Bioactivity and Molecular Docking Studies of Derivatives from Cinnamic and Benzoic Acids

Author:

Perez-Castillo Yunierkis1ORCID,Lima Tamires C.2ORCID,Ferreira Alana R.3ORCID,Silva Cecília R.4ORCID,Campos Rosana S.4ORCID,Neto João B. A.4ORCID,Magalhães Hemerson I. F.3ORCID,Cavalcanti Bruno C.5ORCID,Júnior Hélio V. N.4ORCID,de Sousa Damião P.3ORCID

Affiliation:

1. Escuela de Ciencias Físicas y Matemáticas, Universidad de Las Américas, Quito, Ecuador

2. Department of Pharmacy, Federal University of Sergipe, CEP, 49100-000 São Cristóvão, Sergipe, Brazil

3. Department of Pharmaceutical Sciences, Federal University of Paraíba, CEP, 58051-970 João Pessoa, Paraíba, Brazil

4. Department of Clinical and Toxicological Analysis, School of Pharmacy, Laboratory for Bioprospection and Experiments in Yeast, LABEL, Federal University of Ceará, Fortaleza, CE, Brazil

5. Department of Physiology and Pharmacology, Federal University of Ceará, Fortaleza, CE, Brazil

Abstract

Over the last decade, there has been a dramatic increase in the prevalence and gravity of systemic fungal diseases. This study aimed therefore at evaluating the antifungal potential of ester derivatives of benzoic and cinnamic acids from three Candida species. The compounds were prepared via Fischer esterification, and the antifungal assay was performed by the microdilution method in 96-well microplates for determining the minimal inhibitory concentrations (MICs). The findings of the antifungal tests revealed that the analogue compound methyl ferulate, methyl o-coumarate, and methyl biphenyl-3-carboxylate displayed an interesting antifungal activity against all Candida strains tested, with MIC values of 31.25-62.5, 62.5-125, and 62.5 μg/ml, respectively. A preliminary Structure-Activity Relationship study of benzoic and cinnamic acid derivatives has led to the recognition of some important structural requirements for antifungal activity. The results of molecular docking indicate that the presence of the enoate moiety along with hydroxyl and one methoxy substitution in the phenyl ring has a positive effect on the bioactivity of compound 7 against Candida albicans. These observations further support the hypothesis that the antifungal activity of compound 7 could be due to its binding to multiple targets, specifically to QR, TS, and ST-PK. Additional experiments are required in the future to test this hypothesis and to propose novel compounds with improved antifungal activity.

Funder

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Publisher

Hindawi Limited

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

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