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首页> 外文期刊>Biotechnology Letters >Cryopreservation of primary porcine liver cells in an organotypical sandwich model in a clinically relevant flat membrane bioreactor
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Cryopreservation of primary porcine liver cells in an organotypical sandwich model in a clinically relevant flat membrane bioreactor

机译:在临床相关的平板膜生物反应器的器官典型三明治模型中冷冻原代猪肝细胞

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摘要

To overcome the logistical difficulties of continuously supplying freshly-isolated, primary porcine liver cells to bioartificial liver support bioreactors, we developed a cryopreservation method using an organotypical sandwich model in a flat membrane bioreactor (FMB). We measured albumin secretion rate, urea synthesis rate and 7-ethoxy coumarin (ECOD) in long-term cultures of cryopreserved cells (up to 14 days). The albumin secretion rate was 62% that of non-cryopreserved cells at days 11 and 14. The ECOD activity was 54% that of fresh, control cells initially and increased up to 79% by the 14th day. The urea synthesis rate was stable at 60% that of the control. This study showed that cryopreserved cells can recover liver-specific functions. This result has the potential to dramatically expand the clinical application of bioartificial liver supports.
机译:为了克服向生物人工肝支持生物反应器连续供应新鲜分离的原代猪肝细胞的后勤困难,我们开发了一种在平膜生物反应器(FMB)中使用有机典型三明治模型冷冻保存的方法。我们测量了冷冻保存细胞的长期培养(长达14天)中的白蛋白分泌率,尿素合成率和7-乙氧基香豆素(ECOD)。在第11天和第14天,白蛋白的分泌率为非冷冻保存的细胞的62%。最初的ECOD活性为新鲜的对照细胞的ECOD活性的54%,到第14天时增加至79%。尿素合成率稳定在对照的60%。这项研究表明,冷冻保存的细胞可以恢复肝脏的特定功能。该结果有可能极大地扩展生物人工肝支持物的临床应用。

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