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Powerful Potential of Polyfluoroalkyl-Containing 4-Arylhydrazinylidenepyrazol-3-ones for Pharmaceuticals
4-Arylhydrazinylidene-5-(polyfluoroalkyl)pyrazol-3-ones (4-AHPs) were found to be obtained by the regiospecific cyclization of 2-arylhydrazinylidene-3-(polyfluoroalkyl)-3-oxoesters with hydrazines, by the azo coupling of 4-nonsubstituted pyrazol-5-oles with aryldiazonium chlorides or by the firstly...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9821843/ https://www.ncbi.nlm.nih.gov/pubmed/36615256 http://dx.doi.org/10.3390/molecules28010059 |
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author | Burgart, Yanina V. Elkina, Natalia A. Shchegolkov, Evgeny V. Krasnykh, Olga P. Makhaeva, Galina F. Triandafilova, Galina A. Solodnikov, Sergey Yu. Boltneva, Natalia P. Rudakova, Elena V. Kovaleva, Nadezhda V. Serebryakova, Olga G. Ulitko, Mariya V. Borisevich, Sophia S. Gerasimova, Natalia A. Evstigneeva, Natalia P. Kozlov, Sergey A. Korolkova, Yuliya V. Minin, Artem S. Belousova, Anna V. Mozhaitsev, Evgenii S. Klabukov, Artem M. Saloutin, Victor I. |
author_facet | Burgart, Yanina V. Elkina, Natalia A. Shchegolkov, Evgeny V. Krasnykh, Olga P. Makhaeva, Galina F. Triandafilova, Galina A. Solodnikov, Sergey Yu. Boltneva, Natalia P. Rudakova, Elena V. Kovaleva, Nadezhda V. Serebryakova, Olga G. Ulitko, Mariya V. Borisevich, Sophia S. Gerasimova, Natalia A. Evstigneeva, Natalia P. Kozlov, Sergey A. Korolkova, Yuliya V. Minin, Artem S. Belousova, Anna V. Mozhaitsev, Evgenii S. Klabukov, Artem M. Saloutin, Victor I. |
author_sort | Burgart, Yanina V. |
collection | PubMed |
description | 4-Arylhydrazinylidene-5-(polyfluoroalkyl)pyrazol-3-ones (4-AHPs) were found to be obtained by the regiospecific cyclization of 2-arylhydrazinylidene-3-(polyfluoroalkyl)-3-oxoesters with hydrazines, by the azo coupling of 4-nonsubstituted pyrazol-5-oles with aryldiazonium chlorides or by the firstly discovered acid-promoted self-condensation of 2-arylhydrazinylidene-3-oxoesters. All the 4-AHPs had an acceptable ADME profile. Varying the substituents in 4-AHPs promoted the switching or combining of their biological activity. The polyfluoroalkyl residue in 4-AHPs led to the appearance of an anticarboxylesterase action in the micromolar range. An NH-fragment and/or methyl group instead of the polyfluoroalkyl one in the 4-AHPs promoted antioxidant properties in the ABTS, FRAP and ORAC tests, as well as anti-cancer activity against HeLa that was at the Doxorubicin level coupled with lower cytotoxicity against normal human fibroblasts. Some Ph-N-substituted 4-AHPs could inhibit the growth of N. gonorrhoeae bacteria at MIC 0.9 μg/mL. The possibility of using 4-AHPs for cell visualization was shown. Most of the 4-AHPs exhibited a pronounced analgesic effect in a hot plate test in vivo at and above the diclofenac and metamizole levels except for the ones with two chlorine atoms in the aryl group. The methylsulfonyl residue was proved to raise the anti-inflammatory effect also. A mechanism of the antinociceptive action of the 4-AHPs through blocking the TRPV1 receptor was proposed and confirmed using in vitro experiment and molecular docking. |
format | Online Article Text |
id | pubmed-9821843 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-98218432023-01-07 Powerful Potential of Polyfluoroalkyl-Containing 4-Arylhydrazinylidenepyrazol-3-ones for Pharmaceuticals Burgart, Yanina V. Elkina, Natalia A. Shchegolkov, Evgeny V. Krasnykh, Olga P. Makhaeva, Galina F. Triandafilova, Galina A. Solodnikov, Sergey Yu. Boltneva, Natalia P. Rudakova, Elena V. Kovaleva, Nadezhda V. Serebryakova, Olga G. Ulitko, Mariya V. Borisevich, Sophia S. Gerasimova, Natalia A. Evstigneeva, Natalia P. Kozlov, Sergey A. Korolkova, Yuliya V. Minin, Artem S. Belousova, Anna V. Mozhaitsev, Evgenii S. Klabukov, Artem M. Saloutin, Victor I. Molecules Article 4-Arylhydrazinylidene-5-(polyfluoroalkyl)pyrazol-3-ones (4-AHPs) were found to be obtained by the regiospecific cyclization of 2-arylhydrazinylidene-3-(polyfluoroalkyl)-3-oxoesters with hydrazines, by the azo coupling of 4-nonsubstituted pyrazol-5-oles with aryldiazonium chlorides or by the firstly discovered acid-promoted self-condensation of 2-arylhydrazinylidene-3-oxoesters. All the 4-AHPs had an acceptable ADME profile. Varying the substituents in 4-AHPs promoted the switching or combining of their biological activity. The polyfluoroalkyl residue in 4-AHPs led to the appearance of an anticarboxylesterase action in the micromolar range. An NH-fragment and/or methyl group instead of the polyfluoroalkyl one in the 4-AHPs promoted antioxidant properties in the ABTS, FRAP and ORAC tests, as well as anti-cancer activity against HeLa that was at the Doxorubicin level coupled with lower cytotoxicity against normal human fibroblasts. Some Ph-N-substituted 4-AHPs could inhibit the growth of N. gonorrhoeae bacteria at MIC 0.9 μg/mL. The possibility of using 4-AHPs for cell visualization was shown. Most of the 4-AHPs exhibited a pronounced analgesic effect in a hot plate test in vivo at and above the diclofenac and metamizole levels except for the ones with two chlorine atoms in the aryl group. The methylsulfonyl residue was proved to raise the anti-inflammatory effect also. A mechanism of the antinociceptive action of the 4-AHPs through blocking the TRPV1 receptor was proposed and confirmed using in vitro experiment and molecular docking. MDPI 2022-12-21 /pmc/articles/PMC9821843/ /pubmed/36615256 http://dx.doi.org/10.3390/molecules28010059 Text en © 2022 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 Burgart, Yanina V. Elkina, Natalia A. Shchegolkov, Evgeny V. Krasnykh, Olga P. Makhaeva, Galina F. Triandafilova, Galina A. Solodnikov, Sergey Yu. Boltneva, Natalia P. Rudakova, Elena V. Kovaleva, Nadezhda V. Serebryakova, Olga G. Ulitko, Mariya V. Borisevich, Sophia S. Gerasimova, Natalia A. Evstigneeva, Natalia P. Kozlov, Sergey A. Korolkova, Yuliya V. Minin, Artem S. Belousova, Anna V. Mozhaitsev, Evgenii S. Klabukov, Artem M. Saloutin, Victor I. Powerful Potential of Polyfluoroalkyl-Containing 4-Arylhydrazinylidenepyrazol-3-ones for Pharmaceuticals |
title | Powerful Potential of Polyfluoroalkyl-Containing 4-Arylhydrazinylidenepyrazol-3-ones for Pharmaceuticals |
title_full | Powerful Potential of Polyfluoroalkyl-Containing 4-Arylhydrazinylidenepyrazol-3-ones for Pharmaceuticals |
title_fullStr | Powerful Potential of Polyfluoroalkyl-Containing 4-Arylhydrazinylidenepyrazol-3-ones for Pharmaceuticals |
title_full_unstemmed | Powerful Potential of Polyfluoroalkyl-Containing 4-Arylhydrazinylidenepyrazol-3-ones for Pharmaceuticals |
title_short | Powerful Potential of Polyfluoroalkyl-Containing 4-Arylhydrazinylidenepyrazol-3-ones for Pharmaceuticals |
title_sort | powerful potential of polyfluoroalkyl-containing 4-arylhydrazinylidenepyrazol-3-ones for pharmaceuticals |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9821843/ https://www.ncbi.nlm.nih.gov/pubmed/36615256 http://dx.doi.org/10.3390/molecules28010059 |
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