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A Comprehensive Analysis of Ontogeny of Renal Drug Transporters: mRNA Analyses, Quantitative Proteomics, and Localization

Human renal membrane transporters play key roles in the disposition of renally cleared drugs and endogenous substrates, but their ontogeny is largely unknown. Using 184 human postmortem frozen renal cortical tissues (preterm newborns to adults) and a subset of 62 tissue samples, we measured the mRNA...

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Autores principales: Cheung, Kit Wun Kathy, van Groen, Bianca D., Spaans, Edwin, van Borselen, Marjolein D., de Bruijn, Adrianus C.J.M., Simons‐Oosterhuis, Ytje, Tibboel, Dick, Samsom, Janneke N., Verdijk, Robert M., Smeets, Bart, Zhang, Lei, Huang, Shiew‐Mei, Giacomini, Kathleen M., de Wildt, Saskia N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6777991/
https://www.ncbi.nlm.nih.gov/pubmed/31127606
http://dx.doi.org/10.1002/cpt.1516
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author Cheung, Kit Wun Kathy
van Groen, Bianca D.
Spaans, Edwin
van Borselen, Marjolein D.
de Bruijn, Adrianus C.J.M.
Simons‐Oosterhuis, Ytje
Tibboel, Dick
Samsom, Janneke N.
Verdijk, Robert M.
Smeets, Bart
Zhang, Lei
Huang, Shiew‐Mei
Giacomini, Kathleen M.
de Wildt, Saskia N.
author_facet Cheung, Kit Wun Kathy
van Groen, Bianca D.
Spaans, Edwin
van Borselen, Marjolein D.
de Bruijn, Adrianus C.J.M.
Simons‐Oosterhuis, Ytje
Tibboel, Dick
Samsom, Janneke N.
Verdijk, Robert M.
Smeets, Bart
Zhang, Lei
Huang, Shiew‐Mei
Giacomini, Kathleen M.
de Wildt, Saskia N.
author_sort Cheung, Kit Wun Kathy
collection PubMed
description Human renal membrane transporters play key roles in the disposition of renally cleared drugs and endogenous substrates, but their ontogeny is largely unknown. Using 184 human postmortem frozen renal cortical tissues (preterm newborns to adults) and a subset of 62 tissue samples, we measured the mRNA levels of 11 renal transporters and the transcription factor pregnane X receptor (PXR) with quantitative real‐time polymerase chain reaction, and protein abundance of nine transporters using liquid chromatography tandem mass spectrometry selective reaction monitoring, respectively. Expression levels of p‐glycoprotein, urate transporter 1, organic anion transporter 1, organic anion transporter 3, and organic cation transporter 2 increased with age. Protein levels of multidrug and toxin extrusion transporter 2‐K and breast cancer resistance protein showed no difference from newborns to adults, despite age‐related changes in mRNA expression. Multidrug and toxin extrusion transporter 1, glucose transporter 2, multidrug resistance‐associated protein 2, multidrug resistance‐associated protein 4 (MRP4), and PXR expression levels were stable. Using immunohistochemistry, we found that MRP4 localization in pediatric samples was similar to that in adult samples. Collectively, our study revealed that renal drug transporters exhibited different rates and patterns of maturation, suggesting that renal handling of substrates may change with age.
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spelling pubmed-67779912019-12-12 A Comprehensive Analysis of Ontogeny of Renal Drug Transporters: mRNA Analyses, Quantitative Proteomics, and Localization Cheung, Kit Wun Kathy van Groen, Bianca D. Spaans, Edwin van Borselen, Marjolein D. de Bruijn, Adrianus C.J.M. Simons‐Oosterhuis, Ytje Tibboel, Dick Samsom, Janneke N. Verdijk, Robert M. Smeets, Bart Zhang, Lei Huang, Shiew‐Mei Giacomini, Kathleen M. de Wildt, Saskia N. Clin Pharmacol Ther Research Human renal membrane transporters play key roles in the disposition of renally cleared drugs and endogenous substrates, but their ontogeny is largely unknown. Using 184 human postmortem frozen renal cortical tissues (preterm newborns to adults) and a subset of 62 tissue samples, we measured the mRNA levels of 11 renal transporters and the transcription factor pregnane X receptor (PXR) with quantitative real‐time polymerase chain reaction, and protein abundance of nine transporters using liquid chromatography tandem mass spectrometry selective reaction monitoring, respectively. Expression levels of p‐glycoprotein, urate transporter 1, organic anion transporter 1, organic anion transporter 3, and organic cation transporter 2 increased with age. Protein levels of multidrug and toxin extrusion transporter 2‐K and breast cancer resistance protein showed no difference from newborns to adults, despite age‐related changes in mRNA expression. Multidrug and toxin extrusion transporter 1, glucose transporter 2, multidrug resistance‐associated protein 2, multidrug resistance‐associated protein 4 (MRP4), and PXR expression levels were stable. Using immunohistochemistry, we found that MRP4 localization in pediatric samples was similar to that in adult samples. Collectively, our study revealed that renal drug transporters exhibited different rates and patterns of maturation, suggesting that renal handling of substrates may change with age. John Wiley and Sons Inc. 2019-07-03 2019-11 /pmc/articles/PMC6777991/ /pubmed/31127606 http://dx.doi.org/10.1002/cpt.1516 Text en © 2019 The Authors Clinical Pharmacology & Therapeutics published by Wiley Periodicals, Inc. on behalf of American Society for Clinical Pharmacology and Therapeutics This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research
Cheung, Kit Wun Kathy
van Groen, Bianca D.
Spaans, Edwin
van Borselen, Marjolein D.
de Bruijn, Adrianus C.J.M.
Simons‐Oosterhuis, Ytje
Tibboel, Dick
Samsom, Janneke N.
Verdijk, Robert M.
Smeets, Bart
Zhang, Lei
Huang, Shiew‐Mei
Giacomini, Kathleen M.
de Wildt, Saskia N.
A Comprehensive Analysis of Ontogeny of Renal Drug Transporters: mRNA Analyses, Quantitative Proteomics, and Localization
title A Comprehensive Analysis of Ontogeny of Renal Drug Transporters: mRNA Analyses, Quantitative Proteomics, and Localization
title_full A Comprehensive Analysis of Ontogeny of Renal Drug Transporters: mRNA Analyses, Quantitative Proteomics, and Localization
title_fullStr A Comprehensive Analysis of Ontogeny of Renal Drug Transporters: mRNA Analyses, Quantitative Proteomics, and Localization
title_full_unstemmed A Comprehensive Analysis of Ontogeny of Renal Drug Transporters: mRNA Analyses, Quantitative Proteomics, and Localization
title_short A Comprehensive Analysis of Ontogeny of Renal Drug Transporters: mRNA Analyses, Quantitative Proteomics, and Localization
title_sort comprehensive analysis of ontogeny of renal drug transporters: mrna analyses, quantitative proteomics, and localization
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6777991/
https://www.ncbi.nlm.nih.gov/pubmed/31127606
http://dx.doi.org/10.1002/cpt.1516
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