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Changes in Protonation Sites of 3-Styryl Derivatives of 7-(dialkylamino)-aza-coumarin Dyes Induced by Cucurbit[7]uril

The incorporation of a guest, with different basic sites, into an organized system (host), such as macrocycles, could stabilize, detect, or promote the formation of a certain protomer. In this context, this work aimed to study the influence of cucurbit[7]uril (CB7) on dyes such as 7-(dimethylamino)-...

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Autores principales: Alcázar, Jackson J., Márquez, Edgar, García-Río, Luis, Robles-Muñoz, Agustín, Fierro, Angélica, Santos, José G., Aliaga, Margarita E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9046931/
https://www.ncbi.nlm.nih.gov/pubmed/35494653
http://dx.doi.org/10.3389/fchem.2022.870137
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author Alcázar, Jackson J.
Márquez, Edgar
García-Río, Luis
Robles-Muñoz, Agustín
Fierro, Angélica
Santos, José G.
Aliaga, Margarita E.
author_facet Alcázar, Jackson J.
Márquez, Edgar
García-Río, Luis
Robles-Muñoz, Agustín
Fierro, Angélica
Santos, José G.
Aliaga, Margarita E.
author_sort Alcázar, Jackson J.
collection PubMed
description The incorporation of a guest, with different basic sites, into an organized system (host), such as macrocycles, could stabilize, detect, or promote the formation of a certain protomer. In this context, this work aimed to study the influence of cucurbit[7]uril (CB7) on dyes such as 7-(dimethylamino)-aza-coumarins, which have more than one basic site along their molecular structure. For this, three 3-styryl derivatives of 7-(dialkylamino)-aza-coumarin dyes (SAC1-3) were synthesized and characterized by NMR, ESI-HRMS and IR. The spectral behaviour of the SACs in the absence and presence of CB7 was studied. The results showed large shifts in the UV-vis spectrum in acid medium: a hypsochromic shift of ≈5400 cm(−1) (SAC1-2) and ≈3500 cm(−1) (SAC3) in the absence of CB7 and a bathochromic shift of ≈4500 cm(−1) (SAC1-3) in the presence of CB7. The new absorptions at long and short wavelengths were assigned to the corresponding protomers by computational calculations at the density functional theory (DFT) level. Additionally, the binding mode was corroborated by molecular dynamics simulations. Findings revealed that in the presence of CB7 the heterocyclic nitrogen was preferably protonated instead of the dialkylamino group. Namely, CB7 induces a change in the protonation preference at the basic sites of the SACs, as consequence of the molecular recognition by the macrocycle.
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spelling pubmed-90469312022-04-29 Changes in Protonation Sites of 3-Styryl Derivatives of 7-(dialkylamino)-aza-coumarin Dyes Induced by Cucurbit[7]uril Alcázar, Jackson J. Márquez, Edgar García-Río, Luis Robles-Muñoz, Agustín Fierro, Angélica Santos, José G. Aliaga, Margarita E. Front Chem Chemistry The incorporation of a guest, with different basic sites, into an organized system (host), such as macrocycles, could stabilize, detect, or promote the formation of a certain protomer. In this context, this work aimed to study the influence of cucurbit[7]uril (CB7) on dyes such as 7-(dimethylamino)-aza-coumarins, which have more than one basic site along their molecular structure. For this, three 3-styryl derivatives of 7-(dialkylamino)-aza-coumarin dyes (SAC1-3) were synthesized and characterized by NMR, ESI-HRMS and IR. The spectral behaviour of the SACs in the absence and presence of CB7 was studied. The results showed large shifts in the UV-vis spectrum in acid medium: a hypsochromic shift of ≈5400 cm(−1) (SAC1-2) and ≈3500 cm(−1) (SAC3) in the absence of CB7 and a bathochromic shift of ≈4500 cm(−1) (SAC1-3) in the presence of CB7. The new absorptions at long and short wavelengths were assigned to the corresponding protomers by computational calculations at the density functional theory (DFT) level. Additionally, the binding mode was corroborated by molecular dynamics simulations. Findings revealed that in the presence of CB7 the heterocyclic nitrogen was preferably protonated instead of the dialkylamino group. Namely, CB7 induces a change in the protonation preference at the basic sites of the SACs, as consequence of the molecular recognition by the macrocycle. Frontiers Media S.A. 2022-04-14 /pmc/articles/PMC9046931/ /pubmed/35494653 http://dx.doi.org/10.3389/fchem.2022.870137 Text en Copyright © 2022 Alcázar, Márquez, García-Río, Robles-Muñoz, Fierro, Santos and Aliaga. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Chemistry
Alcázar, Jackson J.
Márquez, Edgar
García-Río, Luis
Robles-Muñoz, Agustín
Fierro, Angélica
Santos, José G.
Aliaga, Margarita E.
Changes in Protonation Sites of 3-Styryl Derivatives of 7-(dialkylamino)-aza-coumarin Dyes Induced by Cucurbit[7]uril
title Changes in Protonation Sites of 3-Styryl Derivatives of 7-(dialkylamino)-aza-coumarin Dyes Induced by Cucurbit[7]uril
title_full Changes in Protonation Sites of 3-Styryl Derivatives of 7-(dialkylamino)-aza-coumarin Dyes Induced by Cucurbit[7]uril
title_fullStr Changes in Protonation Sites of 3-Styryl Derivatives of 7-(dialkylamino)-aza-coumarin Dyes Induced by Cucurbit[7]uril
title_full_unstemmed Changes in Protonation Sites of 3-Styryl Derivatives of 7-(dialkylamino)-aza-coumarin Dyes Induced by Cucurbit[7]uril
title_short Changes in Protonation Sites of 3-Styryl Derivatives of 7-(dialkylamino)-aza-coumarin Dyes Induced by Cucurbit[7]uril
title_sort changes in protonation sites of 3-styryl derivatives of 7-(dialkylamino)-aza-coumarin dyes induced by cucurbit[7]uril
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9046931/
https://www.ncbi.nlm.nih.gov/pubmed/35494653
http://dx.doi.org/10.3389/fchem.2022.870137
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