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Microfluidic Generation of Porous Microcarriers for Three-Dimensional Cell Culture

机译:用于三维细胞培养的多孔微载体的微流体生成

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摘要

Inspired by the microstructure of the stem cell niche, which is generally composed of adjacent cell protection layers and an extracellular matrix (ECM), we present novel microfluidic porous microcarriers for cell culture that consist of external internal connected scaffold structures and biopolymer matrix fillers. The biomimetic scaffold structure of the porous microcarriers not only avoids the imposition of shear forces on the encapsulated cells but also provides a confined microenvironment for cell self-assembly, whereas the biopolymers in the porous cores of the microcarriers can act as an ECM microenvironment to promote the formation of multicellular spheroid aggregates for biomedical applications.
机译:受干细胞生态位的微结构的启发,该结构通常由相邻的细胞保护层和细胞外基质(ECM)组成,我们提出了用于细胞培养的新型微流体多孔微载体,其由外部内部连接的支架结构和生物聚合物基质填充物组成。多孔微载体的仿生支架结构不仅避免了对包封的细胞施加剪切力,而且还为细胞自组装提供了受限的微环境,而微载体的多孔核中的生物聚合物可以充当ECM微环境以促进用于生物医学应用的多细胞球状聚集体的形成。

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