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Application of Millifluidics to Encapsulate and Support Viable Human Mesenchymal Stem Cells in a Polysaccharide Hydrogel

机译:毫流中的应用在多糖水凝胶中包封和支持可行的人间充质干细胞

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摘要

Human adipose-derived stromal cells (hASCs) are widely known for their immunomodulatory and anti-inflammatory properties. This study proposes a method to protect cells during and after their injection by encapsulation in a hydrogel using a droplet millifluidics technique. A biocompatible, self-hardening biomaterial composed of silanized-hydroxypropylmethylcellulose (Si-HPMC) hydrogel was used and dispersed in an oil continuous phase. Spherical particles with a mean diameter of 200 μm could be obtained in a reproducible manner. The viability of the encapsulated hASCs in the Si-HPMC particles was 70% after 14 days in vitro, confirming that the Si-HPMC particles supported the diffusion of nutrients, vitamins, and glucose essential for survival of the encapsulated hASCs. The combination of droplet millifluidics and biomaterials is therefore a very promising method for the development of new cellular microenvironments, with the potential for applications in biomedical engineering.
机译:人类脂肪衍生的基质细胞(HASC)广为人知,用于其免疫调节和抗炎性质。本研究提出了一种通过使用液滴毫流技术在水凝胶中通过包封来保护细胞的方法。使用由硅烷化 - 羟丙基甲基纤维素(Si-HPMC)水凝胶组成的生物相容性,自硬化生物材料并分散在油连续相中。平均直径为200μm的球形颗粒可以以可再现的方式获得。在体外14天后,在Si-HPMC颗粒中的包封HAPSCS在Si-HPMC颗粒中的可行性为70%,证实Si-HPMC颗粒支持营养,维生素和葡萄糖的扩散,该葡萄糖对于存活的包封的HASCs。因此,液滴毫流和生物材料的组合是一种非常有希望的新细胞微环境的方法,具有生物医学工程中的应用。

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