DIFFERENTIAL INTERACTION OF HUMAN RENAL P-GLYCOPROTEIN WITH VARIOUS METABOLITES AND ANALOGS OF CYCLOSPORINE-A

被引:23
作者
CHARUK, JHM
WONG, PY
REITHMEIER, RAF
机构
[1] UNIV TORONTO, DEPT BIOCHEM, TORONTO, ON M5S 1A8, CANADA
[2] TORONTO GEN HOSP, DEPT CLIN BIOCHEM, TORONTO, ON M5G 2C4, CANADA
来源
AMERICAN JOURNAL OF PHYSIOLOGY-RENAL FLUID AND ELECTROLYTE PHYSIOLOGY | 1995年 / 269卷 / 01期
关键词
NEPHROTOXICITY; PHOTOLABELING; MULTIDRUG-RESISTANT CELLS; IMMUNOSUPPRESSION; HUMAN KIDNEY BRUSH-BORDER MEMBRANE;
D O I
10.1152/ajprenal.1995.269.1.F31
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Interactions of P-glycoprotein with several analogues and metabolites of cyclosporin A were studied to gain a better understanding of this immunosuppressant's mechanism of excretion and nephrotoxicity. Incorporation of [H-3]azidopine into human renal P-glycoprotein in the presence of various concentrations of different cyclosporins was quantitated. Competitive [H-3]azidopine photolabeling and H-3 drug transport assays of CH(R)C5 multidrug-resistant cells were also conducted to evaluate effects of cyclosporins on P-glycoprotein function. Cyclosporins A [half-maximal inhibition constant (K-0.5) = 20 nM] and G (K-0.5 = 40 nM) blocked [H-3]azidopine photolabeling of renal P-glycoprotein at very low concentrations, whereas higher concentrations of cyclosporin C (K-0.5 = 500 nM) and metabolites 1, 17, and 21 (K-0.5 = 200 nM) were required to inhibit photolabeling. Metabolites H and 8 were ineffective in inhibition of [H-3]azidopine photolabeling of human renal P-glycoprotein. Similarly, cyclosporins A, C, and G were the best inhibitors of [H-3]azidopine photolabeling of P-glycoprotein in multidrug-resistant C5 cells; the various metabolites were less effective. Cyclosporins A, C, and G also enhanced cellular accumulation of [H-3]cyclosporin A and several other H-3-labeled compounds known to be transported by P-glycoprotein in multidrug-resistant C5 cells. Differential affinities of cyclosporin A metabolites for P-glycoprotein suggest considerable drug-binding site specificity. Our current hypothesis is that cyclosporin A may be more nephrotoxic than its metabolites by virtue of its superior ability to bind to and competitively inhibit urinary excretion of an endogenous P-glycoprotein substrate. Our findings provide the basis for future design and testing of new cyclosporin derivatives that have immunosuppressive activity yet may be less nephrotoxic because of their poor interaction with renal P-glycoprotein.
引用
收藏
页码:F31 / F39
页数:9
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