Research Keyword: Wound healing

Successful Treatment of Fungal Dermatitis in a Bottlenose Dolphin (Tursiops truncatus)

A bottlenose dolphin at a Japanese aquarium developed a serious fungal infection on its tail fin while suffering from severe digestive problems and weight loss. The infection was caused by two types of fungi that are normally hard to treat because they resist many antifungal medications. Veterinarians successfully treated the dolphin using a combination of two antifungal drugs (voriconazole and terbinafine), surgical removal of dead tissue, and daily wound cleaning with special solutions. The dolphin’s wound eventually healed completely, and this is the first documented successful treatment of these particular fungal infections in bottlenose dolphins.

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Functionalized Micellar Membranes from Medicinal Mushrooms as Promising Self-Growing Bioscaffolds

Scientists created special membranes from medicinal mushrooms that can help heal wounds and regenerate damaged skin. These membranes are grown naturally in liquid culture and enriched with extract from mango peels to fight bacteria and promote healing. The material is completely natural, biodegradable, and performs better than many conventional wound healing materials, making it an eco-friendly option for medical applications.

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Cutaneous Mucormycosis Following Polytrauma: A Multidisciplinary Approach

A 22-year-old man suffered severe injuries from a motorcycle-truck collision that damaged his perineal area and left thigh. Despite antibiotics and wound therapy, a dangerous fungal infection called mucormycosis developed in the wound. The medical team treated this by repeatedly removing infected tissue, using powerful antifungal medications (amphotericin B and posaconazole), and carefully managing the wound with special therapy before skin grafting, ultimately achieving successful healing.

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Isolation, Characterization, and Wound-Healing Potential of β-D-Glucan from Lycoperdon pyriforme Schaeff

Researchers isolated and studied a compound called β-D-glucan from puffball mushrooms (Lycoperdon pyriforme) that have been traditionally used to heal wounds and stop bleeding. Laboratory tests showed this compound safely promotes the movement and growth of skin cells that help wounds close without harming red blood cells, and it actually helps blood clot faster. These findings support the traditional use of this mushroom and suggest it could be developed into a new natural wound-healing treatment.

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Modern Pro-Health Applications of Medicinal Mushrooms: Insights into the Polyporaceae Family, with a Focus on Cerrena unicolor

This review explores how medicinal mushrooms, particularly Cerrena unicolor, can be used to improve health through functional foods and supplements. The mushroom contains natural compounds with powerful properties including fighting cancer cells, killing harmful bacteria and viruses, and protecting the body from oxidative stress. Research shows these mushrooms could be incorporated into dairy products and other foods to create innovative health-promoting products for consumers.

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Fungal and Microalgal Chitin: Structural Differences, Functional Properties, and Biomedical Applications

Chitin is a natural fiber found in mushrooms, algae, and shellfish that has many medical and industrial uses. Traditional chitin from shellfish shells has environmental and contamination problems, so scientists are studying chitin from mushrooms and algae as cleaner alternatives. These sources produce chitin with different structures that can be better for certain medical applications, and can be extracted using environmentally friendly methods.

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Fungal and Microalgal Chitin: Structural Differences, Functional Properties, and Biomedical Applications

Chitin is a natural fiber found in mushroom cell walls and algae that can be extracted and used for medical applications like wound healing and drug delivery. Traditional chitin from shellfish shells contains heavy metals and requires harsh chemicals to extract, but chitin from mushrooms and algae is cleaner, more sustainable, and can be grown year-round. Scientists have developed environmentally friendly extraction methods using special solvents and enzymes that preserve the chitin’s useful properties. This makes fungal and algal chitin promising alternatives for creating biomedical materials and packaging.

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High Efficiency In Vitro Wound Healing of Dictyophora indusiata Extracts via Anti-Inflammatory and Collagen Stimulating (MMP-2 Inhibition) Mechanisms

This study examines bamboo mushroom extracts for their ability to promote skin wound healing. Researchers tested three different parts of immature bamboo mushrooms and found that the core extract was particularly effective at reducing inflammation and preventing excessive collagen breakdown, which helps wounds heal properly without excessive scarring. The extract performed as well as or better than standard pharmaceutical agents, suggesting it could be a promising natural ingredient for wound healing products.

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