞加工的开放式多液相技术

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摘要

The concept of high liquid repellency in multi-liquid-phase systems (e.g., aqueous droplets in an oil background) has been applied to areas of biomedical research to realize intrinsic advantages not available in single-liquid-phase systems. Such advantages have included minimizing analyte loss, facile manipulation of single-cell samples, elimination of biofouling, and ease of use regarding loading and retrieving of the sample. In this paper, we present generalized design rules for predicting the wettability of solid liquid liquid systems (especially for discrimination between exclusive liquid repellency (ELR) and finite liquid repellency) to extend the applications of ELR. We then apply ELR to two model systems with open microfluidic design in cell biology: (1) in situ underoil culture and combinatorial coculture of mammalian cells in order to demonstrate directed single-cell multiencapsulation with minimal waste of samples as compared to stochastic cell seeding and (2) isolation of a pure population of circulating tumor cells, which is required for certain downstream analyses including sequencing and gene expression profiling.
机译:多液相系统中高液体排斥性的概念(例如,油背景中的水滴)已应用于生物医学研究领域,以实现单液相系统中不可用的内在优点。这些优点包括最小化分析物损失,单细胞样本的容易操纵,消除生物污染,以及关于样品的加载和检索的易用性。在本文中,我们呈现了预测固体液体系统的润湿性的广义设计规则(特别是对于独有的液体排斥性(ELR)和有限液体排斥性之间的辨别)来扩展ELR的应用。然后,我们将ELR应用于具有细胞生物学的开放微流体设计的两种模型系统:(1)原位内部培养物和哺乳动物细胞的组合共培养,以证明与随机细胞播种相比最小的样品浪费的指向单细胞多胶囊。 (2)循环肿瘤细胞的纯群体分离,这是某些下游分析所需的,包括测序和基因表达分析。

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