Animal Cell Technology Laboratory, IBET/ITQB-UNL, Oeiras, Portugal.
Biotechnol Bioeng. 2011 Jan;108(1):41-9. doi: 10.1002/bit.22920.
Long-term primary cultures of hepatocytes are essential for bioartificial liver (BAL) devices and to reduce and replace animal tests in lead candidate optimization in drug discovery and toxicology tests. The aim of this work was to improve bioreactor cultures of hepatocyte spheroids by adding a more physiological perfusion feeding regime to these bioreactor systems. A continuous perfusion feeding was compared with 50% medium replacement (routinely used for in vitro tests) at the same dilution rate, 0.125 day(-1), for three operative weeks. Perfusion feeding led to a 10-fold improvement in albumin synthesis in bioreactors containing non-encapsulated hepatocyte spheroids; no significant improvement was observed in phase I drug metabolizing activity. When ultra high viscous alginate encapsulated spheroids were cultured in perfusion, urea synthesis, phase I drug metabolizing activity and oxygen consumption had a threefold improvement over the 50% medium replacement regime; albumin production was the same for both feeding regimes. The effective diffusion of albumin in the alginate capsules was 7.75.10(-9) cm(2) s(-1) and no diffusion limitation for this protein was observed using these alginate capsules under our operational conditions. In conclusion, perfusion feeding coupled with alginate encapsulation of hepatocyte spheroids showed a synergistic effect with a threefold improvement in three independent liver-specific functions of long-term hepatocyte spheroid cultures.
长期原代肝细胞培养对于生物人工肝脏(BAL)设备以及减少和替代药物发现和毒理学测试中先导候选物优化中的动物测试至关重要。本工作的目的是通过向这些生物反应器系统添加更生理的灌注喂养方案来改善肝细胞微球体的生物反应器培养。连续灌注喂养与以相同稀释率(0.125 天(-1))进行的 50%培养基替换(常规用于体外测试)进行了比较,持续三个操作周。灌注喂养导致未包封的肝细胞微球体生物反应器中的白蛋白合成提高了 10 倍;在 I 相药物代谢活性方面未观察到显著改善。当超粘稠藻酸盐包封的微球体在灌注中培养时,与 50%培养基替换方案相比,尿素合成、I 相药物代谢活性和耗氧量提高了三倍;两种喂养方案的白蛋白产量相同。白蛋白在藻酸盐胶囊中的有效扩散为 7.75.10(-9)cm(2)s(-1),并且在我们的操作条件下,对于这种蛋白,藻酸盐胶囊没有观察到扩散限制。总之,灌注喂养与肝细胞微球体的藻酸盐包封相结合,对长期肝细胞微球体培养的三种独立的肝脏特异性功能具有协同作用,提高了三倍。