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Mebendazole Inhibits Histoplasma capsulatum In Vitro Growth and Decreases Mitochondrion and Cytoskeleton Protein
Marcos Abreu Almeida1, Andrea Reis Bernardes-Engemann1, Rowena Alves Coelho1
1Laboratório de Micologia, Instituto Nacional de Infectologia Evandro Chagas, Fundação Oswaldo Cruz, Rio de Janeiro 21040-900, Brazil.
Abstract:
Histoplasmosis is a frequent mycosis in people living with HIV/AIDS and other immunocompromised hosts. Histoplasmosis has high rates of mortality in these patients if treatment is unsuccessful. Itraconazole and amphotericin B are used to treat histoplasmosis; however, both antifungals have potentially severe pharmacokinetic drug interactions and toxicity. The present study determined the minimal inhibitory and fungicidal concentrations of mebendazole, a drug present in the NIH Clinical Collection, to establish whether it has fungicidal or fungistatic activity against Histoplasma capsulatum. Protein extracts from H. capsulatum yeasts, treated or not with mebendazole, were analyzed by proteomics to understand the metabolic changes driven by this benzimidazole. Mebendazole inhibited the growth of 10 H. capsulatum strains, presenting minimal inhibitory concentrations ranging from 5.0 to 0.08 µM. Proteomics revealed 30 and 18 proteins exclusively detected in untreated and mebendazole-treated H. capsulatum yeast cells, respectively. Proteins related to the tricarboxylic acid cycle, cytoskeleton, and ribosomes were highly abundant in untreated cells. Proteins related to the nitrogen, sulfur, and pyrimidine metabolisms were enriched in mebendazole-treated cells. Furthermore, mebendazole was able to inhibit the oxidative metabolism, disrupt the cytoskeleton, and decrease ribosomal proteins in H. capsulatum. These results suggest mebendazole as a drug to be repurposed for histoplasmosis treatment.
Insights
Mebendazole shows potential as a new treatment for histoplasmosis, a serious fungal infection common in immunocompromised individuals. This study found mebendazole effectively inhibits Histoplasma capsulatum growth and alters its metabolism.
Area of Science:
- Mycology
- Infectious Diseases
- Drug Discovery
Background:
- Histoplasmosis is a significant cause of mortality in individuals with HIV/AIDS and other immunocompromised conditions.
- Current treatments like itraconazole and amphotericin B have limitations due to drug interactions and toxicity.
Purpose of the Study:
- To evaluate the antifungal activity of mebendazole against Histoplasma capsulatum.
- To investigate the metabolic effects of mebendazole on H. capsulatum using proteomics.
Main Methods:
- Determined minimal inhibitory and fungicidal concentrations of mebendazole against 10 H. capsulatum strains.
- Analyzed protein extracts from mebendazole-treated and untreated H. capsulatum yeasts via proteomics.
Main Results:
- Mebendazole demonstrated potent inhibition of H. capsulatum growth, with minimal inhibitory concentrations ranging from 0.08 to 5.0 µM.
- Proteomics revealed significant metabolic shifts, including inhibition of oxidative metabolism, cytoskeleton disruption, and decreased ribosomal proteins in treated cells.
Conclusions:
- Mebendazole exhibits fungistatic and fungicidal activity against H. capsulatum.
- Mebendazole's multifaceted effects on fungal metabolism and structure suggest its potential repurposing for histoplasmosis treatment.
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