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Multilayer rat hepatocyte aggregates formed on expanded polytetrafluoroethylene surface

机译:在膨胀的聚四氟乙烯表面上形成多层大鼠肝细胞聚集体

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Feasibility of using a macroporous membrane material, expanded polytetrafluoroethylene (ePTFE), for culturing hepatocytes on its surface was examined. Adult rat hepatocytes were attached to an ePTFE surface and cultured in a hormonally defined medium supplemented with or without fetal calf serum (FCS, 10%) or bovine serum albumin (BSA, 0.03–3%). When cultured in a FCS-suplemented medium, hepatocytes reorganized themselves into multilayer cell aggregates on an ePTFE surface. The morphological characteristics of hepatocytes were influenced by the modification of the ePTFE surface as well as the culture medium. Hepatocytes cultured on a polyvinylalcohol (PVA)-coated ePTFE surface formed many more multilayer cell aggregates than those cultured on an uncoated ePTFE surface. Such highly multilayered hepatocyte aggregates were also noted when the cells were cultivated in a BSA-supplemented medium. On the other hand, when cultured in a FCS- or BSA-free medium, hepatocytes formed cell monolayers on both PVA-coated and uncoated ePTFE surfaces as did the cells on a collagen-coated polystyrene surface. The hepatocytes in the aggregates exhibited high albumin expression capability and low DNA synthesis rate as compared with those in monolayer cultures. The multilayer hepatocyte aggregates, as immobilized on a PVA-coated ePTFE surface in a serum-supplemented medium, are shown to be not only morphologically, but functionally differentiated, and will provide us a model system for the development of a bioreactor using hepatocytes, particularly for a hybrid-type artificial liver.
机译:检验了使用大孔膜材料,膨胀聚四氟乙烯(ePTFE)在其表面培养肝细胞的可行性。将成年大鼠肝细胞附着在ePTFE表面上,并在添加或不添加胎牛血清(FCS,10%)或牛血清白蛋白(BSA,0.03–3%)的激素定义培养基中培养。当在添加了FCS的培养基中培养时,肝细胞将自身重组为ePTFE表面上的多层细胞聚集体。肝细胞的形态特征受到ePTFE表面以及培养基的改性的影响。在聚乙烯醇(PVA)涂层的ePTFE表面上培养的肝细胞比在未涂层的ePTFE表面上培养的肝细胞形成更多的多层细胞聚集体。当在补充了BSA的培养基中培养细胞时,也注意到了这种高度多层化的肝细胞聚集体。另一方面,当在不含FCS或BSA的培养基中培养时,肝细胞会在PVA涂层和未涂层​​的ePTFE表面上形成细胞单层,就像胶原蛋白涂层的聚苯乙烯表面上的细胞一样。与单层培养相比,聚集物中的肝细胞表现出高白蛋白表达能力和低DNA合成率。多层肝细胞聚集体固定在血清补充培养基中的PVA涂层ePTFE表面上,不仅在形态上而且在功能上都有差异,这将为我们开发使用肝细胞的生物反应器提供模型系统,特别是用于混合型人工肝。

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