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Substrates of the Human Brain Proton-Organic Cation Antiporter and Comparison with Organic Cation Transporter 1 Activities

Many organic cations (OCs) may be transported through membranes by a genetically still uncharacterized proton-organic cation (H + OC) antiporter. Here, we characterized an extended substrate spectrum of this antiporter. We studied the uptake of 72 drugs in hCMEC/D3 cells as a model of the human bloo...

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Autores principales: Doetsch, David A., Ansari, Salim, Jensen, Ole, Gebauer, Lukas, Dücker, Christof, Brockmöller, Jürgen, Sachkova, Alexandra
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9369162/
https://www.ncbi.nlm.nih.gov/pubmed/35955563
http://dx.doi.org/10.3390/ijms23158430
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author Doetsch, David A.
Ansari, Salim
Jensen, Ole
Gebauer, Lukas
Dücker, Christof
Brockmöller, Jürgen
Sachkova, Alexandra
author_facet Doetsch, David A.
Ansari, Salim
Jensen, Ole
Gebauer, Lukas
Dücker, Christof
Brockmöller, Jürgen
Sachkova, Alexandra
author_sort Doetsch, David A.
collection PubMed
description Many organic cations (OCs) may be transported through membranes by a genetically still uncharacterized proton-organic cation (H + OC) antiporter. Here, we characterized an extended substrate spectrum of this antiporter. We studied the uptake of 72 drugs in hCMEC/D3 cells as a model of the human blood–brain barrier. All 72 drugs were tested with exchange transport assays and the transport of 26 of the drugs was studied in more detail concerning concentration-dependent uptake and susceptibility to specific inhibitors. According to exchange transport assays, 37 (51%) drugs were good substrates of the H + OC antiporter. From 26 drugs characterized in more detail, 23 were consistently identified as substrates of the H + OC antiporter in six different assays and transport kinetic constants could be identified with intrinsic clearances between 0.2 (ephedrine) and 201 (imipramine) mL × minute(−1) × g protein(−1). Excellent substrates of the H + OC antiporter were no substrates of organic cation transporter OCT1 and vice versa. Good substrates of the H + OC antiporter were more hydrophobic and had a lower topological polar surface area than non-substrates or OCT1 substrates. These data and further research on the H + OC antiporter may result in a better understanding of pharmacokinetics, drug–drug interactions and variations in pharmacokinetics.
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spelling pubmed-93691622022-08-12 Substrates of the Human Brain Proton-Organic Cation Antiporter and Comparison with Organic Cation Transporter 1 Activities Doetsch, David A. Ansari, Salim Jensen, Ole Gebauer, Lukas Dücker, Christof Brockmöller, Jürgen Sachkova, Alexandra Int J Mol Sci Article Many organic cations (OCs) may be transported through membranes by a genetically still uncharacterized proton-organic cation (H + OC) antiporter. Here, we characterized an extended substrate spectrum of this antiporter. We studied the uptake of 72 drugs in hCMEC/D3 cells as a model of the human blood–brain barrier. All 72 drugs were tested with exchange transport assays and the transport of 26 of the drugs was studied in more detail concerning concentration-dependent uptake and susceptibility to specific inhibitors. According to exchange transport assays, 37 (51%) drugs were good substrates of the H + OC antiporter. From 26 drugs characterized in more detail, 23 were consistently identified as substrates of the H + OC antiporter in six different assays and transport kinetic constants could be identified with intrinsic clearances between 0.2 (ephedrine) and 201 (imipramine) mL × minute(−1) × g protein(−1). Excellent substrates of the H + OC antiporter were no substrates of organic cation transporter OCT1 and vice versa. Good substrates of the H + OC antiporter were more hydrophobic and had a lower topological polar surface area than non-substrates or OCT1 substrates. These data and further research on the H + OC antiporter may result in a better understanding of pharmacokinetics, drug–drug interactions and variations in pharmacokinetics. MDPI 2022-07-29 /pmc/articles/PMC9369162/ /pubmed/35955563 http://dx.doi.org/10.3390/ijms23158430 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Doetsch, David A.
Ansari, Salim
Jensen, Ole
Gebauer, Lukas
Dücker, Christof
Brockmöller, Jürgen
Sachkova, Alexandra
Substrates of the Human Brain Proton-Organic Cation Antiporter and Comparison with Organic Cation Transporter 1 Activities
title Substrates of the Human Brain Proton-Organic Cation Antiporter and Comparison with Organic Cation Transporter 1 Activities
title_full Substrates of the Human Brain Proton-Organic Cation Antiporter and Comparison with Organic Cation Transporter 1 Activities
title_fullStr Substrates of the Human Brain Proton-Organic Cation Antiporter and Comparison with Organic Cation Transporter 1 Activities
title_full_unstemmed Substrates of the Human Brain Proton-Organic Cation Antiporter and Comparison with Organic Cation Transporter 1 Activities
title_short Substrates of the Human Brain Proton-Organic Cation Antiporter and Comparison with Organic Cation Transporter 1 Activities
title_sort substrates of the human brain proton-organic cation antiporter and comparison with organic cation transporter 1 activities
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9369162/
https://www.ncbi.nlm.nih.gov/pubmed/35955563
http://dx.doi.org/10.3390/ijms23158430
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