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From Quinoline to Quinazoline‐Based S. aureus NorA Efflux Pump Inhibitors by Coupling a Focused Scaffold Hopping Approach and a Pharmacophore Search

Antibiotic resistance breakers, such as efflux pump inhibitors (EPIs), represent a powerful alternative to the development of new antimicrobials. Recently, by using previously described EPIs, we developed pharmacophore models able to identify inhibitors of NorA, the most studied efflux pump of Staph...

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Autores principales: Cedraro, Nicholas, Cannalire, Rolando, Astolfi, Andrea, Mangiaterra, Gianmarco, Felicetti, Tommaso, Vaiasicca, Salvatore, Cernicchi, Giada, Massari, Serena, Manfroni, Giuseppe, Tabarrini, Oriana, Cecchetti, Violetta, Barreca, Maria Letizia, Biavasco, Francesca, Sabatini, Stefano
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8518402/
https://www.ncbi.nlm.nih.gov/pubmed/34032014
http://dx.doi.org/10.1002/cmdc.202100282
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author Cedraro, Nicholas
Cannalire, Rolando
Astolfi, Andrea
Mangiaterra, Gianmarco
Felicetti, Tommaso
Vaiasicca, Salvatore
Cernicchi, Giada
Massari, Serena
Manfroni, Giuseppe
Tabarrini, Oriana
Cecchetti, Violetta
Barreca, Maria Letizia
Biavasco, Francesca
Sabatini, Stefano
author_facet Cedraro, Nicholas
Cannalire, Rolando
Astolfi, Andrea
Mangiaterra, Gianmarco
Felicetti, Tommaso
Vaiasicca, Salvatore
Cernicchi, Giada
Massari, Serena
Manfroni, Giuseppe
Tabarrini, Oriana
Cecchetti, Violetta
Barreca, Maria Letizia
Biavasco, Francesca
Sabatini, Stefano
author_sort Cedraro, Nicholas
collection PubMed
description Antibiotic resistance breakers, such as efflux pump inhibitors (EPIs), represent a powerful alternative to the development of new antimicrobials. Recently, by using previously described EPIs, we developed pharmacophore models able to identify inhibitors of NorA, the most studied efflux pump of Staphylococcus aureus. Herein we report the pharmacophore‐based virtual screening of a library of new potential NorA EPIs generated by an in‐silico scaffold hopping approach of the quinoline core. After chemical synthesis and biological evaluation of the best virtual hits, we found the quinazoline core as the best performing scaffold. Accordingly, we designed and synthesized a series of functionalized 2‐arylquinazolines, which were further evaluated as NorA EPIs. Four of them exhibited a strong synergism with ciprofloxacin and a good inhibition of ethidium bromide efflux on resistant S. aureus strains coupled with low cytotoxicity against human cell lines, thus highlighting a promising safety profile.
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spelling pubmed-85184022021-10-21 From Quinoline to Quinazoline‐Based S. aureus NorA Efflux Pump Inhibitors by Coupling a Focused Scaffold Hopping Approach and a Pharmacophore Search Cedraro, Nicholas Cannalire, Rolando Astolfi, Andrea Mangiaterra, Gianmarco Felicetti, Tommaso Vaiasicca, Salvatore Cernicchi, Giada Massari, Serena Manfroni, Giuseppe Tabarrini, Oriana Cecchetti, Violetta Barreca, Maria Letizia Biavasco, Francesca Sabatini, Stefano ChemMedChem Full Papers Antibiotic resistance breakers, such as efflux pump inhibitors (EPIs), represent a powerful alternative to the development of new antimicrobials. Recently, by using previously described EPIs, we developed pharmacophore models able to identify inhibitors of NorA, the most studied efflux pump of Staphylococcus aureus. Herein we report the pharmacophore‐based virtual screening of a library of new potential NorA EPIs generated by an in‐silico scaffold hopping approach of the quinoline core. After chemical synthesis and biological evaluation of the best virtual hits, we found the quinazoline core as the best performing scaffold. Accordingly, we designed and synthesized a series of functionalized 2‐arylquinazolines, which were further evaluated as NorA EPIs. Four of them exhibited a strong synergism with ciprofloxacin and a good inhibition of ethidium bromide efflux on resistant S. aureus strains coupled with low cytotoxicity against human cell lines, thus highlighting a promising safety profile. John Wiley and Sons Inc. 2021-06-26 2021-10-06 /pmc/articles/PMC8518402/ /pubmed/34032014 http://dx.doi.org/10.1002/cmdc.202100282 Text en © 2021 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 Full Papers
Cedraro, Nicholas
Cannalire, Rolando
Astolfi, Andrea
Mangiaterra, Gianmarco
Felicetti, Tommaso
Vaiasicca, Salvatore
Cernicchi, Giada
Massari, Serena
Manfroni, Giuseppe
Tabarrini, Oriana
Cecchetti, Violetta
Barreca, Maria Letizia
Biavasco, Francesca
Sabatini, Stefano
From Quinoline to Quinazoline‐Based S. aureus NorA Efflux Pump Inhibitors by Coupling a Focused Scaffold Hopping Approach and a Pharmacophore Search
title From Quinoline to Quinazoline‐Based S. aureus NorA Efflux Pump Inhibitors by Coupling a Focused Scaffold Hopping Approach and a Pharmacophore Search
title_full From Quinoline to Quinazoline‐Based S. aureus NorA Efflux Pump Inhibitors by Coupling a Focused Scaffold Hopping Approach and a Pharmacophore Search
title_fullStr From Quinoline to Quinazoline‐Based S. aureus NorA Efflux Pump Inhibitors by Coupling a Focused Scaffold Hopping Approach and a Pharmacophore Search
title_full_unstemmed From Quinoline to Quinazoline‐Based S. aureus NorA Efflux Pump Inhibitors by Coupling a Focused Scaffold Hopping Approach and a Pharmacophore Search
title_short From Quinoline to Quinazoline‐Based S. aureus NorA Efflux Pump Inhibitors by Coupling a Focused Scaffold Hopping Approach and a Pharmacophore Search
title_sort from quinoline to quinazoline‐based s. aureus nora efflux pump inhibitors by coupling a focused scaffold hopping approach and a pharmacophore search
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8518402/
https://www.ncbi.nlm.nih.gov/pubmed/34032014
http://dx.doi.org/10.1002/cmdc.202100282
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