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Modulation Effect on Tubulin Polymerization, Cytotoxicity and Antioxidant Activity of 1H-Benzimidazole-2-Yl Hydrazones

1H-benzimidazol-2-yl hydrazones with varying hydroxy and methoxy phenyl moieties were designed. Their effect on tubulin polymerization was evaluated in vitro on porcine tubulin. The compounds elongated the nucleation phase and slowed down the tubulin polymerization comparably to nocodazole. The poss...

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Autores principales: Argirova, Maria, Guncheva, Maya, Momekov, Georgi, Cherneva, Emiliya, Mihaylova, Rositsa, Rangelov, Miroslav, Todorova, Nadezhda, Denev, Petko, Anichina, Kameliya, Mavrova, Anelia, Yancheva, Denitsa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9822270/
https://www.ncbi.nlm.nih.gov/pubmed/36615483
http://dx.doi.org/10.3390/molecules28010291
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author Argirova, Maria
Guncheva, Maya
Momekov, Georgi
Cherneva, Emiliya
Mihaylova, Rositsa
Rangelov, Miroslav
Todorova, Nadezhda
Denev, Petko
Anichina, Kameliya
Mavrova, Anelia
Yancheva, Denitsa
author_facet Argirova, Maria
Guncheva, Maya
Momekov, Georgi
Cherneva, Emiliya
Mihaylova, Rositsa
Rangelov, Miroslav
Todorova, Nadezhda
Denev, Petko
Anichina, Kameliya
Mavrova, Anelia
Yancheva, Denitsa
author_sort Argirova, Maria
collection PubMed
description 1H-benzimidazol-2-yl hydrazones with varying hydroxy and methoxy phenyl moieties were designed. Their effect on tubulin polymerization was evaluated in vitro on porcine tubulin. The compounds elongated the nucleation phase and slowed down the tubulin polymerization comparably to nocodazole. The possible binding modes of the hydrazones with tubulin were explored by molecular docking at the colchicine binding site. The anticancer activity was evaluated against human malignant cell lines MCF-7 and AR-230, as well as against normal fibroblast cells 3T3 and CCL-1. The compounds demonstrated a marked antineoplastic activity in low micromolar concentrations in both screened in vitro tumor models. The most active were the trimethoxy substituted derivative 1i and the positional isomers 1j and 1k, containing hydroxy and methoxy substituents: they showed IC(50) similar to the reference podophyllotoxin in both tumor cell lines, accompanied with high selectivity towards the malignantly transformed cells. The compounds exerted moderate to high ability to scavenge peroxyl radicals and certain derivatives—1l containing metha-hydroxy and para-methoxy group, and 1b-e with di/trihydroxy phenyl moiety, revealed HORAC values high or comparable to those of well-known phenolic antioxidants. Thus the 1H-benisimidazol-2-yl hydrazones with hydroxy/methoxy phenyl fragments were recognized as new agents exhibiting promising combined antioxidant and antineoplastic action.
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spelling pubmed-98222702023-01-07 Modulation Effect on Tubulin Polymerization, Cytotoxicity and Antioxidant Activity of 1H-Benzimidazole-2-Yl Hydrazones Argirova, Maria Guncheva, Maya Momekov, Georgi Cherneva, Emiliya Mihaylova, Rositsa Rangelov, Miroslav Todorova, Nadezhda Denev, Petko Anichina, Kameliya Mavrova, Anelia Yancheva, Denitsa Molecules Article 1H-benzimidazol-2-yl hydrazones with varying hydroxy and methoxy phenyl moieties were designed. Their effect on tubulin polymerization was evaluated in vitro on porcine tubulin. The compounds elongated the nucleation phase and slowed down the tubulin polymerization comparably to nocodazole. The possible binding modes of the hydrazones with tubulin were explored by molecular docking at the colchicine binding site. The anticancer activity was evaluated against human malignant cell lines MCF-7 and AR-230, as well as against normal fibroblast cells 3T3 and CCL-1. The compounds demonstrated a marked antineoplastic activity in low micromolar concentrations in both screened in vitro tumor models. The most active were the trimethoxy substituted derivative 1i and the positional isomers 1j and 1k, containing hydroxy and methoxy substituents: they showed IC(50) similar to the reference podophyllotoxin in both tumor cell lines, accompanied with high selectivity towards the malignantly transformed cells. The compounds exerted moderate to high ability to scavenge peroxyl radicals and certain derivatives—1l containing metha-hydroxy and para-methoxy group, and 1b-e with di/trihydroxy phenyl moiety, revealed HORAC values high or comparable to those of well-known phenolic antioxidants. Thus the 1H-benisimidazol-2-yl hydrazones with hydroxy/methoxy phenyl fragments were recognized as new agents exhibiting promising combined antioxidant and antineoplastic action. MDPI 2022-12-29 /pmc/articles/PMC9822270/ /pubmed/36615483 http://dx.doi.org/10.3390/molecules28010291 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
Argirova, Maria
Guncheva, Maya
Momekov, Georgi
Cherneva, Emiliya
Mihaylova, Rositsa
Rangelov, Miroslav
Todorova, Nadezhda
Denev, Petko
Anichina, Kameliya
Mavrova, Anelia
Yancheva, Denitsa
Modulation Effect on Tubulin Polymerization, Cytotoxicity and Antioxidant Activity of 1H-Benzimidazole-2-Yl Hydrazones
title Modulation Effect on Tubulin Polymerization, Cytotoxicity and Antioxidant Activity of 1H-Benzimidazole-2-Yl Hydrazones
title_full Modulation Effect on Tubulin Polymerization, Cytotoxicity and Antioxidant Activity of 1H-Benzimidazole-2-Yl Hydrazones
title_fullStr Modulation Effect on Tubulin Polymerization, Cytotoxicity and Antioxidant Activity of 1H-Benzimidazole-2-Yl Hydrazones
title_full_unstemmed Modulation Effect on Tubulin Polymerization, Cytotoxicity and Antioxidant Activity of 1H-Benzimidazole-2-Yl Hydrazones
title_short Modulation Effect on Tubulin Polymerization, Cytotoxicity and Antioxidant Activity of 1H-Benzimidazole-2-Yl Hydrazones
title_sort modulation effect on tubulin polymerization, cytotoxicity and antioxidant activity of 1h-benzimidazole-2-yl hydrazones
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9822270/
https://www.ncbi.nlm.nih.gov/pubmed/36615483
http://dx.doi.org/10.3390/molecules28010291
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