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Boric Acid Inhibition of Trichophyton rubrum Growth and Conidia Formation
1Department of Biochemistry and Nutrition, Des Moines University, 3200 Grand Avenue, Des Moines, IA, 50312, USA. mschmidt@dmu.edu.
Abstract:
Trichophyton rubrum is a common human dermatophyte that is the causative agent of 80-93% of fungal infections of the skin and nails. While dermatophyte infections in healthy people are easily treatable with over-the-counter medications, such infections pose a higher risk for patients with compromised immune function and impaired regenerative potential. The efficacy of boric acid (BA) for the treatment of vaginal yeast infections prompted an investigation of the effect of BA on growth and morphology of T. rubrum. This is of particular interest since BA facilitates wound healing, raising the possibility that treating athlete's foot with BA, either alone or in combination with other antifungal drugs, would combine the benefits of antimicrobial activity and tissue regeneration to accelerate healing of infected skin. The data presented here show that BA represses T. rubrum growth at a concentration reported to be beneficial for host tissue regeneration. Oxygen exposure increases BA toxicity, and mycelia growing under BA stress avoid colonizing the surface of the growth surface, which leads to a suppression of aerial mycelium growth and surface conidia formation. BA penetrates into solid agar matrices, but the relative lack of oxygen below the substrate surface limits the effectiveness of BA in suppressing growth of embedded T. rubrum cells.
Insights
Boric acid (BA) inhibits Trichophyton rubrum growth, a common cause of fungal skin infections. BA shows potential for treating athlete's foot by combining antifungal action with wound healing properties.
Area of Science:
- Mycology
- Dermatology
- Antimicrobial Research
Background:
- Trichophyton rubrum causes most human fungal skin and nail infections.
- While treatable in healthy individuals, infections are riskier for immunocompromised patients.
- Boric acid (BA) is effective for yeast infections and aids wound healing.
Purpose of the Study:
- Investigate the effect of boric acid (BA) on T. rubrum growth and morphology.
- Explore BA's potential for treating athlete's foot, combining antifungal and regenerative benefits.
Main Methods:
- Assessing BA's impact on T. rubrum growth and morphology in vitro.
- Evaluating the influence of oxygen exposure on BA's antifungal activity.
Main Results:
- BA repressed T. rubrum growth at concentrations beneficial for tissue regeneration.
- Oxygen exposure enhanced BA's antifungal toxicity.
- T. rubrum mycelia under BA stress showed reduced surface colonization, aerial growth, and conidia formation.
- BA penetration into agar was observed, but oxygen limitation reduced efficacy against embedded cells.
Conclusions:
- Boric acid demonstrates antifungal activity against T. rubrum.
- BA's dual action of antimicrobial effect and wound healing support suggests therapeutic potential for athlete's foot.
- Oxygen availability is a critical factor influencing BA's efficacy against T. rubrum.
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