Cargando…

A new efficient domino approach for the synthesis of pyrazolyl-phthalazine-diones. Antiradical activity of novel phenolic products

Pyrazolyl-phthalazine-dione derivatives (PPDs) were synthetized in the ionic liquid catalyzed one-pot multicomponent reaction of acetylacetone, 2,3-dihydrophthalazine-1,4-dione, and different aldehydes in moderate to good yields. Six new PPDs were obtained, and the crystal structure of 2-acetyl-1-(4...

Descripción completa

Detalles Bibliográficos
Autores principales: Simijonović, Dušica, Petrović, Zorica D., Milovanović, Vesna M., Petrović, Vladimir P., Bogdanović, Goran A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9080326/
https://www.ncbi.nlm.nih.gov/pubmed/35540516
http://dx.doi.org/10.1039/c8ra02702a
_version_ 1784702759595933696
author Simijonović, Dušica
Petrović, Zorica D.
Milovanović, Vesna M.
Petrović, Vladimir P.
Bogdanović, Goran A.
author_facet Simijonović, Dušica
Petrović, Zorica D.
Milovanović, Vesna M.
Petrović, Vladimir P.
Bogdanović, Goran A.
author_sort Simijonović, Dušica
collection PubMed
description Pyrazolyl-phthalazine-dione derivatives (PPDs) were synthetized in the ionic liquid catalyzed one-pot multicomponent reaction of acetylacetone, 2,3-dihydrophthalazine-1,4-dione, and different aldehydes in moderate to good yields. Six new PPDs were obtained, and the crystal structure of 2-acetyl-1-(4-fluorophenyl)-3-methyl-1H-pyrazolo[1,2-b]phthalazine-5,10-dione (PPD-4) was determined. The most interesting structural features of the novel PPD-4 is the formation of a rather short intermolecular distance between the F atom of one molecule and the midpoint of the neighbouring six-membered heterocyclic ring. This interaction arranges all molecules into parallel supramolecular chains. UV-Vis spectra of all PPDs were acquired and compared to the simulated ones obtained with TD-DFT. All synthetized compounds were subjected to evaluation of their in vitro antioxidative activity using a stable DPPH radical. It was shown that PPD-7, with a catechol motive, is the most active antioxidant, while PPD-9, with two neighbouring methoxy groups to the phenolic OH, exerted a somewhat lower, but significant antioxidative potential. The results of DFT thermodynamical study are in agreement with experimental findings that PPD-7 and PPD-9 should be considered as powerful radical scavengers. In addition, the obtained theoretical results (bond dissociation and proton abstraction energies) specify SPLET as a prevailing radical scavenging mechanism in polar solvents, and HAT in solvents with lower polarity. On the other hand, the obtained reaction enthalpies for inactivation of free radicals suggest competition between HAT and SPLET mechanisms, except in the case of the ˙OH radical in polar solvents, where HAT is labeled as prefered.
format Online
Article
Text
id pubmed-9080326
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-90803262022-05-09 A new efficient domino approach for the synthesis of pyrazolyl-phthalazine-diones. Antiradical activity of novel phenolic products Simijonović, Dušica Petrović, Zorica D. Milovanović, Vesna M. Petrović, Vladimir P. Bogdanović, Goran A. RSC Adv Chemistry Pyrazolyl-phthalazine-dione derivatives (PPDs) were synthetized in the ionic liquid catalyzed one-pot multicomponent reaction of acetylacetone, 2,3-dihydrophthalazine-1,4-dione, and different aldehydes in moderate to good yields. Six new PPDs were obtained, and the crystal structure of 2-acetyl-1-(4-fluorophenyl)-3-methyl-1H-pyrazolo[1,2-b]phthalazine-5,10-dione (PPD-4) was determined. The most interesting structural features of the novel PPD-4 is the formation of a rather short intermolecular distance between the F atom of one molecule and the midpoint of the neighbouring six-membered heterocyclic ring. This interaction arranges all molecules into parallel supramolecular chains. UV-Vis spectra of all PPDs were acquired and compared to the simulated ones obtained with TD-DFT. All synthetized compounds were subjected to evaluation of their in vitro antioxidative activity using a stable DPPH radical. It was shown that PPD-7, with a catechol motive, is the most active antioxidant, while PPD-9, with two neighbouring methoxy groups to the phenolic OH, exerted a somewhat lower, but significant antioxidative potential. The results of DFT thermodynamical study are in agreement with experimental findings that PPD-7 and PPD-9 should be considered as powerful radical scavengers. In addition, the obtained theoretical results (bond dissociation and proton abstraction energies) specify SPLET as a prevailing radical scavenging mechanism in polar solvents, and HAT in solvents with lower polarity. On the other hand, the obtained reaction enthalpies for inactivation of free radicals suggest competition between HAT and SPLET mechanisms, except in the case of the ˙OH radical in polar solvents, where HAT is labeled as prefered. The Royal Society of Chemistry 2018-05-04 /pmc/articles/PMC9080326/ /pubmed/35540516 http://dx.doi.org/10.1039/c8ra02702a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Simijonović, Dušica
Petrović, Zorica D.
Milovanović, Vesna M.
Petrović, Vladimir P.
Bogdanović, Goran A.
A new efficient domino approach for the synthesis of pyrazolyl-phthalazine-diones. Antiradical activity of novel phenolic products
title A new efficient domino approach for the synthesis of pyrazolyl-phthalazine-diones. Antiradical activity of novel phenolic products
title_full A new efficient domino approach for the synthesis of pyrazolyl-phthalazine-diones. Antiradical activity of novel phenolic products
title_fullStr A new efficient domino approach for the synthesis of pyrazolyl-phthalazine-diones. Antiradical activity of novel phenolic products
title_full_unstemmed A new efficient domino approach for the synthesis of pyrazolyl-phthalazine-diones. Antiradical activity of novel phenolic products
title_short A new efficient domino approach for the synthesis of pyrazolyl-phthalazine-diones. Antiradical activity of novel phenolic products
title_sort new efficient domino approach for the synthesis of pyrazolyl-phthalazine-diones. antiradical activity of novel phenolic products
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9080326/
https://www.ncbi.nlm.nih.gov/pubmed/35540516
http://dx.doi.org/10.1039/c8ra02702a
work_keys_str_mv AT simijonovicdusica anewefficientdominoapproachforthesynthesisofpyrazolylphthalazinedionesantiradicalactivityofnovelphenolicproducts
AT petroviczoricad anewefficientdominoapproachforthesynthesisofpyrazolylphthalazinedionesantiradicalactivityofnovelphenolicproducts
AT milovanovicvesnam anewefficientdominoapproachforthesynthesisofpyrazolylphthalazinedionesantiradicalactivityofnovelphenolicproducts
AT petrovicvladimirp anewefficientdominoapproachforthesynthesisofpyrazolylphthalazinedionesantiradicalactivityofnovelphenolicproducts
AT bogdanovicgorana anewefficientdominoapproachforthesynthesisofpyrazolylphthalazinedionesantiradicalactivityofnovelphenolicproducts
AT simijonovicdusica newefficientdominoapproachforthesynthesisofpyrazolylphthalazinedionesantiradicalactivityofnovelphenolicproducts
AT petroviczoricad newefficientdominoapproachforthesynthesisofpyrazolylphthalazinedionesantiradicalactivityofnovelphenolicproducts
AT milovanovicvesnam newefficientdominoapproachforthesynthesisofpyrazolylphthalazinedionesantiradicalactivityofnovelphenolicproducts
AT petrovicvladimirp newefficientdominoapproachforthesynthesisofpyrazolylphthalazinedionesantiradicalactivityofnovelphenolicproducts
AT bogdanovicgorana newefficientdominoapproachforthesynthesisofpyrazolylphthalazinedionesantiradicalactivityofnovelphenolicproducts