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Synthesis of 6″-Modified Kanamycin A Derivatives and Evaluation of Their Antibacterial Properties

Aminoglycosides are one of the first classes of antibiotics to have been used clinically, and they are still being used today. They have a broad spectrum of antimicrobial activity, making them effective against many different types of bacteria. Despite their long history of use, aminoglycosides are...

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Autores principales: Shapovalova, Kseniya, Zatonsky, Georgy, Grammatikova, Natalia, Osterman, Ilya, Razumova, Elizaveta, Shchekotikhin, Andrey, Tevyashova, Anna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10141514/
https://www.ncbi.nlm.nih.gov/pubmed/37111662
http://dx.doi.org/10.3390/pharmaceutics15041177
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author Shapovalova, Kseniya
Zatonsky, Georgy
Grammatikova, Natalia
Osterman, Ilya
Razumova, Elizaveta
Shchekotikhin, Andrey
Tevyashova, Anna
author_facet Shapovalova, Kseniya
Zatonsky, Georgy
Grammatikova, Natalia
Osterman, Ilya
Razumova, Elizaveta
Shchekotikhin, Andrey
Tevyashova, Anna
author_sort Shapovalova, Kseniya
collection PubMed
description Aminoglycosides are one of the first classes of antibiotics to have been used clinically, and they are still being used today. They have a broad spectrum of antimicrobial activity, making them effective against many different types of bacteria. Despite their long history of use, aminoglycosides are still considered promising scaffolds for the development of new antibacterial agents, particularly as bacteria continue to develop resistances to existing antibiotics. We have synthesized a series of 6″-deoxykanamycin A analogues with additional protonatable groups (amino-, guanidino or pyridinium) and tested their biological activities. For the first time we have demonstrated the ability of the tetra-N-protected-6″-O-(2,4,6-triisopropylbenzenesulfonyl)kanamycin A to interact with a weak nucleophile, pyridine, resulting in the formation of the corresponding pyridinium derivative. Introducing small diamino-substituents at the 6″-position of kanamycin A did not significantly alter the antibacterial activity of the parent antibiotic, but further modification by acylation resulted in a complete loss of the antibacterial activity. However, introducing a guanidine residue led to a compound with improved activity against S. aureus. Moreover, most of the obtained 6″-modified kanamycin A derivatives were less influenced by the resistant mechanism associated with mutations of the elongation factor G than the parent kanamycin A. This suggests that modifying the 6″-position of kanamycin A with protonatable groups is a promising direction for the further development of new antibacterial agents with reduced resistances.
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spelling pubmed-101415142023-04-29 Synthesis of 6″-Modified Kanamycin A Derivatives and Evaluation of Their Antibacterial Properties Shapovalova, Kseniya Zatonsky, Georgy Grammatikova, Natalia Osterman, Ilya Razumova, Elizaveta Shchekotikhin, Andrey Tevyashova, Anna Pharmaceutics Article Aminoglycosides are one of the first classes of antibiotics to have been used clinically, and they are still being used today. They have a broad spectrum of antimicrobial activity, making them effective against many different types of bacteria. Despite their long history of use, aminoglycosides are still considered promising scaffolds for the development of new antibacterial agents, particularly as bacteria continue to develop resistances to existing antibiotics. We have synthesized a series of 6″-deoxykanamycin A analogues with additional protonatable groups (amino-, guanidino or pyridinium) and tested their biological activities. For the first time we have demonstrated the ability of the tetra-N-protected-6″-O-(2,4,6-triisopropylbenzenesulfonyl)kanamycin A to interact with a weak nucleophile, pyridine, resulting in the formation of the corresponding pyridinium derivative. Introducing small diamino-substituents at the 6″-position of kanamycin A did not significantly alter the antibacterial activity of the parent antibiotic, but further modification by acylation resulted in a complete loss of the antibacterial activity. However, introducing a guanidine residue led to a compound with improved activity against S. aureus. Moreover, most of the obtained 6″-modified kanamycin A derivatives were less influenced by the resistant mechanism associated with mutations of the elongation factor G than the parent kanamycin A. This suggests that modifying the 6″-position of kanamycin A with protonatable groups is a promising direction for the further development of new antibacterial agents with reduced resistances. MDPI 2023-04-07 /pmc/articles/PMC10141514/ /pubmed/37111662 http://dx.doi.org/10.3390/pharmaceutics15041177 Text en © 2023 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
Shapovalova, Kseniya
Zatonsky, Georgy
Grammatikova, Natalia
Osterman, Ilya
Razumova, Elizaveta
Shchekotikhin, Andrey
Tevyashova, Anna
Synthesis of 6″-Modified Kanamycin A Derivatives and Evaluation of Their Antibacterial Properties
title Synthesis of 6″-Modified Kanamycin A Derivatives and Evaluation of Their Antibacterial Properties
title_full Synthesis of 6″-Modified Kanamycin A Derivatives and Evaluation of Their Antibacterial Properties
title_fullStr Synthesis of 6″-Modified Kanamycin A Derivatives and Evaluation of Their Antibacterial Properties
title_full_unstemmed Synthesis of 6″-Modified Kanamycin A Derivatives and Evaluation of Their Antibacterial Properties
title_short Synthesis of 6″-Modified Kanamycin A Derivatives and Evaluation of Their Antibacterial Properties
title_sort synthesis of 6″-modified kanamycin a derivatives and evaluation of their antibacterial properties
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10141514/
https://www.ncbi.nlm.nih.gov/pubmed/37111662
http://dx.doi.org/10.3390/pharmaceutics15041177
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