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Abstract

BDDE-Inspired Chalcone Derivatives as New Antimicrobial Adjuvants †

1
Laboratory of Organic and Pharmaceutical Chemistry, Department of Chemical Sciences, Faculty of Pharmacy, University of Porto, 4050-313 Porto, Portugal
2
CIIMAR—Interdisciplinary Centre of Marine and Environmental Research, Avenida General Norton de Matos, S/N, 4450-208 Matosinhos, Portugal
3
Department of Medical Microbiology, Albert Szent-Györgyi Health Center and Albert Szent-Györgyi Medical School, University of Szeged, Semmelweis utca 6, 6725 Szeged, Hungary
4
ICBAS—Institute of Biomedical Sciences Abel Salazar, University of Porto, Rua de Jorge Viterbo Ferreira 228, 4050-313 Porto, Portugal
5
Laboratory of Microbiology, Department of Biological Sciences, Faculty of Pharmacy, University of Porto, Rua de Jorge Viterbo Ferreira 228, 4050-313 Porto, Portugal
*
Authors to whom correspondence should be addressed.
Presented at the 8th International Electronic Conference on Medicinal Chemistry, 1–30 November 2022; Available online: https://ecmc2022.sciforum.net/.
Med. Sci. Forum 2022, 14(1), 68; https://doi.org/10.3390/ECMC2022-13650
Published: 16 November 2022
(This article belongs to the Proceedings of The 8th International Electronic Conference on Medicinal Chemistry)

Abstract

:
The effective response of antibiotics is threatened by the proliferation of micro-organisms that manifest resistance mechanisms, leading to an increase of progressively untreatable infectious diseases around the world. One solution to this problem could lie in shifting the strategy from searching for new antibacterials to discovering new compounds that potentiate the antimicrobial activity of current antibiotics, therefore reverting resistance, through the interference with several mechanisms including biofilm formation and efflux pumps (EPs). Using bis(2,3-dibromo-4,5-dihydroxybenzyl) ether (BDDE) as a template, a macroalgae brominated bromophenol with antimicrobial activity, a series of 18 chalcone derivatives was prepared and evaluated for its antimicrobial activity and potential to fight antibiotic resistance. This includes seven chalcones, six dihydrochalcones and five diarylpropanes. Among them, two chalcones exhibited interesting antifungal activity and all compounds reversed resistance to vancomycin in the environmental isolate Enterococcus faecalis B3/101. Three compounds caused a four-fold decrease in the minimum inhibitory concentration (MIC) values of vancomycin against E. faecalis. All the dihydrochalcones and diarylpropanes displayed inhibition of EPs and biofilm formation in the tested multidrug-resistant strain, suggesting that these compounds are EP inhibitors. Notably, dihydrochalcones and diarylpropanes did not show cytotoxicity in a mouse embryonic fibroblast cell line and they can potentially be regarded as hits for bacterial EP inhibition.

Supplementary Materials

The following are available online at https://www.mdpi.com/article/10.3390/ECMC2022-13650/s1.

Author Contributions

Conceptualization, E.P., P.M.C., M.P., G.S., E.S. and H.C.; methodology, G.S., E.S. and H.C.; data analysis, A.J., F.D., J.F.-S. and N.S.; investigation, A.J., F.D., J.F.-S. and N.S.; writing—original draft preparation and final manuscript, A.J. and F.D.; writing—review and editing, E.P., P.M.C., M.P., G.S., E.S. and H.C.; supervision, E.S. and H.C. All authors have read and agreed to the published version of the manuscript.

Funding

This research was supported by national funds through FCT (Foundation for Science and Technology) within the scope of UIDB/04423/2020, UIDP/04423/2020 (Group of Natural Products and Medicinal Chemistry-CIIMAR), and under the projects PTDC/SAU-PUB/28736/2017 (reference POCI-01–0145-FEDER-028736), and PTDC/CTA-AMB/0853/2021 co-financed by COMPETE 2020, Portugal 2020 and the European Union through the ERDF and by FCT through national funds supported by NORTE2020, through ERDF, and CHIRALSINTESE_APSFCT_IINFACTS_2021. This work was also funded by the structured program of R&D&I ATLANTIDA-Platform for the monitoring of the North Atlantic Ocean and tools for the sustainable exploitation of the marine resources (reference NORTE-01-0145-FEDER-000040), supported by the North Portugal Regional Operational Program (NORTE2020), through the European Regional Development Fund (ERDF). Ana Jesus and Fernando Durães acknowledge their PhD grants (UI/BD/151319/2021 and SFRH/BD/144681/2019, respectively).

Informed Consent Statement

Not applicable.

Conflicts of Interest

The authors declare no conflict of interest.
Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations.

Share and Cite

MDPI and ACS Style

Jesus, A.; Durães, F.; Szemerédi, N.; Freitas-Silva, J.; Costa, P.M.; Pinto, E.; Pinto, M.; Spengler, G.; Sousa, E.; Cidade, H. BDDE-Inspired Chalcone Derivatives as New Antimicrobial Adjuvants. Med. Sci. Forum 2022, 14, 68. https://doi.org/10.3390/ECMC2022-13650

AMA Style

Jesus A, Durães F, Szemerédi N, Freitas-Silva J, Costa PM, Pinto E, Pinto M, Spengler G, Sousa E, Cidade H. BDDE-Inspired Chalcone Derivatives as New Antimicrobial Adjuvants. Medical Sciences Forum. 2022; 14(1):68. https://doi.org/10.3390/ECMC2022-13650

Chicago/Turabian Style

Jesus, Ana, Fernando Durães, Nikoletta Szemerédi, Joana Freitas-Silva, Paulo Martins Costa, Eugénia Pinto, Madalena Pinto, Gabriella Spengler, Emília Sousa, and Honorina Cidade. 2022. "BDDE-Inspired Chalcone Derivatives as New Antimicrobial Adjuvants" Medical Sciences Forum 14, no. 1: 68. https://doi.org/10.3390/ECMC2022-13650

APA Style

Jesus, A., Durães, F., Szemerédi, N., Freitas-Silva, J., Costa, P. M., Pinto, E., Pinto, M., Spengler, G., Sousa, E., & Cidade, H. (2022). BDDE-Inspired Chalcone Derivatives as New Antimicrobial Adjuvants. Medical Sciences Forum, 14(1), 68. https://doi.org/10.3390/ECMC2022-13650

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