Literature DB >> 24692216

Aspirin and probenecid inhibit organic anion transporter 3-mediated renal uptake of cilostazol and probenecid induces metabolism of cilostazol in the rat.

Chong Wang1, Changyuan Wang, Qi Liu, Qiang Meng, Jian Cang, Huijun Sun, Jinyong Peng, Xiaochi Ma, Xiaokui Huo, Kexin Liu.   

Abstract

This study aimed to evaluate the transporter-mediated renal excretion mechanism for cilostazol and to characterize the mechanism of drug-drug interaction (DDI) between cilostazol and aspirin or probenecid. Concentrations of cilostazol and its metabolites OPC-13015 [6-[4-(1-cyclohexyl-1H-tetrazol-5-yl)butoxy]-2(1H)-quinolinone] and OPC-13213 [3,4-dihydro-6-[4-[1-(trans-4-hydroxycyclohexyl)-1H-tetrazol-5-yl]butoxy]-2-(1H)-quinolinone] in rat biologic or cell samples were measured by liquid chromatography-tandem mass spectrometry. Coadministration with probenecid, benzylpenicillin, or aspirin decreased the cumulative urinary excretion of cilostazol and renal clearance. Concentrations of cilostazol and OPC-13213 in plasma decreased, and the concentration of OPC-13015 increased in the presence of probenecid. By contrast, rat plasma cilostazol, in combination with benzylpenicillin or aspirin, sharply increased, and concentrations of OPC-13015 and OPC-13213 did not change. In urine, OPC-13015 was below the level of detection. The cumulative urinary excretion of OPC-13213 decreased in the presence of probenecid, benzylpenicillin, or aspirin. Cilostazol was distributed in the kidney and liver, with tissue to plasma partition coefficient (Kp) values of 8.4 ml/g and 16.3 ml/g, respectively. Probenecid and aspirin reduced cilostazol distribution in the kidney. Probenecid did not affect cilostazol metabolism in the kidney but increased cilostazol metabolism in the liver, and aspirin had no effect on cilostazol metabolism. Benzylpenicillin, aspirin, and cyclo-trans-4-l-hydroxyprolyl-l-serine (JBP485) reduced cilostazol uptake in kidney slices and human organic anion transporter 3 (hOAT3)-human embryonic kidney 293 (HEK293) cells, whereas p-aminohippuric acid did not. Compared with the vector, hOAT3-HEK293 cells accumulated more cilostazol, whereas hOAT1-HEK293 cells did not. OAT3 and Oat3 play a major role in cilostazol renal excretion, whereas OAT1 and Oat1 do not. Oat3 and Cyp3a are both targets of the DDI between cilostazol and probenecid. Aspirin inhibits OAT3-mediated uptake of cilostazol and does not influence cilostazol metabolism.

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Year:  2014        PMID: 24692216     DOI: 10.1124/dmd.113.055194

Source DB:  PubMed          Journal:  Drug Metab Dispos        ISSN: 0090-9556            Impact factor:   3.922


  7 in total

Review 1.  Renal Drug Transporters and Drug Interactions.

Authors:  Anton Ivanyuk; Françoise Livio; Jérôme Biollaz; Thierry Buclin
Journal:  Clin Pharmacokinet       Date:  2017-08       Impact factor: 6.447

2.  JBP485, A Dual Inhibitor of Organic Anion Transporters (OATs) and Renal Dehydropeptidase-I (DHP-I), Protects Against Imipenem-Induced Nephrotoxicity.

Authors:  Chong Wang; Changyuan Wang; Jingjing Wu; Qiang Meng; Huan Jin; Huijun Sun; Taiichi Kaku; Jing Chen; Xiaokui Huo; Kexin Liu
Journal:  Front Pharmacol       Date:  2022-06-08       Impact factor: 5.988

3.  Proteasome Inhibitors Bortezomib and Carfilzomib Stimulate the Transport Activity of Human Organic Anion Transporter 1.

Authors:  Yunzhou Fan; Guofeng You
Journal:  Mol Pharmacol       Date:  2020-03-31       Impact factor: 4.436

Review 4.  Genetic Heterogeneity of SLC22 Family of Transporters in Drug Disposition.

Authors:  Elisa Lozano; Oscar Briz; Rocio I R Macias; Maria A Serrano; Jose J G Marin; Elisa Herraez
Journal:  J Pers Med       Date:  2018-04-16

5.  Piperacillin enhances the inhibitory effect of tazobactam on β-lactamase through inhibition of organic anion transporter 1/3 in rats.

Authors:  Shilei Yang; Zhihao Liu; Changyuan Wang; Shijie Wen; Qiang Meng; Xiaokui Huo; Huijun Sun; Xiaodong Ma; Jinyong Peng; Zhonggui He; Kexin Liu
Journal:  Asian J Pharm Sci       Date:  2018-12-07       Impact factor: 6.598

6.  Oral Proteasomal Inhibitors Ixazomib, Oprozomib, and Delanzomib Upregulate the Function of Organic Anion Transporter 3 (OAT3): Implications in OAT3-Mediated Drug-Drug Interactions.

Authors:  Yunzhou Fan; Zhengxuan Liang; Jinghui Zhang; Guofeng You
Journal:  Pharmaceutics       Date:  2021-02-28       Impact factor: 6.321

7.  The Prescription of Drugs That Inhibit Organic Anion Transporters 1 or 3 Is Associated with the Plasma Accumulation of Uremic Toxins in Kidney Transplant Recipients.

Authors:  Camille André; Touria Mernissi; Gabriel Choukroun; Youssef Bennis; Saïd Kamel; Sophie Liabeuf; Sandra Bodeau
Journal:  Toxins (Basel)       Date:  2021-12-25       Impact factor: 4.546

  7 in total

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