Research Keyword: dermatophytes

Wildlife Dermatophytoses in Central Italy (Umbria and Marche Regions): A Fifteen-Year Investigation (2010–2024)

Researchers studied fungal skin infections in wild animals across two Italian regions over 15 years, finding that about 11% carried dermatophyte fungi. Grey squirrels were most commonly infected, and some of these fungi can spread to humans through contact. The study highlights how wild animals act as sentinels for emerging diseases and emphasizes the importance of protective equipment when handling wildlife.

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Climate Change, Natural Disasters, and Cutaneous Fungal Infections

Climate change and natural disasters are creating conditions that allow fungal infections to spread more easily and affect people in new ways. Warmer temperatures help fungi adapt to infect humans, while floods, earthquakes, and hurricanes expose people to fungal spores and create wounds through which infections can enter. Doctors need to be alert for unusual fungal infections after disasters, especially since some of these infections can cause serious complications and resist common treatments.

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Onychomycosis in the US Pediatric Population—An Emphasis on Fusarium Onychomycosis

This study examined nail fungus infections in American children using advanced molecular testing. Researchers found that elementary school-aged children (ages 6-11) have the highest rates of nail fungus, usually caused by common fungi like Trichophyton rubrum. Notably, Fusarium, an environmental fungus that was once rare in nail infections, is becoming increasingly common, especially in older teenagers, which may require different treatment approaches.

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Superficial Fungal Infections in Children—What Do We Know?

Superficial fungal infections like ringworm and athlete’s foot are common in children and are caused by fungi, yeasts, or molds that spread through contact with infected people, animals, or contaminated surfaces. These infections primarily affect the scalp, skin, and nails, with scalp infections being most common in young children. Treatment typically uses topical creams for mild cases or oral medications for more severe infections, particularly those affecting nails or the scalp. Proper hygiene, avoiding contaminated areas, and limiting contact with infected individuals or animals are key to prevention.

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Antifungal effect of soil Bacillus bacteria on pathogenic species of the fungal genera Aspergillus and Trichophyton

Scientists found that certain bacteria naturally occurring in soil can effectively kill harmful fungi that cause infections in humans. By isolating and testing different Bacillus bacteria species, researchers discovered that some were even more effective at inhibiting fungal growth than commonly used antifungal medications. This finding suggests a promising natural alternative to combat fungal infections, especially as many fungi are becoming resistant to traditional antifungal drugs.

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Clinico-mycological study of superficial mycoses and correlation with anti-fungal susceptibility among the Candida isolates in a teaching institution of Western India

This study examined fungal skin infections in 330 patients in Western India, identifying which fungi cause these infections and which antifungal drugs work best. Researchers found that Candida yeasts were especially common in nail infections while Trichophyton fungi were more common in skin infections. The antifungal drug caspofungin was most effective against Candida, while the commonly used drug fluconazole showed increasing resistance.

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The Effect of Topical Ketoconazole and Topical Miconazole Nitrate in Modulating the Skin Microbiome and Mycobiome of Patients With Tinea Pedis

This study examined how two common antifungal creams (ketoconazole and miconazole) affect the complex community of bacteria and fungi living on the skin of people with athlete’s foot. Both treatments effectively reduced the harmful fungus causing the infection and improved symptoms, with ketoconazole working slightly faster. However, the researchers found that while these treatments reduced the disease-causing fungus, the skin’s normal microbial community did not fully recover to a healthy state, particularly in the spaces between the toes.

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The association of Yarrowia lipolytica with onychomycosis

A 20-year-old woman suffered from a persistent toenail infection that didn’t respond to several standard antifungal treatments over five years. Researchers identified the culprit as Yarrowia lipolytica, a rare yeast not previously known to cause nail infections. Testing showed this yeast was resistant to common antifungal medications the patient had received, explaining why previous treatments failed. This unusual case highlights the importance of properly identifying fungal pathogens and testing them for drug resistance before starting treatment.

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Isolation and Identification of Chemical Compounds from Agaricus blazei Murrill and Their In Vitro Antifungal Activities

Researchers extracted and identified six chemical compounds from A. blazei mushrooms and tested their ability to fight fungal infections. The compounds showed promising activity against common fungal pathogens that cause infections in humans. This research suggests that A. blazei could be developed into natural antifungal treatments. The findings add to growing evidence that medicinal mushrooms contain valuable bioactive compounds with therapeutic potential.

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Coexistence of Malassezia Species and Microsporum canis in the Lesions of Adult with Tinea Capitis

A 60-year-old woman developed unusual hair loss and scalp inflammation that looked like dandruff but was actually a fungal infection caused by multiple fungi working together. Doctors found three different fungi in her scalp samples: one dermatophyte and two Malassezia species. Lab experiments showed that the Malassezia fungi actually helped the main disease-causing fungus grow better, which explains why the condition looked different from typical cases. After three months of antifungal medication, her symptoms cleared and her hair grew back.

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