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Pharmacophore Modeling, Synthesis, and Antibacterial Evaluation of Chalcones and Derivatives

[Image: see text] A series of novel chalcone and thiol-Michael addition analogues was synthesized and tested against Mycobacterium tuberculosis and other clinically significant bacterial pathogens. Previously reported chalcone-like antibacterials (1a–c and 2) were used as a training set to generate...

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Autores principales: Zhang, Mingming, Prior, Allan M., Maddox, Marcus M., Shen, Wan-Jou, Hevener, Kirk E., Bruhn, David F., Lee, Robin B., Singh, Aman P., Reinicke, Justin, Simmons, Charles J., Hurdle, Julian G., Lee, Richard E., Sun, Dianqing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2018
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6312637/
https://www.ncbi.nlm.nih.gov/pubmed/30613820
http://dx.doi.org/10.1021/acsomega.8b03174
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author Zhang, Mingming
Prior, Allan M.
Maddox, Marcus M.
Shen, Wan-Jou
Hevener, Kirk E.
Bruhn, David F.
Lee, Robin B.
Singh, Aman P.
Reinicke, Justin
Simmons, Charles J.
Hurdle, Julian G.
Lee, Richard E.
Sun, Dianqing
author_facet Zhang, Mingming
Prior, Allan M.
Maddox, Marcus M.
Shen, Wan-Jou
Hevener, Kirk E.
Bruhn, David F.
Lee, Robin B.
Singh, Aman P.
Reinicke, Justin
Simmons, Charles J.
Hurdle, Julian G.
Lee, Richard E.
Sun, Dianqing
author_sort Zhang, Mingming
collection PubMed
description [Image: see text] A series of novel chalcone and thiol-Michael addition analogues was synthesized and tested against Mycobacterium tuberculosis and other clinically significant bacterial pathogens. Previously reported chalcone-like antibacterials (1a–c and 2) were used as a training set to generate a pharmacophore model. The chalcone derivative hit compound 3 was subsequently identified through a pharmacophore-based virtual screen of the Specs library of >200 000 compounds. Among the newly synthesized chalcones and thiol-Michael addition analogues, chalcones 6r and 6s were active (minimum inhibitory concentrations (MICs) = 1.56–6.25 μg/mL) against Gram-positive pathogens Bacillus anthracis and Staphylococcus aureus [methicillin-susceptible S. aureus (MSSA) and methicillin-resistant S. aureus (MRSA)]. The chalcone thiol-Michael addition derivatives 7j–m showed good to excellent antibacterial activities (MICs = 0.78–6.25 μg/mL) against Enterococcus faecalis, B. anthracis, and S. aureus. Interestingly, the amine-Michael addition analogue 12a showed promising anti-MRSA activity (MIC = 1.56 μg/mL) with a selectivity index of 14 toward mammalian Vero cells. In addition, evaluation of selected compounds against biofilm and planktonic S. aureus (MSSA and MRSA) revealed that 12a exhibited bactericidal activities in these assays, which was overall superior to vancomycin. These properties may result from the compounds dissipating the proton motive force of bacterial membranes.
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spelling pubmed-63126372019-01-02 Pharmacophore Modeling, Synthesis, and Antibacterial Evaluation of Chalcones and Derivatives Zhang, Mingming Prior, Allan M. Maddox, Marcus M. Shen, Wan-Jou Hevener, Kirk E. Bruhn, David F. Lee, Robin B. Singh, Aman P. Reinicke, Justin Simmons, Charles J. Hurdle, Julian G. Lee, Richard E. Sun, Dianqing ACS Omega [Image: see text] A series of novel chalcone and thiol-Michael addition analogues was synthesized and tested against Mycobacterium tuberculosis and other clinically significant bacterial pathogens. Previously reported chalcone-like antibacterials (1a–c and 2) were used as a training set to generate a pharmacophore model. The chalcone derivative hit compound 3 was subsequently identified through a pharmacophore-based virtual screen of the Specs library of >200 000 compounds. Among the newly synthesized chalcones and thiol-Michael addition analogues, chalcones 6r and 6s were active (minimum inhibitory concentrations (MICs) = 1.56–6.25 μg/mL) against Gram-positive pathogens Bacillus anthracis and Staphylococcus aureus [methicillin-susceptible S. aureus (MSSA) and methicillin-resistant S. aureus (MRSA)]. The chalcone thiol-Michael addition derivatives 7j–m showed good to excellent antibacterial activities (MICs = 0.78–6.25 μg/mL) against Enterococcus faecalis, B. anthracis, and S. aureus. Interestingly, the amine-Michael addition analogue 12a showed promising anti-MRSA activity (MIC = 1.56 μg/mL) with a selectivity index of 14 toward mammalian Vero cells. In addition, evaluation of selected compounds against biofilm and planktonic S. aureus (MSSA and MRSA) revealed that 12a exhibited bactericidal activities in these assays, which was overall superior to vancomycin. These properties may result from the compounds dissipating the proton motive force of bacterial membranes. American Chemical Society 2018-12-26 /pmc/articles/PMC6312637/ /pubmed/30613820 http://dx.doi.org/10.1021/acsomega.8b03174 Text en Copyright © 2018 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Zhang, Mingming
Prior, Allan M.
Maddox, Marcus M.
Shen, Wan-Jou
Hevener, Kirk E.
Bruhn, David F.
Lee, Robin B.
Singh, Aman P.
Reinicke, Justin
Simmons, Charles J.
Hurdle, Julian G.
Lee, Richard E.
Sun, Dianqing
Pharmacophore Modeling, Synthesis, and Antibacterial Evaluation of Chalcones and Derivatives
title Pharmacophore Modeling, Synthesis, and Antibacterial Evaluation of Chalcones and Derivatives
title_full Pharmacophore Modeling, Synthesis, and Antibacterial Evaluation of Chalcones and Derivatives
title_fullStr Pharmacophore Modeling, Synthesis, and Antibacterial Evaluation of Chalcones and Derivatives
title_full_unstemmed Pharmacophore Modeling, Synthesis, and Antibacterial Evaluation of Chalcones and Derivatives
title_short Pharmacophore Modeling, Synthesis, and Antibacterial Evaluation of Chalcones and Derivatives
title_sort pharmacophore modeling, synthesis, and antibacterial evaluation of chalcones and derivatives
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6312637/
https://www.ncbi.nlm.nih.gov/pubmed/30613820
http://dx.doi.org/10.1021/acsomega.8b03174
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