首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Morphological studies on the culture of kidney epithelial cells in a fiber-in-fiber bioreactor design with hollow fiber membranes
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Morphological studies on the culture of kidney epithelial cells in a fiber-in-fiber bioreactor design with hollow fiber membranes

机译:带有中空纤维膜的纤维中纤维生物反应器设计中肾脏上皮细胞培养的形态学研究

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A hollow fiber-in-fiber-based bioreactor system was tested for the applicability to host kidney epithelial cells as a model system for a bioartificial kidney. Hollow fibers were prepared from polyacrylonitrile (PAN), polysulfone-polyvinylpyrollidinone (PVP) blend (PSU) and poly(acrylonitrile-N-vinylpyrollidinone) copolymer P(AN-NVP). Hollow fibers with smaller and larger diameters were prepared so that the smaller fitted into the larger, with distance of 50-100 mum in between. The following material combinations as outer and inner fiber were applied: PAN-PAN; PSI-PSU, PSU-P(AN-NVP). Madin-Darby kidney epithelial cells (MDCK) were seeded in the interfiber space and sultured for a period up to 14 days. Light, scanning, and transmission electron microscopy were used to follow the adhesion and growth of cells, and to characterize their morphology. As a result, we found that MDCK cells were able to grow in the interfiber space in mono- and multilayers without signs of systemic degeneration. Comparison of the different materials showed that PAN and P(AN-NVP) provided the best growth condition, indicated by a tight attachment of cells on hollow fiber membrane, and subsequent proliferation and development of structural elements of normal epithelia, such as tight junctions and microvilli. In conclusion, the fiber-in-fiber design seems to be an interesting system for the construction of a bioartificial kidney
机译:测试了基于中空纤维的生物反应器系统作为生物人工肾的模型系统的宿主肾上皮细胞的适用性。中空纤维由聚丙烯腈(PAN),聚砜-聚乙烯基吡咯烷酮(PVP)共混物(PSU)和聚(丙烯腈-N-乙烯基吡咯烷酮)共聚物P(AN-NVP)制备。制备直径越来越大的中空纤维,使较小的纤维适合较大的纤维,两者之间的距离为50-100微米。应用以下材料组合作为外部和内部纤维:PAN-PAN; PSI-PSU,PSU-P(AN-NVP)。将Madin-Darby肾上皮细胞(MDCK)播种在纤维间隙中,并进行长达14天的培养。使用光镜,扫描镜和透射电子显微镜观察细胞的粘附和生长情况,并表征其形态。结果,我们发现MDCK细胞能够在单层和多层的纤维间空间中生长,而没有系统性退化的迹象。对不同材料的比较表明,PAN和P(AN-NVP)提供了最佳的生长条件,这表明细胞紧密附着在中空纤维膜上,随后正常上皮的结构元件(如紧密连接和微绒毛。总之,纤维在纤维的设计似乎是构建生物人工肾脏的有趣系统

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