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Cultivation of primary porcine hepatocytes in an OXY-HFB for use as a bioartificial liver device

机译:在OXY-HFB中培养原代猪肝细胞用作生物人工肝装置

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Bioreactors being developed for bioartificial liver devices vary greatly in their construction. Until now, primary liver cells were cultivated either in sandwich configuration, as spheroids, or in special hollow fiber systems. Primary hepatocytes are demanding on their environment and have a high oxygen consumption. To get good results, optimal cultivation conditions are needed. The idea of the project was to investigate a new concept of an oxygenating hollow fiber bioreactor (OXY-HFB). The OXY-HFB should consist exclusively of oxygenating and internal heat exchange fibers to yield a simple and effective design. Primary liver cells were seeded on the surface of the fibers in the extrafiber space. Oxygen requirements and temperature control were supplied through the fibers. The culture medium was perfused through the extrafiber space and therefore brought into direct hepatocellular contact. The OXY-HFB concept offers different advantages. A high cell density of 2.5 x 10(7) cells/mL can be obtained. This results in a cell number of 2.5 x 10(9) liver cells per bioreactor. Furthermore, the OXY-HFB is easily handled because no incubator is required. To study the efficiency of this bioreactor technique, various parameters were investigated over a cultivation period of three weeks. These included urea synthesis, lactate formation, glucose elimination, albumin synthesis, oxygen level, and pH. Furthermore, the metabolites of diazepain were measured. The biochemical performance of the bioreactor remained stable over the investigated time period. These results demonstrate that porcine liver cells preserve their viability and primary metabolism in the OXY-HFB over the complete period of study.
机译:正在开发用于生物人工肝装置的生物反应器,其结构差异很大。到现在为止,原代肝细胞要么以三明治结构(如球体)的形式培养,要么以特殊的中空纤维系统培养。原代肝细胞对环境的要求很高,并且耗氧量很高。为了获得良好的结果,需要最佳的培养条件。该项目的想法是研究一种氧化中空纤维生物反应器(OXY-HFB)的新概念。 OXY-HFB应该仅由充氧和内部热交换纤维组成,以产生简单有效的设计。原代肝细胞被植入纤维外空间的纤维表面。氧气需求量和温度控制通过纤维提供。培养基通过纤维外空间灌注,因此直接进入肝细胞接触。 OXY-HFB概念具有不同的优势。可以获得2.5 x 10(7)个细胞/ mL的高细胞密度。每个生物反应器的肝细胞数为2.5 x 10(9)。此外,由于不需要培养箱,因此OXY-HFB易于处理。为了研究这种生物反应器技术的效率,在三周的培养期内研究了各种参数。这些包括尿素合成,乳酸形成,葡萄糖消除,白蛋白合成,氧气水平和pH。此外,测定了地西az的代谢产物。在所研究的时间段内,生物反应器的生化性能保持稳定。这些结果表明,在整个研究过程中,猪肝细胞在OXY-HFB中保持其活力和主要代谢。

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