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用于流化床生物人工肝的海藻酸钠珠中C3A细胞的培养

Culture of C3A cells in alginate beads for fluidized bed bioartificial liver.

作者信息

Kinasiewicz A, Gautier A, Lewinska D, Bukowski J, Legallais C, Weryński A

机构信息

Institute of Biocybernetics and Biomedical Engineering, Polish Academy of Sciences, Warsaw, Poland.

出版信息

Transplant Proc. 2007 Nov;39(9):2911-3. doi: 10.1016/j.transproceed.2007.08.062.

Abstract

Extracorporeal bioartificial liver has been designed to sustain the detoxification and synthetic function of the failed liver in patients suffering from acute liver failure until the time of liver allotransplantation or regeneration of their own. A fluidized bed, bioartificial liver improves the mass transfer velocity between the medium and the hepatocytes. Detoxification functions of the liver could be replaced by completely artificial systems, but the synthetic functions of hepatocytes may be obtained only by metabolically active cells. The aim of our study was to investigate the influence of C3A cell culture in alginate beads on synthetic function in a fluidized bed, bioartificial liver. Cells in alginate beads were prepared using an electrostatic droplet generator of our own design using low-viscosity alginate. Beads were cultured for 24 hours then 7 days in static conditions and then 24 hours of fluidization in the bioreactor to assess albumin production. We observed significantly increased albumin production by C3A cells entrapped in alginate beads during static culture. Fluidization increased albumin production compared with static culture. Fluidization performed after 7 days of static culture resulted in a significant increase in albumin synthesis. In conclusion, static culture of alginate beads hosting hepatic cells facilitates restoration of cell function.

摘要

体外生物人工肝旨在维持急性肝衰竭患者衰竭肝脏的解毒和合成功能,直至进行肝脏同种异体移植或自身肝脏再生之时。流化床生物人工肝可提高培养基与肝细胞之间的传质速度。肝脏的解毒功能可由完全人工系统替代,但肝细胞的合成功能只能通过代谢活跃的细胞来实现。我们研究的目的是探讨藻酸盐珠中C3A细胞培养对流化床生物人工肝合成功能的影响。藻酸盐珠中的细胞使用我们自己设计的静电液滴发生器,采用低粘度藻酸盐制备。珠子先在静态条件下培养24小时,然后培养7天,再在生物反应器中流化24小时,以评估白蛋白的产生。我们观察到,在静态培养期间,藻酸盐珠中包封的C3A细胞产生的白蛋白显著增加。与静态培养相比,流化增加了白蛋白的产生。在静态培养7天后进行流化,导致白蛋白合成显著增加。总之,承载肝细胞的藻酸盐珠的静态培养有助于细胞功能的恢复。

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