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Infecting Mice with Malassezia spp. to Study the Fungus-Host Interaction
Published on: November 6, 2019
Malassezia Yeasts in Veterinary Dermatology: An Updated Overview
1École Nationale Vétérinaire d'Alfort, BioPôle Alfort, EA Dynamyc, UPEC, EnvA, Maisons-Alfort, France.
Abstract:
Lipophilic yeasts of the genus Malassezia are important skin commensals and opportunistic skin pathogens in a variety of animals. The species M. pachydermatis was first isolated from the skin of a captive Indian rhinoceros with an exfoliative dermatitis in 1925, recognized as an important otic pathogen of dogs in the 1950's, and finally accepted, after several years of controversy, as a common cause of canine dermatitis in the 1990's. Since then, there has been considerable research into the biology of Malassezia yeasts and their interaction with their animal hosts. In dogs and cats, M. pachydermatis is associated with ceruminous otitis externa and a "seborrhoeic" dermatitis, wherein pruritic, erythematous skin lesions, often with brown/black greasy, malodourous material matting hairs, preferentially develop in intertriginous areas. Skin disease is favored by folds, underlying hypersensitivity disorders, endocrinopathies, defects of cornification, and in cats, various visceral paraneoplastic syndromes. Diagnosis is based on detecting the yeast in compatible skin lesions, usually by cytology, and observing a clinical and mycological response to therapy. Treatment normally comprises topical or systemic azole therapy, often with miconazole-chlorhexidine shampoos or oral itraconazole or ketoconazole. Management of concurrent diseases is important to minimize relapses. Historically, wild-type Malassezia isolates from dogs and cats were typically susceptible to azoles, with the exception of fluconazole, but emerging azole resistance in field strains has recently been associated with either mutations or quadruplication of the ERG11 gene. These observations have prompted increased interest in alternative topical antifungal drugs, such as chlorhexidine, and various essential oils. Further clinical trials are awaited with interest.
Insights
Malassezia pachydermatis causes skin and ear infections in animals, particularly dogs and cats. Emerging antifungal resistance necessitates exploring alternative treatments like chlorhexidine and essential oils.
Area of Science:
- Veterinary Dermatology
- Mycology
- Antimicrobial Resistance
Background:
- Malassezia yeasts, particularly M. pachydermatis, are common skin commensals and opportunistic pathogens in animals.
- M. pachydermatis is a recognized cause of otitis externa and dermatitis in dogs and cats, often presenting with pruritic, erythematous lesions.
Purpose of the Study:
- To review the biology of Malassezia yeasts and their role in animal skin diseases.
- To discuss current diagnostic and therapeutic strategies for Malassezia-associated dermatological conditions.
- To highlight the emergence of azole resistance and the need for alternative treatments.
Main Methods:
- Literature review of Malassezia yeast biology, pathogenesis, diagnosis, and treatment.
- Analysis of historical and recent research on Malassezia-associated skin diseases in animals.
- Examination of emerging antifungal resistance patterns and alternative therapeutic options.
Main Results:
- Malassezia-associated skin disease is linked to factors like skin folds, allergies, and endocrine disorders.
- Diagnosis relies on identifying yeast in lesions and response to therapy, typically azoles.
- Emerging azole resistance in M. pachydermatis strains is associated with ERG11 gene alterations.
Conclusions:
- Effective management of Malassezia dermatitis requires addressing underlying conditions and appropriate antifungal therapy.
- The rise of azole resistance is driving interest in alternative antifungals such as chlorhexidine and essential oils.
- Further clinical trials are needed to evaluate the efficacy of novel topical antifungal agents.
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