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在海藻酸钙水凝胶壳的包围下,将细胞包封在胶原基质中用于 3D 细胞培养。

Encapsulation of Cells in a Collagen Matrix Surrounded by an Alginate Hydrogel Shell for 3D Cell Culture.

机构信息

Laboratoire Colloïdes et Matériaux Divisés, CBI, ESPCI Paris, Université PSL, CNRS, 10 rue Vauquelin, F-75005 Paris, France.

Sorbonne University, 4 place Jussieu, F-75005 Paris, France.

出版信息

ACS Biomater Sci Eng. 2022 Jun 13;8(6):2700-2708. doi: 10.1021/acsbiomaterials.1c01486. Epub 2022 May 24.

Abstract

Numerous techniques for mammalian cell culture have been developed to mimic the complex in vivo three-dimensional structure of tissues and organs. Among them, the sole use of proteins to create a matrix where cells are embedded already gives rise to self-organized multicellular assemblies. Loading cells in a controlled extracellular matrix along with cell culture and monitoring through a strategy that is compatible with pipetting tools would be beneficial for high throughput screening applications or simply for a standardized method. Here, we design submillimeter compartments having a thin alginate hydrogel shell and a core made of a collagen matrix where cells are embedded. The process, using a microfluidic device, is based on a high speed co-extrusion in air, leading to a compound jet whose fragmentation is controlled. The resulting core-shell liquid drops are then collected in a gelling bath that triggers a fast hardening of the shell and is followed by a slower self-assembly of collagen molecules into fibers. We show how to formulate the core solution in order to maintain cell viability at physiological conditions that otherwise induce tropocollagen molecules to self-assemble, while being able to prevent flow disturbances that are detrimental for this jetting method. Encapsulated Caco-2 cells, mainly used to model the intestinal barrier, proliferate and form a closed polarized epithelial cell monolayer where the apical membrane faces the continuous medium.

摘要

已经开发出许多用于哺乳动物细胞培养的技术,以模拟组织和器官的复杂体内三维结构。其中,仅使用蛋白质来创建一个基质,其中嵌入细胞,已经会导致自组织的多细胞组装。通过与移液工具兼容的策略在受控的细胞外基质中加载细胞并进行培养和监测,将有利于高通量筛选应用或简单的标准化方法。在这里,我们设计了具有薄藻酸盐水凝胶壳和嵌入细胞的胶原基质核心的亚毫米级隔室。该过程使用微流控装置基于在空气中的高速共挤出,导致碎片可控的复合射流。然后将得到的核壳液滴收集在凝胶浴中,触发壳的快速硬化,随后胶原分子缓慢自组装成纤维。我们展示了如何配制核心溶液,以在维持细胞活力的同时防止对这种喷射方法有害的流动干扰,否则这会诱导原胶原蛋白分子自组装。包封的 Caco-2 细胞主要用于模拟肠道屏障,增殖并形成封闭的极化上皮细胞单层,其中顶膜面向连续介质。

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