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Three-dimensional culture of hepatocytes on spongy polyethersulfone membrane developed for cell transplantation.

机译:开发用于海绵移植的海绵状聚醚砜膜上的肝细胞三维培养。

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摘要

Implantable bioartificial liver has been investigated for patients suffering from liver insufficiency after mass liver resection or acute liver failure. Liver cells are implanted as free cell suspension, in microencapsulation systems or using microcarriers. To exhibit their typical functions, hepatic cells need a three-dimensional environment that is much more physiological than a flat one. The aim of our study was in vivo evaluation of spongy polyethersulfone membranes as a synthetic support for hepatic cells grown three dimensionally and transplanted to SCID/NOD mice. Spongy membranes were prepared using phase inversion from membrane-forming mixtures containing the following: polyethersulfone (based polymer), dimethylformamide (solvent), polyvinylpyrrolidone MW 10000 (small pore precursor), and cellulose (large pore precursor). We observed that polyethersulfone membranes were well tolerated by C3A cells and we did not observe any toxic effect, resulting in viability of cells >95%. Use of collagen gelas a support for cells on the scaffold gives the opportunity to increase 10 times the number of cells seeded on the membrane. Heparin addition to collagen gel did not influence albumin production in SCID/NOD mice. We observed an increase of albumin production after 7 and 14 days after implantation. Use of collagen gels in combination with polymer scaffolds allows preparation of bioartificial organs possessing high cell concentration for transplantation purposes.
机译:对于大规模肝切除或急性肝衰竭后患有肝功能不全的患者,已经进行了植入式生物人工肝的研究。在微囊化系统中或使用微载体,将肝细胞作为游离细胞悬液植入。为了展现其典型功能,肝细胞需要一个比平坦的细胞更具生理学意义的三维环境。我们研究的目的是对海绵状聚醚砜膜进行体内评估,以此作为对三维生长并移植到SCID / NOD小鼠肝细胞的合成支持。使用相转化法从包含以下物质的成膜混合物中制备海绵状膜:聚醚砜(基于聚合物),二甲基甲酰胺(溶剂),聚乙烯吡咯烷酮MW 10000(小孔前体)和纤维素(大孔前体)。我们观察到C3A细胞对聚醚砜膜具有很好的耐受性,并且未观察到任何毒性作用,导致细胞存活率> 95%。使用胶原蛋白凝胶作为支架上细胞的支持物,可以使接种在膜上的细胞数量增加10倍。除胶原蛋白凝胶外,肝素不影响SCID / NOD小鼠的白蛋白产生。我们观察到植入后7和14天后白蛋白产生增加。将胶原蛋白凝胶与聚合物支架结合使用可以制备具有高细胞浓度的生物人工器官用于移植。

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