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Generation and Manipulation of Hydrogel Microcapsules byDroplet-Based Microfluidics for Mammalian Cell Culture

机译:水凝胶微胶囊的产生和操纵基于液滴的微流控技术用于哺乳动物细胞培养

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摘要

Hydrogel microcapsules provide miniaturized and biocompatible niches for three-dimensional (3D) in vitro cell culture. They can be easily generated by droplet-based microfluidics with tunable size, morphology, and biochemical properties. Therefore, microfluidic generation and manipulation of cell-laden microcapsules can be used for 3D cell culture to mimic the in vivo environment towards applications in tissue engineering and high throughput drug screening. In this review of recent advances mainly since 2010, we will first introduce general characteristics of droplet-based microfluidic devices for cell encapsulation with an emphasis on the fluid dynamics of droplet breakup and internal mixing as they directly influence microcapsule’s size and structure. We will then discuss two on-chip manipulation strategies: sorting and extraction from oil into aqueous phase, which can be integrated into droplet-based microfluidics and significantly improve the qualities of cell-laden hydrogel microcapsules. Finally, we will review various applications of hydrogel microencapsulation for 3D in vitro culture on cell growth and proliferation, stem cell differentiation, tissue development, and co-culture of different types ofcells.
机译:水凝胶微胶囊为三维(3D)体外细胞培养提供了小型且生物相容的壁ches。它们可以通过具有可调整大小,形态和生化特性的基于液滴的微流体轻松生成。因此,载有细胞的微胶囊的微流体产生和操纵可用于3D细胞培养,以模仿体内环境,以应用于组织工程和高通量药物筛选。在此主要是自2010年以来的最新进展的综述中,我们将首先介绍用于细胞封装的基于液滴的微流体装置的一般特性,着重介绍液滴破裂和内部混合的流体动力学,因为它们直接影响微囊的大小和结构。然后,我们将讨论两种芯片上的处理策略:从油中分选和提取到水相中,可以将其集成到基于液滴的微流控技术中,并显着提高载有细胞的水凝胶微胶囊的质量。最后,我们将回顾水凝胶微囊化在3D体外培养中对细胞生长和增殖,干细胞分化,组织发育以及不同类型共培养物的共培养的各种应用。细胞。

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