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Deuterium isotope effects in drug pharmacokinetics II: Substrate-dependence of the reaction mechanism influences outcome for cytochrome P450 cleared drugs

Two chemotypes were examined in vitro with CYPs 3A4 and 2C19 by molecular docking, metabolic profiles, and intrinsic clearance deuterium isotope effects with specifically deuterated form to assess the potential for enhancement of pharmacokinetic parameters. The results show the complexity of deutera...

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Autores principales: Sun, Hao, Piotrowski, David W., Orr, Suvi T. M., Warmus, Joseph S., Wolford, Angela C., Coffey, Steven B., Futatsugi, Kentaro, Zhang, Yinsheng, Vaz, Alfin D. N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6235261/
https://www.ncbi.nlm.nih.gov/pubmed/30427871
http://dx.doi.org/10.1371/journal.pone.0206279
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author Sun, Hao
Piotrowski, David W.
Orr, Suvi T. M.
Warmus, Joseph S.
Wolford, Angela C.
Coffey, Steven B.
Futatsugi, Kentaro
Zhang, Yinsheng
Vaz, Alfin D. N.
author_facet Sun, Hao
Piotrowski, David W.
Orr, Suvi T. M.
Warmus, Joseph S.
Wolford, Angela C.
Coffey, Steven B.
Futatsugi, Kentaro
Zhang, Yinsheng
Vaz, Alfin D. N.
author_sort Sun, Hao
collection PubMed
description Two chemotypes were examined in vitro with CYPs 3A4 and 2C19 by molecular docking, metabolic profiles, and intrinsic clearance deuterium isotope effects with specifically deuterated form to assess the potential for enhancement of pharmacokinetic parameters. The results show the complexity of deuteration as an approach for pharmacokinetic enhancement when CYP enzymes are involved in metabolic clearance. With CYP3A4 the rate limiting step was chemotype-dependent. With one chemotype no intrinsic clearance deuterium isotope effect was observed with any deuterated form, whereas with the other chemotype the rate limiting step was isotopically sensitive, and the magnitude of the intrinsic clearance isotope effect was dependent on the position(s) and extent of deuteration. Molecular docking and metabolic profiles aided in identifying sites for deuteration and predicted the possibility for metabolic switching. However, the potential for an isotope effect on the intrinsic clearance cannot be predicted and must be established by examining select deuterated versions of the chemotypes. The results show how in a deuteration strategy molecular docking, in-vitro metabolic profiles, and intrinsic clearance assessments with select deuterated versions of new chemical entities can be applied to determine the potential for pharmacokinetic enhancement in a discovery setting. They also help explain the substantial failures reported in the literature of deuterated versions of drugs to elicit a systemic enhancement on pharmacokinetic parameters.
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spelling pubmed-62352612018-12-01 Deuterium isotope effects in drug pharmacokinetics II: Substrate-dependence of the reaction mechanism influences outcome for cytochrome P450 cleared drugs Sun, Hao Piotrowski, David W. Orr, Suvi T. M. Warmus, Joseph S. Wolford, Angela C. Coffey, Steven B. Futatsugi, Kentaro Zhang, Yinsheng Vaz, Alfin D. N. PLoS One Research Article Two chemotypes were examined in vitro with CYPs 3A4 and 2C19 by molecular docking, metabolic profiles, and intrinsic clearance deuterium isotope effects with specifically deuterated form to assess the potential for enhancement of pharmacokinetic parameters. The results show the complexity of deuteration as an approach for pharmacokinetic enhancement when CYP enzymes are involved in metabolic clearance. With CYP3A4 the rate limiting step was chemotype-dependent. With one chemotype no intrinsic clearance deuterium isotope effect was observed with any deuterated form, whereas with the other chemotype the rate limiting step was isotopically sensitive, and the magnitude of the intrinsic clearance isotope effect was dependent on the position(s) and extent of deuteration. Molecular docking and metabolic profiles aided in identifying sites for deuteration and predicted the possibility for metabolic switching. However, the potential for an isotope effect on the intrinsic clearance cannot be predicted and must be established by examining select deuterated versions of the chemotypes. The results show how in a deuteration strategy molecular docking, in-vitro metabolic profiles, and intrinsic clearance assessments with select deuterated versions of new chemical entities can be applied to determine the potential for pharmacokinetic enhancement in a discovery setting. They also help explain the substantial failures reported in the literature of deuterated versions of drugs to elicit a systemic enhancement on pharmacokinetic parameters. Public Library of Science 2018-11-14 /pmc/articles/PMC6235261/ /pubmed/30427871 http://dx.doi.org/10.1371/journal.pone.0206279 Text en © 2018 Sun et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Sun, Hao
Piotrowski, David W.
Orr, Suvi T. M.
Warmus, Joseph S.
Wolford, Angela C.
Coffey, Steven B.
Futatsugi, Kentaro
Zhang, Yinsheng
Vaz, Alfin D. N.
Deuterium isotope effects in drug pharmacokinetics II: Substrate-dependence of the reaction mechanism influences outcome for cytochrome P450 cleared drugs
title Deuterium isotope effects in drug pharmacokinetics II: Substrate-dependence of the reaction mechanism influences outcome for cytochrome P450 cleared drugs
title_full Deuterium isotope effects in drug pharmacokinetics II: Substrate-dependence of the reaction mechanism influences outcome for cytochrome P450 cleared drugs
title_fullStr Deuterium isotope effects in drug pharmacokinetics II: Substrate-dependence of the reaction mechanism influences outcome for cytochrome P450 cleared drugs
title_full_unstemmed Deuterium isotope effects in drug pharmacokinetics II: Substrate-dependence of the reaction mechanism influences outcome for cytochrome P450 cleared drugs
title_short Deuterium isotope effects in drug pharmacokinetics II: Substrate-dependence of the reaction mechanism influences outcome for cytochrome P450 cleared drugs
title_sort deuterium isotope effects in drug pharmacokinetics ii: substrate-dependence of the reaction mechanism influences outcome for cytochrome p450 cleared drugs
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6235261/
https://www.ncbi.nlm.nih.gov/pubmed/30427871
http://dx.doi.org/10.1371/journal.pone.0206279
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