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大鼠肝细胞培养及共培养在异生素生物转化研究中的应用

Rat hepatocyte cultures and co-cultures in biotransformation studies of xenobiotics.

作者信息

Rogiers V, Vercruysse A

机构信息

Department of Toxicology, Vrije Universiteit Brussel, Belgium.

出版信息

Toxicology. 1993 Oct 5;82(1-3):193-208. doi: 10.1016/0300-483x(93)02611-j.

Abstract

Long-term cultures of hepatocytes could represent a suitable in vitro model for biotransformation studies of xenobiotics. At present however, no ideal culture system can be proposed since, in all existing models, phenotypic changes occur, affecting selectively some components of phase I and/or phase II xenobiotic metabolism. From the authors' own results and recent studies of several other investigators, carried out on rat hepatocytes, it becomes clear that four groups of factors may affect biotransformation capacity: soluble medium factors, extracellular matrix components, cell-cell interactions and factors affecting replication. For the maintenance of liver-specific functions, it seems of utmost importance that the tridimensional shape of the hepatocytes is kept. Usually, phase II enzymatic activity is better kept than that of phase I. The cytochrome P450 dependent monoxygenases, in particular, are easily lost. Interesting is the observation that co-cultures of rat hepatocytes with rat liver epithelial cells exhibit higher and much better preserved phase I and phase II biotransformation than monocultures. Clearly, further research is needed to improve this promising in vitro model.

摘要

肝细胞的长期培养可能是用于异生物质生物转化研究的合适体外模型。然而目前,由于在所有现有模型中都会发生表型变化,选择性地影响I相和/或II相异生物质代谢的某些成分,因此无法提出理想的培养系统。从作者自己的研究结果以及其他几位研究人员最近对大鼠肝细胞进行的研究来看,很明显有四类因素可能会影响生物转化能力:可溶性培养基因素、细胞外基质成分、细胞间相互作用以及影响复制的因素。为了维持肝脏特异性功能,保持肝细胞的三维形状似乎至关重要。通常,II相酶活性比I相酶活性保存得更好。特别是细胞色素P450依赖性单加氧酶很容易丧失。有趣的是,观察到大鼠肝细胞与大鼠肝上皮细胞的共培养比单培养表现出更高且保存得更好的I相和II相生物转化。显然,需要进一步研究来改进这个有前景的体外模型。

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