Investigation of naturally derived compounds with antibiofilm activity against Candida albicans

Novel compounds from natural sources that can inhibit and eradicate Candida albicans biofilms were investigated. Four compounds (26.7%) inhibited 50% or more biofilm formation at a single dose out of fifteen compounds evaluated. Among them, three terpenoid derivatives (2, 4 and 6) did not show antifungal activity at the highest concentration used (MIC50 ≥ 500 µM). Compound 6 (jatrophone) stood out for its greatest inhibition potency (BIC50 = 64.36 ± 1.05 µM) and its ability to eradicate biofilms (BEC50 = 215.90 ± 1.07 µM). This compound also reduced the number of adherent cells, hyphae and pseudohyphae formed after exposure to BIC50 and BEC50. Thus, three terpenoid derivatives with antibiofilm activity and no antifungal activity were identified, with compound 6 (jatrophone) standing out as a promising natural lead compound for inhibition and eradication by interfering with adhesion and filamentation in the biofilm.

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Publication Details

Journal
Natural Product Research
Published
2026-10-05
DOI
https://doi.org/10.1080/14786419.2026.2738216
Primary Topic
Antifungal resistance and susceptibility
Type
article
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article

Investigation of naturally derived compounds with antibiofilm activity against Candida albicans

Tânia Fraga Barros, Carolina do Rosário Esteves Guimarães, Thalisson Amorim de Souza, Lucas Silva Abreu et al.
Natural Product Research
Antifungal resistance and susceptibility
article

Investigation of naturally derived compounds with antibiofilm activity against Candida albicans

Tânia Fraga Barros, Carolina do Rosário Esteves Guimarães, Thalisson Amorim de Souza, Lucas Silva Abreu, Humberto Fonseca de Freitas, Josean Fechine Tavares
article en

Abstract

Novel compounds from natural sources that can inhibit and eradicate Candida albicans biofilms were investigated. Four compounds (26.7%) inhibited 50% or more biofilm formation at a single dose out of fifteen compounds evaluated. Among them, three terpenoid derivatives (2, 4 and 6) did not show antifungal activity at the highest concentration used (MIC50 ≥ 500 µM). Compound 6 (jatrophone) stood out for its greatest inhibition potency (BIC50 = 64.36 ± 1.05 µM) and its ability to eradicate biofilms (BEC50 = 215.90 ± 1.07 µM). This compound also reduced the number of adherent cells, hyphae and pseudohyphae formed after exposure to BIC50 and BEC50. Thus, three terpenoid derivatives with antibiofilm activity and no antifungal activity were identified, with compound 6 (jatrophone) standing out as a promising natural lead compound for inhibition and eradication by interfering with adhesion and filamentation in the biofilm.

Natural Product Research
Universidade Federal da Bahia (BR), Universidade do Estado da Bahia (BR), Universidade Federal Fluminense (BR), Universidade Federal da Paraíba (BR), Universidade Estadual de Feira de Santana (BR), Instituto Federal Fluminense (BR)
Good health and well-being
Openalex Percentile: Top 11%
Antifungal resistance and susceptibility
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Investigation of naturally derived compounds with antibiofilm activity against Candida albicans — Tânia Fraga Barros, Carolina do Rosário Esteves Guimarães, et al. · Natural Product Research (2026) | TGRS Research Map | TGRS