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Estimation of the octanol-water distribution coefficient of basic compounds by a cationic microemulsion electrokinetic chromatography system

The octanol-water partition coefficient (P(o/w)), or the octanol-water distribution coefficient (D(o/w)) for ionized compounds, is a key parameter in the drug development process. In a previous work, this parameter was estimated through the retention factor measurements in a sodium dodecyl sulfate (...

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Autores principales: Fernández-Pumarega, Alejandro, Martín-Sanz, Belén, Amézqueta, Susana, Fuguet, Elisabet, Rosés, Martí
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Association of Physical Chemists 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8915598/
https://www.ncbi.nlm.nih.gov/pubmed/35299774
http://dx.doi.org/10.5599/admet.760
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author Fernández-Pumarega, Alejandro
Martín-Sanz, Belén
Amézqueta, Susana
Fuguet, Elisabet
Rosés, Martí
author_facet Fernández-Pumarega, Alejandro
Martín-Sanz, Belén
Amézqueta, Susana
Fuguet, Elisabet
Rosés, Martí
author_sort Fernández-Pumarega, Alejandro
collection PubMed
description The octanol-water partition coefficient (P(o/w)), or the octanol-water distribution coefficient (D(o/w)) for ionized compounds, is a key parameter in the drug development process. In a previous work, this parameter was estimated through the retention factor measurements in a sodium dodecyl sulfate (SDS) - microemulsion electrokinetic chromatography (MEEKC) system for acidic compounds. Nonetheless, when ionized basic compounds were analyzed, undesirable ion pairs were formed with the anionic surfactant and avoided a good estimation of log D(o/w). For this reason, an alternative MEEKC system based on a cationic surfactant has been evaluated to estimate P(o/w) or D(o/w) of neutral compounds and ionized bases. To this end, it has been characterized through the solvation parameter model (SPM) and compared to the octanol-water partition system. Results pointed out that both systems show a similar partition behavior. Hence, the log P(o/w) of a set of neutral compounds has been successfully correlated against the logarithm of the retention factor (log k) determined in this MEEKC system. Then, the log D(o/w) of 6 model bases have been estimated at different pH values and they have been compared to data from the literature, determined by the reference shake-flask and potentiometric methods. Good agreement has been observed between the literature and the estimated values when the base is neutral or partially ionized (up to 99% of ionization).
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spelling pubmed-89155982022-03-16 Estimation of the octanol-water distribution coefficient of basic compounds by a cationic microemulsion electrokinetic chromatography system Fernández-Pumarega, Alejandro Martín-Sanz, Belén Amézqueta, Susana Fuguet, Elisabet Rosés, Martí ADMET DMPK Original Scientific Papers The octanol-water partition coefficient (P(o/w)), or the octanol-water distribution coefficient (D(o/w)) for ionized compounds, is a key parameter in the drug development process. In a previous work, this parameter was estimated through the retention factor measurements in a sodium dodecyl sulfate (SDS) - microemulsion electrokinetic chromatography (MEEKC) system for acidic compounds. Nonetheless, when ionized basic compounds were analyzed, undesirable ion pairs were formed with the anionic surfactant and avoided a good estimation of log D(o/w). For this reason, an alternative MEEKC system based on a cationic surfactant has been evaluated to estimate P(o/w) or D(o/w) of neutral compounds and ionized bases. To this end, it has been characterized through the solvation parameter model (SPM) and compared to the octanol-water partition system. Results pointed out that both systems show a similar partition behavior. Hence, the log P(o/w) of a set of neutral compounds has been successfully correlated against the logarithm of the retention factor (log k) determined in this MEEKC system. Then, the log D(o/w) of 6 model bases have been estimated at different pH values and they have been compared to data from the literature, determined by the reference shake-flask and potentiometric methods. Good agreement has been observed between the literature and the estimated values when the base is neutral or partially ionized (up to 99% of ionization). International Association of Physical Chemists 2020-03-04 /pmc/articles/PMC8915598/ /pubmed/35299774 http://dx.doi.org/10.5599/admet.760 Text en Copyright © 2020 by the authors. https://creativecommons.org/licenses/by/4.0/This article is an open-access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle Original Scientific Papers
Fernández-Pumarega, Alejandro
Martín-Sanz, Belén
Amézqueta, Susana
Fuguet, Elisabet
Rosés, Martí
Estimation of the octanol-water distribution coefficient of basic compounds by a cationic microemulsion electrokinetic chromatography system
title Estimation of the octanol-water distribution coefficient of basic compounds by a cationic microemulsion electrokinetic chromatography system
title_full Estimation of the octanol-water distribution coefficient of basic compounds by a cationic microemulsion electrokinetic chromatography system
title_fullStr Estimation of the octanol-water distribution coefficient of basic compounds by a cationic microemulsion electrokinetic chromatography system
title_full_unstemmed Estimation of the octanol-water distribution coefficient of basic compounds by a cationic microemulsion electrokinetic chromatography system
title_short Estimation of the octanol-water distribution coefficient of basic compounds by a cationic microemulsion electrokinetic chromatography system
title_sort estimation of the octanol-water distribution coefficient of basic compounds by a cationic microemulsion electrokinetic chromatography system
topic Original Scientific Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8915598/
https://www.ncbi.nlm.nih.gov/pubmed/35299774
http://dx.doi.org/10.5599/admet.760
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