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A 96 Well Microtiter Plate-based Method for Monitoring Formation and Antifungal Susceptibility Testing of Candida albicans Biofilms
Published on: October 21, 2010
Performance of Two Extracts Derived from Propolis on Mature Biofilm Produced by Candida albicans
Isabella Letícia Esteves Barros1,2, Flávia Franco Veiga1,2, Lidiane Vizioli de Castro-Hoshino3
1Postgraduate Program in Health Sciences, State University of Maringá, Colombo Avenue, 5790, Maringá 87020-900, PR, Brazil.
Abstract:
Species of the Candida genus represent the third most common cause of onychomycosis, the most frequent and difficult to treat nail infection. Onychomycosis has been attributed to fungi organized in biofilm and some natural products have proved promising for its treatment. This study aimed to evaluate the antibiofilm activity of propolis extract (PE) and its by-product (WPE) on 7-day preformed biofilms produced by Candida albicans in polystyrene microplates, as well as in an ex vivo model on human nail fragments. The cytotoxicity and permeation capacity were also assessed. Firstly, multiple parameters were evaluated over 7 days to elucidate the dynamics of biofilm formation by C. albicans. The cell viability and total biomass did not vary much from the beginning; however, days 3 and 4 were crucial in terms of metabolic activity, which was significantly increased, and the levels of extracellular matrix components, wherein proteins and nucleic acids experienced an increase, but polysaccharide levels dropped. Architecturally, one-day biofilm showed a monolayer of organized cells (blastoconidia, hyphae, and pseudohyphae), while in the seven-day biofilm there was a three-dimensional well-structured and complex biofilm. This yeast was also able to form a biofilm on both surfaces of the nail, without an additional nutritional source. Both extracts showed excellent antibiofilm activity against the 7-day preformed biofilm and were not toxic to Vero cells at concentrations compatible with the antifungal and antibiofilm activities. Both extracts permeated the experimentally infected nail, with WPE being more efficient. The results of this study, taken together, reinforce the potential of these natural products, containing propolis, as a safe option for the topical treatment of onychomycosis.
Insights
Propolis extract and its by-product show potent antibiofilm activity against Candida albicans, offering a safe topical treatment for difficult-to-treat nail infections like onychomycosis.
Area of Science:
- Mycology
- Natural Products Chemistry
- Dermatology
Background:
- Onychomycosis, a common nail infection, is often caused by Candida species forming biofilms.
- Treating onychomycosis is challenging due to fungal biofilm resistance.
- Natural products like propolis show promise for antifungal therapies.
Purpose of the Study:
- To evaluate the antibiofilm efficacy of propolis extract (PE) and its by-product (WPE) against Candida albicans.
- To assess the extracts' activity on preformed biofilms in vitro and ex vivo on human nail fragments.
- To determine the cytotoxicity and nail permeation capacity of the propolis extracts.
Main Methods:
- Candida albicans biofilm formation dynamics were studied over 7 days in microplates.
- Antimicrobial activity was tested against 7-day preformed biofilms.
- Cytotoxicity was assessed using Vero cells, and permeation was evaluated on human nail fragments.
Main Results:
- Candida albicans formed complex, 3D biofilms on nail fragments within 7 days.
- Both PE and WPE demonstrated significant antibiofilm activity against mature biofilms.
- Extracts were non-toxic to Vero cells at effective concentrations and permeated nail fragments, with WPE showing higher efficiency.
Conclusions:
- Propolis extracts (PE and WPE) possess strong antibiofilm properties against Candida albicans.
- These natural products represent a potentially safe and effective topical treatment for onychomycosis.
- Further research into propolis for nail fungal infections is warranted.

