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Microfluidic chip-based synthesis of alginate microspheres for encapsulation of immortalized human cells

机译:基于微流控芯片的藻酸盐微球合成用于封装永生化人类细胞

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摘要

Cellular transplantation is a promising technology with great clinical potential in regenerative medicine and disease management. However, effective control over patient immunological response is essential. The encapsulation of cells within hydrogel microspheres is an increasingly prevalent method for the protection of cellular grafts from immune rejection. Microfluidic “chip” reactors present elegant solutions to several capsule generation issues, including the requirement for intercapsule uniformity, high reproducibility, and sterile, good manufacturing practice compliance. This study presents a novel method for the on-chip production of stable, highly monodisperse alginate microspheres and demonstrates its utility in the encapsulation of an immortalized human-derived cell line. Four populations of immortalized human embryonic kidney cells (HEK293) were encapsulated on chip within monodisperse alginate capsules. Cell viability measurements were recorded for each of the four encapsulated populations for 90 days.
机译:细胞移植是一种有前途的技术,在再生医学和疾病管理中具有巨大的临床潜力。但是,有效控制患者的免疫反应至关重要。将细胞包封在水凝胶微球中是保护细胞移植物免于免疫排斥的越来越普遍的方法。微流控“芯片”反应器为解决几个胶囊生成问题提供了出色的解决方案,包括对胶囊间均匀性,高再现性以及无菌,良好生产规范的要求。这项研究提出了一种芯片上生产稳定,高度单分散的藻酸盐微球的新颖方法,并证明了其在永生化人类衍生细胞系的封装中的效用。将四个种群的永生化人类胚胎肾细胞(HEK293)封装在单分散藻酸盐胶囊内的芯片上。记录四个封装的群体中每个群体的细胞活力测量结果,为期90天。

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