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利用纤维状、超分子膜和人肾小管细胞进行肾上皮组织工程:寻找适合生物人工肾的膜。

The use of fibrous, supramolecular membranes and human tubular cells for renal epithelial tissue engineering: towards a suitable membrane for a bioartificial kidney.

机构信息

Department of Pathology and Medical Biology, University of Groningen, University Medical Center Groningen, Hanzeplein 1, NL-9713 GZ Groningen, The Netherlands.

出版信息

Macromol Biosci. 2010 Nov 10;10(11):1345-54. doi: 10.1002/mabi.201000146.

Abstract

A bioartificial kidney, which is composed of a membrane cartridge with renal epithelial cells, can substitute important kidney functions in patients with renal failure. A particular challenge is the maintenance of monolayer integrity and specialized renal epithelial cell functions ex vivo. We hypothesized that this can be improved by electro-spun, supramolecular polymer membranes which show clear benefits in ease of processability. We found that after 7 d, in comparison to conventional microporous membranes, renal tubular cells cultured on top of our fibrous supramolecular membranes formed polarized monolayers, which is prerequisite for a well-functioning bioartificial kidney. In future, these supramolecular membranes allow for incorporation of peptides that may increase cell function even further.

摘要

一种生物人工肾,由带有肾上皮细胞的膜盒组成,可替代肾衰竭患者的重要肾脏功能。一个特别的挑战是保持体外单层完整性和专门的肾上皮细胞功能。我们假设这可以通过电纺、超分子聚合物膜来改善,这些膜在易于加工方面显示出明显的优势。我们发现,与传统的微孔膜相比,在我们的纤维状超分子膜上培养的肾小管细胞在 7 天后形成了极化的单层,这是生物人工肾正常工作的前提。在未来,这些超分子膜可以加入可能进一步提高细胞功能的肽。

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