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Evaluation of Anticancer Activity of 1,3‐Oxazol‐4‐ylphosphonium Salts in Vitro

A novel series of 1,3‐oxazol‐4‐yltriphenylphosphonium salts has been synthesized and functionalized. Oxazole derivatives were subjected to NCI in vitro assessment. Seven most active derivatives have been selected for five‐dose assay. Among them, compounds 9 ([2‐(4‐methylphenyl)‐5‐[(4‐methylphenyl)su...

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Autores principales: Brusnakov, Mykhailo, Golovchenko, Olexandr, Velihina, Yevheniia, Liavynets, Oleksandr, Zhirnov, Victor, Brovarets, Volodymyr
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9825890/
https://www.ncbi.nlm.nih.gov/pubmed/36037305
http://dx.doi.org/10.1002/cmdc.202200319
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author Brusnakov, Mykhailo
Golovchenko, Olexandr
Velihina, Yevheniia
Liavynets, Oleksandr
Zhirnov, Victor
Brovarets, Volodymyr
author_facet Brusnakov, Mykhailo
Golovchenko, Olexandr
Velihina, Yevheniia
Liavynets, Oleksandr
Zhirnov, Victor
Brovarets, Volodymyr
author_sort Brusnakov, Mykhailo
collection PubMed
description A novel series of 1,3‐oxazol‐4‐yltriphenylphosphonium salts has been synthesized and functionalized. Oxazole derivatives were subjected to NCI in vitro assessment. Seven most active derivatives have been selected for five‐dose assay. Among them, compounds 9 ([2‐(4‐methylphenyl)‐5‐[(4‐methylphenyl)sulfanyl]‐1,3‐oxazol‐4‐yl]triphenylphosphonium perchlorate), 1 ([5‐(4‐methylphenyl)amino]‐2‐phenyl‐1,3‐oxazol‐4‐yl]triphenylphosphonium perchlorate) and 4 ([5‐phenyl‐2‐[(4‐methylphenyl)amino]‐1,3‐oxazol‐4‐yl]triphenylphosphonium perchlorate) were the most active against all tested cancer subpanels. Statistical analysis of the total panel data showed average values of parameters of anticancer activity in the range of 0.3–1.1 μM (GI(50)), 1.2–2.5 μM (TGI) and 5–6 μM (LC(50)). It was found that the presence of phenyl or 4‐methylphenyl groups at C(2) and C(5) in the oxazole ring is of critical importance for the manifestation of the anticancer activity. Matrix COMPARE analysis using LC(50) vector showed a high positive correlation of compound 9 with standard anticancer agents that can directly disrupt mitochondrial function, causing programmed death of cancer cells. The obtained results indicate the anticancer activity of 1,3‐oxazol‐4‐ylphosphonium salts, which could be useful for developing new anticancer drugs. The most active of them can be recommended for further in‐depth studies and synthesis of new derivatives with antitumor activity on their basis.
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spelling pubmed-98258902023-01-09 Evaluation of Anticancer Activity of 1,3‐Oxazol‐4‐ylphosphonium Salts in Vitro Brusnakov, Mykhailo Golovchenko, Olexandr Velihina, Yevheniia Liavynets, Oleksandr Zhirnov, Victor Brovarets, Volodymyr ChemMedChem Research Articles A novel series of 1,3‐oxazol‐4‐yltriphenylphosphonium salts has been synthesized and functionalized. Oxazole derivatives were subjected to NCI in vitro assessment. Seven most active derivatives have been selected for five‐dose assay. Among them, compounds 9 ([2‐(4‐methylphenyl)‐5‐[(4‐methylphenyl)sulfanyl]‐1,3‐oxazol‐4‐yl]triphenylphosphonium perchlorate), 1 ([5‐(4‐methylphenyl)amino]‐2‐phenyl‐1,3‐oxazol‐4‐yl]triphenylphosphonium perchlorate) and 4 ([5‐phenyl‐2‐[(4‐methylphenyl)amino]‐1,3‐oxazol‐4‐yl]triphenylphosphonium perchlorate) were the most active against all tested cancer subpanels. Statistical analysis of the total panel data showed average values of parameters of anticancer activity in the range of 0.3–1.1 μM (GI(50)), 1.2–2.5 μM (TGI) and 5–6 μM (LC(50)). It was found that the presence of phenyl or 4‐methylphenyl groups at C(2) and C(5) in the oxazole ring is of critical importance for the manifestation of the anticancer activity. Matrix COMPARE analysis using LC(50) vector showed a high positive correlation of compound 9 with standard anticancer agents that can directly disrupt mitochondrial function, causing programmed death of cancer cells. The obtained results indicate the anticancer activity of 1,3‐oxazol‐4‐ylphosphonium salts, which could be useful for developing new anticancer drugs. The most active of them can be recommended for further in‐depth studies and synthesis of new derivatives with antitumor activity on their basis. John Wiley and Sons Inc. 2022-09-15 2022-10-19 /pmc/articles/PMC9825890/ /pubmed/36037305 http://dx.doi.org/10.1002/cmdc.202200319 Text en © 2022 The Authors. ChemMedChem published by Wiley-VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Brusnakov, Mykhailo
Golovchenko, Olexandr
Velihina, Yevheniia
Liavynets, Oleksandr
Zhirnov, Victor
Brovarets, Volodymyr
Evaluation of Anticancer Activity of 1,3‐Oxazol‐4‐ylphosphonium Salts in Vitro
title Evaluation of Anticancer Activity of 1,3‐Oxazol‐4‐ylphosphonium Salts in Vitro
title_full Evaluation of Anticancer Activity of 1,3‐Oxazol‐4‐ylphosphonium Salts in Vitro
title_fullStr Evaluation of Anticancer Activity of 1,3‐Oxazol‐4‐ylphosphonium Salts in Vitro
title_full_unstemmed Evaluation of Anticancer Activity of 1,3‐Oxazol‐4‐ylphosphonium Salts in Vitro
title_short Evaluation of Anticancer Activity of 1,3‐Oxazol‐4‐ylphosphonium Salts in Vitro
title_sort evaluation of anticancer activity of 1,3‐oxazol‐4‐ylphosphonium salts in vitro
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9825890/
https://www.ncbi.nlm.nih.gov/pubmed/36037305
http://dx.doi.org/10.1002/cmdc.202200319
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