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Development of new tridentate ligands bearing hydrazone motif and their diorganotin(IV) complexes: Synthesis, spectral, antimicrobial and molecular docking studies

Current antimicrobial drug discovery and advancement attempts are aimed to identify new complexes that can work effectively against the infections caused by microbes. The aim of present study was to synthesize new diorganotin(IV) complexes of N'-((8-hydroxy-1,2,3,5,6,7-hexahydropyrido[3,2,1-ij]...

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Autores principales: Kumar, Naresh, Asija, Sonika, Deswal, Yogesh, Saroya, Sonia, Kumar, Ashwani
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Netherlands 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9617540/
http://dx.doi.org/10.1007/s11164-022-04860-0
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author Kumar, Naresh
Asija, Sonika
Deswal, Yogesh
Saroya, Sonia
Kumar, Ashwani
author_facet Kumar, Naresh
Asija, Sonika
Deswal, Yogesh
Saroya, Sonia
Kumar, Ashwani
author_sort Kumar, Naresh
collection PubMed
description Current antimicrobial drug discovery and advancement attempts are aimed to identify new complexes that can work effectively against the infections caused by microbes. The aim of present study was to synthesize new diorganotin(IV) complexes of N'-((8-hydroxy-1,2,3,5,6,7-hexahydropyrido[3,2,1-ij]quinolin-9-yl)methylene)-2-nitrobenzohydrazide (H(2)L(1)), N'-((8-hydroxy-1,2,3,5,6,7-hexahydropyrido[3,2,1-ij]quinolin-9-yl)methylene)-3-methoxybenzohydrazide (H(2)L(2)) and N'-((8-hydroxy-1,2,3,5,6,7-hexahydropyrido[3,2,1-ij]quinolin-9-yl)methylene)-4-methylbenzohydrazide (H(2)L(3)) Schiff base ligands with formula R(2)SnL(1−3) (where R = Me, Et, Bu and Ph). Various spectral and physico-analytical techniques such as elemental analysis, FT-IR, multinuclear ((1)H, (13)C, (119)Sn) NMR, HRMS and XRD were utilized to structurally elucidate the prepared compounds. Based on the spectral data, it was concluded that ligands behave in a tridentate manner and coordinates to the central tin atom through ONO donor atoms. Furthermore, the synthesized compounds were examined for in vitro antimicrobial activity against four bacterial and two fungal strains. Among the examined compounds, Ph(2)SnL(1) complex (MIC = 0.0095 µmol/mL) was found to be the most active. To rationalize the preferred mode of interactions of the most active compound, a molecular docking study of compound Ph(2)SnL(1) was executed in the binding site of 3-oxoacyl-[acyl-carrier-protein] synthase 2 (FabF) of E. coli and sterol 14-alpha demethylase of C. albicans. Compound Ph(2)SnL(1) inhibits the microbes effectively and it could be an effective and new candidate for the modulation of various infections. GRAPHICAL ABSTRACT: New diorganotin(IV) complexes (4–15) were prepared from tridentate Schiff base hydrazones (1–3). The compounds were examined for in vitro antimicrobial activity. Further, molecular docking study of the most potent compound Ph(2)SnL(1) (7) was performed against the enzyme 3-oxoacyl-[acyl-carrier-protein] synthase 2 (FabF) of E. coli and sterol 14-alpha demethylase of C. albicans. [Image: see text] SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1007/s11164-022-04860-0.
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spelling pubmed-96175402022-10-31 Development of new tridentate ligands bearing hydrazone motif and their diorganotin(IV) complexes: Synthesis, spectral, antimicrobial and molecular docking studies Kumar, Naresh Asija, Sonika Deswal, Yogesh Saroya, Sonia Kumar, Ashwani Res Chem Intermed Article Current antimicrobial drug discovery and advancement attempts are aimed to identify new complexes that can work effectively against the infections caused by microbes. The aim of present study was to synthesize new diorganotin(IV) complexes of N'-((8-hydroxy-1,2,3,5,6,7-hexahydropyrido[3,2,1-ij]quinolin-9-yl)methylene)-2-nitrobenzohydrazide (H(2)L(1)), N'-((8-hydroxy-1,2,3,5,6,7-hexahydropyrido[3,2,1-ij]quinolin-9-yl)methylene)-3-methoxybenzohydrazide (H(2)L(2)) and N'-((8-hydroxy-1,2,3,5,6,7-hexahydropyrido[3,2,1-ij]quinolin-9-yl)methylene)-4-methylbenzohydrazide (H(2)L(3)) Schiff base ligands with formula R(2)SnL(1−3) (where R = Me, Et, Bu and Ph). Various spectral and physico-analytical techniques such as elemental analysis, FT-IR, multinuclear ((1)H, (13)C, (119)Sn) NMR, HRMS and XRD were utilized to structurally elucidate the prepared compounds. Based on the spectral data, it was concluded that ligands behave in a tridentate manner and coordinates to the central tin atom through ONO donor atoms. Furthermore, the synthesized compounds were examined for in vitro antimicrobial activity against four bacterial and two fungal strains. Among the examined compounds, Ph(2)SnL(1) complex (MIC = 0.0095 µmol/mL) was found to be the most active. To rationalize the preferred mode of interactions of the most active compound, a molecular docking study of compound Ph(2)SnL(1) was executed in the binding site of 3-oxoacyl-[acyl-carrier-protein] synthase 2 (FabF) of E. coli and sterol 14-alpha demethylase of C. albicans. Compound Ph(2)SnL(1) inhibits the microbes effectively and it could be an effective and new candidate for the modulation of various infections. GRAPHICAL ABSTRACT: New diorganotin(IV) complexes (4–15) were prepared from tridentate Schiff base hydrazones (1–3). The compounds were examined for in vitro antimicrobial activity. Further, molecular docking study of the most potent compound Ph(2)SnL(1) (7) was performed against the enzyme 3-oxoacyl-[acyl-carrier-protein] synthase 2 (FabF) of E. coli and sterol 14-alpha demethylase of C. albicans. [Image: see text] SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1007/s11164-022-04860-0. Springer Netherlands 2022-10-29 2022 /pmc/articles/PMC9617540/ http://dx.doi.org/10.1007/s11164-022-04860-0 Text en © The Author(s), under exclusive licence to Springer Nature B.V. 2022, Springer Nature or its licensor (e.g. a society or other partner) holds exclusive rights to this article under a publishing agreement with the author(s) or other rightsholder(s); author self-archiving of the accepted manuscript version of this article is solely governed by the terms of such publishing agreement and applicable law. This article is made available via the PMC Open Access Subset for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic.
spellingShingle Article
Kumar, Naresh
Asija, Sonika
Deswal, Yogesh
Saroya, Sonia
Kumar, Ashwani
Development of new tridentate ligands bearing hydrazone motif and their diorganotin(IV) complexes: Synthesis, spectral, antimicrobial and molecular docking studies
title Development of new tridentate ligands bearing hydrazone motif and their diorganotin(IV) complexes: Synthesis, spectral, antimicrobial and molecular docking studies
title_full Development of new tridentate ligands bearing hydrazone motif and their diorganotin(IV) complexes: Synthesis, spectral, antimicrobial and molecular docking studies
title_fullStr Development of new tridentate ligands bearing hydrazone motif and their diorganotin(IV) complexes: Synthesis, spectral, antimicrobial and molecular docking studies
title_full_unstemmed Development of new tridentate ligands bearing hydrazone motif and their diorganotin(IV) complexes: Synthesis, spectral, antimicrobial and molecular docking studies
title_short Development of new tridentate ligands bearing hydrazone motif and their diorganotin(IV) complexes: Synthesis, spectral, antimicrobial and molecular docking studies
title_sort development of new tridentate ligands bearing hydrazone motif and their diorganotin(iv) complexes: synthesis, spectral, antimicrobial and molecular docking studies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9617540/
http://dx.doi.org/10.1007/s11164-022-04860-0
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