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血红蛋白调节中空纤维生物反应器培养的肝癌细胞的代谢、合成、解毒和生物转化功能。

Hemoglobin regulates the metabolic, synthetic, detoxification, and biotransformation functions of hepatoma cells cultured in a hollow fiber bioreactor.

机构信息

William G. Lowrie Department of Chemical and Biomolecular Engineering, The Ohio State University, Columbus, Ohio 43210, USA.

出版信息

Tissue Eng Part A. 2010 Oct;16(10):3231-40. doi: 10.1089/ten.TEA.2010.0058.

Abstract

Hepatic hollow fiber (HF) bioreactors constitute one type of extracorporeal bioartificial liver assist device (BLAD). Ideally, cultured hepatocytes in a BLAD should closely mimic the in vivo oxygenation environment of the liver sinusoid to yield a device with optimal performance. However, most BLADs, including hepatic HF bioreactors, suffer from O2 limited transport toward cultured hepatocytes, which reduces their performance. We hypothesize that supplementation of hemoglobin-based O2 carriers into the circulating cell culture medium of hepatic HF bioreactors is a feasible and effective strategy to improve bioreactor oxygenation and performance. We examined the effect of bovine hemoglobin (BvHb) supplementation (15g/L) in the circulating cell culture medium of hepatic HF bioreactors on hepatocyte proliferation, metabolism, and varied liver functions, including biosynthesis, detoxification, and biotransformation. It was observed that BvHb supplementation supported the maintenance of a higher cell mass in the extracapillary space, improved hepatocyte metabolic efficiency (i.e., hepatocytes consumed much less glucose), improved hepatocyte capacity for drug metabolism, and conserved both albumin synthesis and ammonia detoxification functions compared to controls (no BvHb supplementation) under the same experimental conditions.

摘要

肝腔纤维(HF)生物反应器是体外生物人工肝辅助装置(BLAD)的一种。理想情况下,BLAD 中的培养肝细胞应密切模拟肝脏窦状隙的体内氧合环境,以获得性能最佳的装置。然而,大多数 BLAD,包括肝腔 HF 生物反应器,都存在朝向培养肝细胞的 O2 传输受限的问题,这降低了它们的性能。我们假设向肝腔 HF 生物反应器的循环细胞培养液中补充血红蛋白基 O2 载体是改善生物反应器氧合和性能的一种可行且有效的策略。我们研究了在肝腔 HF 生物反应器的循环细胞培养液中补充牛血红蛋白(BvHb)(15g/L)对肝细胞增殖、代谢和各种肝功能(包括生物合成、解毒和生物转化)的影响。结果表明,与对照组(无 BvHb 补充)相比,BvHb 补充在相同的实验条件下支持了毛细血管外空间中更高细胞量的维持,提高了肝细胞的代谢效率(即肝细胞消耗的葡萄糖更少),提高了肝细胞的药物代谢能力,并保留了白蛋白合成和氨解毒功能。

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