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Contribution of the organic anion transporter OAT2 to the renal active tubular secretion of creatinine and mechanism for serum creatinine elevations caused by cobicistat

Many xenobiotics including the pharmacoenhancer cobicistat increase serum creatinine by inhibiting its renal active tubular secretion without affecting the glomerular filtration rate. This study aimed to define the transporters involved in creatinine secretion, applying that knowledge to establish t...

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Autores principales: Lepist, Eve-Irene, Zhang, Xuexiang, Hao, Jia, Huang, Jane, Kosaka, Alan, Birkus, Gabriel, Murray, Bernard P, Bannister, Roy, Cihlar, Tomas, Huang, Yong, Ray, Adrian S
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4120670/
https://www.ncbi.nlm.nih.gov/pubmed/24646860
http://dx.doi.org/10.1038/ki.2014.66
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author Lepist, Eve-Irene
Zhang, Xuexiang
Hao, Jia
Huang, Jane
Kosaka, Alan
Birkus, Gabriel
Murray, Bernard P
Bannister, Roy
Cihlar, Tomas
Huang, Yong
Ray, Adrian S
author_facet Lepist, Eve-Irene
Zhang, Xuexiang
Hao, Jia
Huang, Jane
Kosaka, Alan
Birkus, Gabriel
Murray, Bernard P
Bannister, Roy
Cihlar, Tomas
Huang, Yong
Ray, Adrian S
author_sort Lepist, Eve-Irene
collection PubMed
description Many xenobiotics including the pharmacoenhancer cobicistat increase serum creatinine by inhibiting its renal active tubular secretion without affecting the glomerular filtration rate. This study aimed to define the transporters involved in creatinine secretion, applying that knowledge to establish the mechanism for xenobiotic-induced effects. The basolateral uptake transporters organic anion transporter OAT2 and organic cation transporters OCT2 and OCT3 were found to transport creatinine. At physiologic creatinine concentrations, the specific activity of OAT2 transport was over twofold higher than OCT2 or OCT3, establishing OAT2 as a likely relevant creatinine transporter and further challenging the traditional view that creatinine is solely transported by a cationic pathway. The apical multidrug and toxin extrusion transporters MATE1 and MATE2-K demonstrated low-affinity and high-capacity transport. All drugs known to affect creatinine inhibited OCT2 and MATE1. Similar to cimetidine and ritonavir, cobicistat had the greatest effect on MATE1 with a 50% inhibition constant of 0.99 μM for creatinine transport. Trimethoprim potently inhibited MATE2-K, whereas dolutegravir preferentially inhibited OCT2. Cimetidine was unique, inhibiting all transporters that interact with creatinine. Thus, the clinical observation of elevated serum creatinine in patients taking cobicistat is likely a result of OCT2 transport, facilitating intracellular accumulation, and MATE1 inhibition.
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spelling pubmed-41206702014-08-15 Contribution of the organic anion transporter OAT2 to the renal active tubular secretion of creatinine and mechanism for serum creatinine elevations caused by cobicistat Lepist, Eve-Irene Zhang, Xuexiang Hao, Jia Huang, Jane Kosaka, Alan Birkus, Gabriel Murray, Bernard P Bannister, Roy Cihlar, Tomas Huang, Yong Ray, Adrian S Kidney Int Basic Research Many xenobiotics including the pharmacoenhancer cobicistat increase serum creatinine by inhibiting its renal active tubular secretion without affecting the glomerular filtration rate. This study aimed to define the transporters involved in creatinine secretion, applying that knowledge to establish the mechanism for xenobiotic-induced effects. The basolateral uptake transporters organic anion transporter OAT2 and organic cation transporters OCT2 and OCT3 were found to transport creatinine. At physiologic creatinine concentrations, the specific activity of OAT2 transport was over twofold higher than OCT2 or OCT3, establishing OAT2 as a likely relevant creatinine transporter and further challenging the traditional view that creatinine is solely transported by a cationic pathway. The apical multidrug and toxin extrusion transporters MATE1 and MATE2-K demonstrated low-affinity and high-capacity transport. All drugs known to affect creatinine inhibited OCT2 and MATE1. Similar to cimetidine and ritonavir, cobicistat had the greatest effect on MATE1 with a 50% inhibition constant of 0.99 μM for creatinine transport. Trimethoprim potently inhibited MATE2-K, whereas dolutegravir preferentially inhibited OCT2. Cimetidine was unique, inhibiting all transporters that interact with creatinine. Thus, the clinical observation of elevated serum creatinine in patients taking cobicistat is likely a result of OCT2 transport, facilitating intracellular accumulation, and MATE1 inhibition. Nature Publishing Group 2014-08 2014-03-19 /pmc/articles/PMC4120670/ /pubmed/24646860 http://dx.doi.org/10.1038/ki.2014.66 Text en Copyright © 2014 International Society of Nephrology http://creativecommons.org/licenses/by-nc-nd/3.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0/
spellingShingle Basic Research
Lepist, Eve-Irene
Zhang, Xuexiang
Hao, Jia
Huang, Jane
Kosaka, Alan
Birkus, Gabriel
Murray, Bernard P
Bannister, Roy
Cihlar, Tomas
Huang, Yong
Ray, Adrian S
Contribution of the organic anion transporter OAT2 to the renal active tubular secretion of creatinine and mechanism for serum creatinine elevations caused by cobicistat
title Contribution of the organic anion transporter OAT2 to the renal active tubular secretion of creatinine and mechanism for serum creatinine elevations caused by cobicistat
title_full Contribution of the organic anion transporter OAT2 to the renal active tubular secretion of creatinine and mechanism for serum creatinine elevations caused by cobicistat
title_fullStr Contribution of the organic anion transporter OAT2 to the renal active tubular secretion of creatinine and mechanism for serum creatinine elevations caused by cobicistat
title_full_unstemmed Contribution of the organic anion transporter OAT2 to the renal active tubular secretion of creatinine and mechanism for serum creatinine elevations caused by cobicistat
title_short Contribution of the organic anion transporter OAT2 to the renal active tubular secretion of creatinine and mechanism for serum creatinine elevations caused by cobicistat
title_sort contribution of the organic anion transporter oat2 to the renal active tubular secretion of creatinine and mechanism for serum creatinine elevations caused by cobicistat
topic Basic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4120670/
https://www.ncbi.nlm.nih.gov/pubmed/24646860
http://dx.doi.org/10.1038/ki.2014.66
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