首页> 外文期刊>Journal of biomedical materials research, Part A >The Viability and Function of Primary Rat Hepatocytes Cultured on Polymeric Membranes Developed for Hybrid Artificial Liver Devices
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The Viability and Function of Primary Rat Hepatocytes Cultured on Polymeric Membranes Developed for Hybrid Artificial Liver Devices

机译:在混合人工肝装置上开发的聚合膜上培养的原代大鼠肝细胞的活力和功能

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Bioartificial liver devices require membranes to support the function and viability of hepatocytes because they are anchorage-dependent cells. This study investigated the ability of several polymeric membranes to support the functions of primary hepatocyte cultures. Tailor-made membranes were sought by synthesizing acrylonitrile copolymers with different comonomers resulting in ionic, hydrophilic, or reactive functional groups on the polymer surface. Hepatocyte morphology and viability were assessed by con-focal microscopy, and function by the content and activities of cytochrome P450, and the expression of glutathione S-transferases. Hydrophilic membranes (polyacrylonitrile and acrylonitrile copolymerized with 2-acrylamino-2-methyl-propane sulfonic acid) were more biocompatible than hydrophobic membranes such as polysulfone. The chemistry of the hydrophilic group was important; amine groups had a deleterious effect on maintenance of the primary hepatocytes. The biocompatibility of hydrophobic membranes "was improved by collagen coating. Improving the chemistry of membranes for artificial liver devices will enhance the phenotypic stability of the cells, enabling us to prolong treatment times for patients.
机译:生物人工肝装置需要膜来支持肝细胞的功能和生存力,因为它们是锚定依赖性细胞。这项研究调查了几种聚合物膜支持原代肝细胞培养功能的能力。通过合成具有不同共聚单体的丙烯腈共聚物来寻求定制的膜,所述共聚单体在聚合物表面上产生离子,亲水或反应性官能团。通过共聚焦显微镜评估肝细胞的形态和活力,并通过细胞色素P450的含量和活性以及谷胱甘肽S-转移酶的表达来评估其功能。亲水膜(聚丙烯腈和与2-丙烯酰胺基-2-甲基丙烷磺酸共聚的丙烯腈)比疏水膜(如聚砜)具有更好的生物相容性。亲水基团的化学性质很重要。胺基对维持原代肝细胞具有有害作用。疏水膜的生物相容性“通过胶原蛋白涂层得到了改善。改善用于人工肝装置的膜的化学性质将增强细胞的表型稳定性,从而使我们能够延长患者的治疗时间。

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