Taft David R
Division of Pharmaceutics and Industrial Pharmacy, Long Island University, 75 DeKalb Avenue, Brooklyn, NY 11201, USA.
Curr Drug Discov Technol. 2004 Jan;1(1):97-111. doi: 10.2174/1570163043484824.
Over the past three decades, the Isolated Perfused Rat Kidney (IPK) has been used to study numerous aspects of renal drug disposition. Among the available ex-vivo methods to study renal transport, the IPK allows for elucidation of the overall contributions of renal transport mechanisms on drug excretion. Therefore, IPK studies can provide a bridge between in vitro findings and in vivo disposition. This review paper begins with a detailed overview of IPK methodology (system components, surgical procedure, study design). Various applications of the IPK are then presented. These applications include characterizing renal excretion mechanisms, screening for clinically significant drug interactions, studying renal drug metabolism, and correlating renal drug disposition with drug-induced changes in kidney function. Lastly, the role of IPK studies in drug development is discussed. Demonstrated correlations between IPK data and clinical outcomes make the IPK model a potentially useful tool for drug discovery and evaluation.
在过去三十年中,离体灌注大鼠肾脏(IPK)已被用于研究肾脏药物处置的诸多方面。在现有的用于研究肾脏转运的体外方法中,IPK能够阐明肾脏转运机制对药物排泄的总体贡献。因此,IPK研究可以在体外研究结果与体内处置之间架起一座桥梁。本文首先详细概述了IPK方法(系统组件、手术过程、研究设计)。然后介绍了IPK的各种应用。这些应用包括表征肾脏排泄机制、筛选具有临床意义的药物相互作用、研究肾脏药物代谢以及将肾脏药物处置与药物引起的肾功能变化相关联。最后,讨论了IPK研究在药物开发中的作用。IPK数据与临床结果之间已证实的相关性使IPK模型成为药物发现和评估的潜在有用工具。