Disease: vulvovaginal candidiasis

Addressing Critical Fungal Pathogens Under a One Health Perspective: Key Insights from the Portuguese Association of Medical Mycology

This comprehensive study by Portugal’s mycology experts examines four dangerous fungi that cause severe infections: Aspergillus fumigatus, Candida auris, Candida albicans, and Cryptococcus neoformans. The research shows that Portugal’s hospitals have varying capabilities to diagnose and treat these infections, with some laboratories well-equipped and others lacking advanced diagnostic tools. The study found concerning increases in antifungal resistance and highlights that these fungi live in hospitals, water systems, soil, and even animals, emphasizing the need for integrated approaches connecting human, animal, and environmental health to better protect public health.

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Invasive Candidiasis in Contexts of Armed Conflict, High Violence, and Forced Displacement in Latin America and the Caribbean (2005–2025)

This comprehensive review examines candida fungal infections in conflict-affected areas of Latin America and the Caribbean, where wars, violence, and displacement create dangerous conditions that make infections more likely and harder to treat. In these regions, mortality from candida bloodstream infections reaches 65% or higher among displaced populations, compared to about 45-60% in regular hospitals. The main problems are lack of proper diagnostic equipment, limited access to effective antifungal medications, malnutrition, overcrowding in shelters, and the emergence of drug-resistant fungal strains.

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The antifungal mechanism of EntV-derived peptides is associated with a reduction in extracellular vesicle release

Researchers discovered that a small peptide derived from a bacterium called EntV can fight Candida fungal infections by targeting specialized vesicles (tiny sacs) that fungi use to spread infections. Unlike traditional antifungal drugs that kill fungi, EntV works by blocking the release of these vesicles, reducing the fungus’s ability to infect and form protective biofilms. This new approach could lead to treatments that work against drug-resistant fungi without the toxicity issues of current antifungals.

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