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Development of structurally extended benzosiloxaboroles – synthesis and in vitro biological evaluation

The synthesis of potassium 6-hydroxy-7-chloro-1,1-dimethyl-3,3-difluorobenzo-1,2,3-siloxaborolate 5b from readily available 4-bromo-2-chlorophenol was developed. This compound proved useful in various derivatizations resulting in a wide range of O-functionalized benzosiloxaboroles. Reactions of 5b w...

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Autores principales: Pacholak, P., Krajewska, J., Wińska, P., Dunikowska, J., Gogowska, U., Mierzejewska, J., Durka, K., Woźniak, K., Laudy, A. E., Luliński, S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9037100/
https://www.ncbi.nlm.nih.gov/pubmed/35478884
http://dx.doi.org/10.1039/d1ra04127d
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author Pacholak, P.
Krajewska, J.
Wińska, P.
Dunikowska, J.
Gogowska, U.
Mierzejewska, J.
Durka, K.
Woźniak, K.
Laudy, A. E.
Luliński, S.
author_facet Pacholak, P.
Krajewska, J.
Wińska, P.
Dunikowska, J.
Gogowska, U.
Mierzejewska, J.
Durka, K.
Woźniak, K.
Laudy, A. E.
Luliński, S.
author_sort Pacholak, P.
collection PubMed
description The synthesis of potassium 6-hydroxy-7-chloro-1,1-dimethyl-3,3-difluorobenzo-1,2,3-siloxaborolate 5b from readily available 4-bromo-2-chlorophenol was developed. This compound proved useful in various derivatizations resulting in a wide range of O-functionalized benzosiloxaboroles. Reactions of 5b with selected substituted benzoyl chlorides gave rise to a series of respective derivatives with 6-benzoate side groups attached to the benzosiloxaborole core. Furthermore, treatment of 5b with substituted benzenesufonyl chlorides afforded several benzosiloxaboroles bearing functionalized benzenesulfonate moieties at the 6 position. The synthesis of related chloropyridine-2-yloxy substituted benzosiloxaboroles was accomplished by a standard approach involving silylation/boronation of appropriate heterodiaryl ethers. Investigation of biological activity of obtained compounds revealed that some benzoate and most benzenesulfonate derivatives exhibit high activity against Gram-positive cocci such as methicillin-sensitive Staphylococcus aureus ATCC 6538P as well as methicillin-resistant S. aureus ATCC 43300 with the MIC values in the range of 0.39–3.12 mg L(−1). Some benzenesulfonate derivatives showed also potent activity against Enterococcus faecalis ATCC 29212 and E. faecium ATCC 6057 with MIC = 6.25 mg L(−1). Importantly, for the most promising cocci-active benzenesulfonate derivatives the obtained MIC values were far below the cytotoxicity limit determined with respect to human normal lung fibroblasts (MRC-5). For those derivatives, the obtained IC(50) values were higher than 12.3 mg L(−1). The results of antimicrobial activity and cytotoxicity indicate that the tested compounds can be considered as potential antibacterial agents.
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spelling pubmed-90371002022-04-26 Development of structurally extended benzosiloxaboroles – synthesis and in vitro biological evaluation Pacholak, P. Krajewska, J. Wińska, P. Dunikowska, J. Gogowska, U. Mierzejewska, J. Durka, K. Woźniak, K. Laudy, A. E. Luliński, S. RSC Adv Chemistry The synthesis of potassium 6-hydroxy-7-chloro-1,1-dimethyl-3,3-difluorobenzo-1,2,3-siloxaborolate 5b from readily available 4-bromo-2-chlorophenol was developed. This compound proved useful in various derivatizations resulting in a wide range of O-functionalized benzosiloxaboroles. Reactions of 5b with selected substituted benzoyl chlorides gave rise to a series of respective derivatives with 6-benzoate side groups attached to the benzosiloxaborole core. Furthermore, treatment of 5b with substituted benzenesufonyl chlorides afforded several benzosiloxaboroles bearing functionalized benzenesulfonate moieties at the 6 position. The synthesis of related chloropyridine-2-yloxy substituted benzosiloxaboroles was accomplished by a standard approach involving silylation/boronation of appropriate heterodiaryl ethers. Investigation of biological activity of obtained compounds revealed that some benzoate and most benzenesulfonate derivatives exhibit high activity against Gram-positive cocci such as methicillin-sensitive Staphylococcus aureus ATCC 6538P as well as methicillin-resistant S. aureus ATCC 43300 with the MIC values in the range of 0.39–3.12 mg L(−1). Some benzenesulfonate derivatives showed also potent activity against Enterococcus faecalis ATCC 29212 and E. faecium ATCC 6057 with MIC = 6.25 mg L(−1). Importantly, for the most promising cocci-active benzenesulfonate derivatives the obtained MIC values were far below the cytotoxicity limit determined with respect to human normal lung fibroblasts (MRC-5). For those derivatives, the obtained IC(50) values were higher than 12.3 mg L(−1). The results of antimicrobial activity and cytotoxicity indicate that the tested compounds can be considered as potential antibacterial agents. The Royal Society of Chemistry 2021-07-20 /pmc/articles/PMC9037100/ /pubmed/35478884 http://dx.doi.org/10.1039/d1ra04127d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Pacholak, P.
Krajewska, J.
Wińska, P.
Dunikowska, J.
Gogowska, U.
Mierzejewska, J.
Durka, K.
Woźniak, K.
Laudy, A. E.
Luliński, S.
Development of structurally extended benzosiloxaboroles – synthesis and in vitro biological evaluation
title Development of structurally extended benzosiloxaboroles – synthesis and in vitro biological evaluation
title_full Development of structurally extended benzosiloxaboroles – synthesis and in vitro biological evaluation
title_fullStr Development of structurally extended benzosiloxaboroles – synthesis and in vitro biological evaluation
title_full_unstemmed Development of structurally extended benzosiloxaboroles – synthesis and in vitro biological evaluation
title_short Development of structurally extended benzosiloxaboroles – synthesis and in vitro biological evaluation
title_sort development of structurally extended benzosiloxaboroles – synthesis and in vitro biological evaluation
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9037100/
https://www.ncbi.nlm.nih.gov/pubmed/35478884
http://dx.doi.org/10.1039/d1ra04127d
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