Synthesis, spectroscopic characterization, and antibacterial activity of chalcone (2E)‐1‐(3′‐aminophenyl)‐3‐(4‐dimethylaminophenyl)‐prop‐2‐en‐1‐one against multiresistant Staphylococcus aureus carrier of efflux pump mechanisms and β‐lactamase

Author:

da Silva Larissa1,Donato Isydório Alves1,Bezerra Suieny Rodrigues1,dos Santos Hélcio Silva234ORCID,Bandeira Paulo Nogueira2,do Nascimento Maria Thalia Ramos2,Guedes Jesyka Macêdo2,Freitas Priscila Ramos5,de Araújo Ana Carolina Justino5,de Freitas Thiago Sampaio5,Coutinho Henrique Douglas Melo5ORCID,de Matos Yedda Maria Lobo Soares1,de Oliveira Lígia Cláudia Castro6,da Cunha Francisco Assis Bezerra1234

Affiliation:

1. Laboratory of Semi‐Arid Bioprospecting (LABSEMA), Department of Biological Chemistry URCA Crato Brazil

2. Chemical Laboratory of Natural and Synthetic Products (LQPN) State University of Ceará (UECE) Fortaleza Brazil

3. Department of Chemistry Vale do Acaraú State University Sobral Brazil

4. Postgraduate Program in Natural Sciences ‐ PPGCN State University of Ceará Fortaleza Brazil

5. Laboratory of Microbiology and Molecular Biology (LMBM), Department of Biological Chemistry URCA Crato Brazil

6. Laboratory of Spectroanalytical, Biological and Environmental Chemistry—LEQBA URCA Crato Brazil

Abstract

AbstractBackgroundThe bacterium Staphylococcus aureus has stood out for presenting a high adaptability, acquiring resistance to multiple drugs. The search for natural or synthetic compounds with antibacterial properties capable of reversing the resistance of S. aureus is the main challenge to be overcome today. Natural products such as chalcones are substances present in the secondary metabolism of plants, presenting important biological activities such as antitumor, antidiabetic, and antimicrobial activity.ObjectivesIn this context, the aim of this work was to synthesize the chalcone (2E)‐1‐(3'‐aminophenyl)‐3‐(4‐dimethylaminophenyl)‐prop‐2‐en‐1‐one with nomenclature CMADMA, confirm its structure by nuclear magnetic resonance (NMR), and evaluate its antibacterial properties.MethodsThe synthesis methodology used was that of Claisen‐Schmidt, and spectroscopic characterization was performed by NMR. For microbiological assays, the broth microdilution methodology was adopted in order to analyze the antibacterial potential of chalcones and to analyze their ability to act as a possible inhibitor of β‐lactamase and efflux pump resistance mechanisms, present in S. aureus strain K4100.ResultsThe results obtained show that CMADMA does not show direct antibacterial activity, expressing a MIC of ≥1024 μg/mL, or on the enzymatic mechanism of β‐lactamase; however, when associated with ethidium bromide in efflux pump inhibition assays, CMADMA showed promising activity by reducing the MIC of the bromide from 64 to 32 μg/mL.ConclusionWe conclude that the chalcone synthesized in this study is a promising substance to combat bacterial resistance, possibly acting in the inhibition of the QacC efflux pump present in S. aureus strain K4100, as evidenced by the reduction in the MIC of ethidium bromide.

Publisher

Wiley

Subject

Pharmacology (medical),Pharmacology

Reference55 articles.

1. Design, synthesis and antibacterial activity of chalcones against MSSA and MRSA planktonic cells and biofilms

2. Brasil. Agência Nacional de Vigilância Sanitária. RM controle: “Resistência Microbiana – Mecanismos e Impactos”.Boletim de Segurança do Paciente e Qualidade em Serviços de Saúde n° 14.2021. Acessed: 04 Jun 2022https://www.ccih.med.br/anvisa-lancaplano-nacional-para-a-prevencao-e-o-controle-da-resistencia-microbiana-nos-servicos-de-saude/

3. Reversing resistance to counter antimicrobial resistance in the World Health Organisation’s critical priority of most dangerous pathogens

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