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培养的肾细胞在研究药物诱导的肾毒性中的应用。

The application of renal cells in culture in studying drug-induced nephrotoxicity.

作者信息

Williams P D

机构信息

Biochemical Toxicology Department, Lilly Research Laboratory, Eli Lilly and Company, Greenfield, Indiana 46140.

出版信息

In Vitro Cell Dev Biol. 1989 Sep;25(9):800-5. doi: 10.1007/BF02623663.

Abstract

Kidney cells in culture represent one of many in vitro approaches for studying drug-induced nephrotoxicity. Potential advantages of cell culture systems compared to more traditional in vitro models include a) the ability to examine direct effects at the cellular level, b) extended viability, c) ability for long-term storage, and d) capabilities for automation. Primary cultures of kidney tubules as well as cell lines of kidney origin are currently under evaluation as model systems for the assessment of nephrotoxicity. The application of two renal cell systems, rabbit primary proximal tubule cultures and the pig kidney cell line, LLC-PK1, in studying mechanisms of drug-induced nephrotoxicity is described in this communication. Potentially valuable insights into the renal pathogenesis associated with the antitumor agent, cis-diamminedichloroplatinum II, and the aminoglycoside antibiotic, gentamicin, have been obtained utilizing these renal cell models. Challenges in renal cell culture involve the characterization and maintenance of differentiated properties and the development of technologies to a) study bidirectional transport-toxicity of drugs, and b) provide a dynamic vs. static fluid environment as in vivo. Despite these unique challenges as well as the universal challenges involved in extrapolating any in vitro data to the in vivo situation, recent studies indicate that renal cells in culture are useful in the elucidation of mechanisms of drug-induced renal injury.

摘要

培养的肾细胞是研究药物性肾毒性的众多体外方法之一。与更传统的体外模型相比,细胞培养系统的潜在优势包括:a)能够在细胞水平上检测直接效应;b)延长细胞活力;c)具备长期储存能力;d)能够实现自动化。目前正在评估肾小管原代培养物以及肾源性细胞系作为肾毒性评估的模型系统。本文介绍了两种肾细胞系统,即兔原代近端小管培养物和猪肾细胞系LLC-PK1,在研究药物性肾毒性机制中的应用。利用这些肾细胞模型,已获得了与抗肿瘤药物顺二氯二氨铂II和氨基糖苷类抗生素庆大霉素相关的肾发病机制方面具有潜在价值的见解。肾细胞培养面临的挑战包括分化特性的表征与维持,以及开发技术以:a)研究药物的双向转运毒性;b)提供与体内一样的动态与静态流体环境。尽管存在这些独特挑战以及将任何体外数据外推至体内情况时涉及的普遍挑战,但最近的研究表明,培养的肾细胞有助于阐明药物性肾损伤的机制。

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