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Planar and Cell Aggregate-Like Assemblies Consisting of Microreactors and HepG2 Cells

机译:由微反应器和HepG2细胞组成的类似平面和细胞的集合体

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The assembly of microreactors has made considerable progress toward the fabrication of artificial cells. However, their characterization remains largely limited to buffer solution-based assays in the absence of their natural role model—the biological cells. Herein, the combination of microreactors with HepG2 cells either in planar cell cultures or in the form of cell aggregates is reported. Alginate (Alg)-based microreactors loaded with catalase are assembled by droplet microfluidics, and their activity is confirmed. The acceptance of polymer-coated ~40 μm Alg particles by proliferating HepG2 cells is depending on the terminating polymer layer. When these functional microreactors are cocultured with HepG2 cells, they can be employed for detoxification, that is, hydrogen peroxide removal, and by doing so, they assist the cells to survive. This report is among the first successful combination of microreactors with biological cells, that is, HepG2 cells, contributing to the fundamental understanding of integrating synthetic and biological partners toward the maturation of this semisynthetic concept for biomedical applications.
机译:微型反应器的组装在人造细胞的制造上取得了长足的进步。但是,在缺乏其天然作用模型(生物细胞)的情况下,其表征仍主要限于基于缓冲溶液的测定。在本文中,报道了在平面细胞培养物中或以细胞聚集体形式的微反应器与HepG2细胞的组合。负载过氧化氢酶的藻酸盐(Alg)基微反应器通过微滴微流体组装,并确认了它们的活性。增殖的HepG2细胞对聚合物涂层的〜40μmAlg颗粒的接受程度取决于终止的聚合物层。当这些功能性微反应器与HepG2细胞共培养时,它们可用于解毒,即去除过氧化氢,从而协助细胞存活。该报告是微反应器与生物细胞(即HepG2细胞)的首次成功结合,这有助于将合成和生物伴侣整合在一起,从而使半合成概念在生物医学应用中的成熟。

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