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4-Dialkylamino-2,5-dihydroimidazol-1-oxyls with Functional Groups at the Position 2 and at the Exocyclic Nitrogen: The pH-Sensitive Spin Labels

Local acidity and electrostatic interactions are associated both with catalytic properties and the adsorption activity of various materials, and with the vital functions of biomolecules. The observation of acid–base equilibria in stable free radicals using EPR spectroscopy represents a convenient me...

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Autores principales: Trofimov, Dmitrii G., Glazachev, Yuri I., Gorodetsky, Artem A., Komarov, Denis A., Rybalova, Tatyana V., Kirilyuk, Igor A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8774874/
https://www.ncbi.nlm.nih.gov/pubmed/35049546
http://dx.doi.org/10.3390/gels8010011
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author Trofimov, Dmitrii G.
Glazachev, Yuri I.
Gorodetsky, Artem A.
Komarov, Denis A.
Rybalova, Tatyana V.
Kirilyuk, Igor A.
author_facet Trofimov, Dmitrii G.
Glazachev, Yuri I.
Gorodetsky, Artem A.
Komarov, Denis A.
Rybalova, Tatyana V.
Kirilyuk, Igor A.
author_sort Trofimov, Dmitrii G.
collection PubMed
description Local acidity and electrostatic interactions are associated both with catalytic properties and the adsorption activity of various materials, and with the vital functions of biomolecules. The observation of acid–base equilibria in stable free radicals using EPR spectroscopy represents a convenient method for monitoring pH changes and the investigation of surface electrostatics, the advantages of which are especially evident in opaque and turbid samples and in porous materials such as xerogels. Imidazoline nitroxides are the most commonly used pH-sensitive spin probes and labels due to the high sensitivity of the parameters of the EPR spectra to pH changes, their small size, and their well-developed chemistry. In this work, several new derivatives of 4-(N,N-dialkylamino)-2,5-dihydrioimidazol-1-oxyl, with functional groups suitable for specific binding, were synthesized. The dependence of the parameters of their EPR spectra on pH was studied. Several showed a pK(a) close to 7.4, following the pH changes in a normal physiological range, and some demonstrated a monotonous change of the hyperfine coupling constant by 0.14 mT upon pH variation by four units.
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spelling pubmed-87748742022-01-21 4-Dialkylamino-2,5-dihydroimidazol-1-oxyls with Functional Groups at the Position 2 and at the Exocyclic Nitrogen: The pH-Sensitive Spin Labels Trofimov, Dmitrii G. Glazachev, Yuri I. Gorodetsky, Artem A. Komarov, Denis A. Rybalova, Tatyana V. Kirilyuk, Igor A. Gels Article Local acidity and electrostatic interactions are associated both with catalytic properties and the adsorption activity of various materials, and with the vital functions of biomolecules. The observation of acid–base equilibria in stable free radicals using EPR spectroscopy represents a convenient method for monitoring pH changes and the investigation of surface electrostatics, the advantages of which are especially evident in opaque and turbid samples and in porous materials such as xerogels. Imidazoline nitroxides are the most commonly used pH-sensitive spin probes and labels due to the high sensitivity of the parameters of the EPR spectra to pH changes, their small size, and their well-developed chemistry. In this work, several new derivatives of 4-(N,N-dialkylamino)-2,5-dihydrioimidazol-1-oxyl, with functional groups suitable for specific binding, were synthesized. The dependence of the parameters of their EPR spectra on pH was studied. Several showed a pK(a) close to 7.4, following the pH changes in a normal physiological range, and some demonstrated a monotonous change of the hyperfine coupling constant by 0.14 mT upon pH variation by four units. MDPI 2021-12-23 /pmc/articles/PMC8774874/ /pubmed/35049546 http://dx.doi.org/10.3390/gels8010011 Text en © 2021 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
Trofimov, Dmitrii G.
Glazachev, Yuri I.
Gorodetsky, Artem A.
Komarov, Denis A.
Rybalova, Tatyana V.
Kirilyuk, Igor A.
4-Dialkylamino-2,5-dihydroimidazol-1-oxyls with Functional Groups at the Position 2 and at the Exocyclic Nitrogen: The pH-Sensitive Spin Labels
title 4-Dialkylamino-2,5-dihydroimidazol-1-oxyls with Functional Groups at the Position 2 and at the Exocyclic Nitrogen: The pH-Sensitive Spin Labels
title_full 4-Dialkylamino-2,5-dihydroimidazol-1-oxyls with Functional Groups at the Position 2 and at the Exocyclic Nitrogen: The pH-Sensitive Spin Labels
title_fullStr 4-Dialkylamino-2,5-dihydroimidazol-1-oxyls with Functional Groups at the Position 2 and at the Exocyclic Nitrogen: The pH-Sensitive Spin Labels
title_full_unstemmed 4-Dialkylamino-2,5-dihydroimidazol-1-oxyls with Functional Groups at the Position 2 and at the Exocyclic Nitrogen: The pH-Sensitive Spin Labels
title_short 4-Dialkylamino-2,5-dihydroimidazol-1-oxyls with Functional Groups at the Position 2 and at the Exocyclic Nitrogen: The pH-Sensitive Spin Labels
title_sort 4-dialkylamino-2,5-dihydroimidazol-1-oxyls with functional groups at the position 2 and at the exocyclic nitrogen: the ph-sensitive spin labels
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8774874/
https://www.ncbi.nlm.nih.gov/pubmed/35049546
http://dx.doi.org/10.3390/gels8010011
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