Emerging Kidney Models to Investigate Metabolism, Transport, and Toxicity of Drugs and Xenobiotics

被引:64
作者
Bajaj, Piyush [1 ]
Chowdhury, Swapan K. [2 ]
Yucha, Robert [2 ]
Kelly, Edward J. [3 ]
Xiao, Guangqing [2 ]
机构
[1] Takeda Pharmaceut Int Co, Drug Safety Res & Evaluat, Cambridge, MA USA
[2] Takeda Pharmaceut Int Co, Drug Metab & Pharmacokinet Dept, Cambridge, MA USA
[3] Univ Washington, Dept Pharmaceut, Seattle, WA 98195 USA
基金
美国国家卫生研究院;
关键词
ORGANIC ANION TRANSPORTERS; PLURIPOTENT STEM-CELLS; FLUID SHEAR-STRESS; INDUCED NEPHROTOXICITY; TUBULE CELLS; PROTEIN REABSORPTION; APICAL ENDOCYTOSIS; ION TRANSPORTERS; HK-2; EXPRESSION;
D O I
10.1124/dmd.118.082958
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
The kidney is a major clearance organ of the body and is responsible for the elimination of many xenobiotics and prescription drugs. With its multitude of uptake and efflux transporters and metabolizing enzymes, the proximal tubule cell (PTC) in the nephron plays a key role in the disposition of xenobiotics and is also a primary site for toxicity. In this minireview, we first provide an overview of the major transporters and metabolizing enzymes in the PTCs responsible for biotransformation and disposition of drugs. Next, we discuss different cell sources that have been used to model PTCs in vitro, their pros and cons, and their characterization. As current technology is inadequate to evaluate reliably drug disposition and toxicity in the kidney, we then discuss recent advancements in kidney microphysiological systems (MPS) and the need to develop robust in vitro platforms that could be routinely used by pharmaceutical companies to screen compounds. Finally, we discuss the new and exciting field of stem cell-derived kidney models as potential cell sources for future kidney MPS. Given the push from both regulatory agencies and pharmaceutical companies to use more predictive "human-like" in vitro systems in the early stages of drug development to reduce attrition, these emerging models have the potential to be a game changer and may revolutionize how renal disposition and kidney toxicity in drug discovery are evaluated in the future.
引用
收藏
页码:1692 / 1702
页数:11
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