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Human proximal tubule epithelial cells cultured on hollow fibers: living membranes that actively transport organic cations

机译:在中空纤维上培养的人类近端肾小管上皮细胞:主动转运有机阳离子的活膜

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摘要

The bioartificial kidney (BAK) aims at improving dialysis by developing 'living membranes' for cells-aided removal of uremic metabolites. Here, unique human conditionally immortalized proximal tubule epithelial cell (ciPTEC) monolayers were cultured on biofunctionalized MicroPES (polyethersulfone) hollow fiber membranes (HFM) and functionally tested using microfluidics. Tight monolayer formation was demonstrated by abundant zonula occludens-1 (ZO-1) protein expression along the tight junctions of matured ciPTEC on HFM. A clear barrier function of the monolayer was confirmed by limited diffusion of FITC-inulin. The activity of the organic cation transporter 2 (OCT2) in ciPTEC was evaluated in real-time using a perfusion system by confocal microscopy using 4-(4-(dimethylamino)styryl)-N-methylpyridinium iodide (ASP(+)) as a fluorescent substrate. Initial ASP(+) uptake was inhibited by a cationic uremic metabolites mixture and by the histamine H2-receptor antagonist, cimetidine. In conclusion, a 'living membrane' of renal epithelial cells on MicroPES HFM with demonstrated active organic cation transport was successfully established as a first step in BAK engineering.
机译:生物人工肾脏(BAK)旨在通过开发“活膜”来通过细胞辅助去除尿毒症代谢物来改善透析。在这里,独特的人类有条件永生的近端肾小管上皮细胞(ciPTEC)单层培养在生物功能化的MicroPES(聚醚砜)中空纤维膜(HFM)上,并使用微流控技术进行功能测试。沿成熟ciPTEC在HFM的紧密连接处有大量的小带闭合蛋白(ZO-1)蛋白表达证明了紧密的单层形成。 FITC-菊粉的有限扩散证实了单层的清晰屏障功能。使用4-(4-(二甲基氨基)苯乙烯基)-N-甲基吡啶碘化物(ASP(+))作为共聚焦显微镜,通过共聚焦显微镜使用灌注系统实时评估ciPTEC中有机阳离子转运蛋白2(OCT2)的活性。荧光底物。最初的ASP(+)吸收被阳离子尿毒症代谢物混合物和组胺H2受体拮抗剂西咪替丁抑制。总之,作为BAK工程的第一步,已成功建立了MicroPES HFM上具有证明的活性有机阳离子转运的肾上皮细胞“活膜”。

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