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Fungal Pathogens in Pet Dogs and Cats in Grenada: Identification and Antifungal Susceptibility
Erica Hazel-Ann Brathwaite1, Kamashi Kumar1, Grace Dolphin-Bond2
1School of Veterinary Medicine, St. George's University, True Blue, St. George's, Grenada.
Abstract:
Considering the clinical relevance of commensal yeasts (Malassezia and Candida) and zoophilic dermatophytes (Microsporum canis and Trichophyton mentagrophytes) in dogs and cats, this study determines the prevalence of fungal species involved in ear and superficial skin infections in dogs and cats in Grenada and examines their antifungal susceptibility. The etiological agents were isolated from ear, skin, and hair samples of suspected clinical fungal cases using Sabouraud Dextrose Agar (SAB). The isolates' identification comprised morphological, biochemical, and molecular methods encompassing micro-/macroscopy analysis. Biochemically, yeast isolates were identified by the BD Phoenix M50 microbial identification system, and additional validation of all fungal isolates was performed by polymerase chain reaction (PCR) and sequencing of the ITS region. Furthermore, the E-Test (Epsilometer Test) was used to determine the susceptibility patterns for four azole drugs: ketoconazole, itraconazole, fluconazole, and voriconazole. A total of 405 samples (266 ear, 61 skin, and 78 hair) were collected from 136 dogs and 43 cats. The identified species were Malassezia pachydermatis, Candida tropicalis, and Trichophyton spp. All isolates demonstrated (100%) resistant activity to fluconazole. Importantly, this knowledge will significantly contribute to our understanding of the epidemiology of fungal infections as well as provide guidelines for preventive measures against fungal infections in Grenada.
Insights
This study investigated fungal infections in Grenadian dogs and cats, finding Malassezia pachydermatis, Candida tropicalis, and Trichophyton spp. All isolates were resistant to fluconazole, highlighting a need for updated treatment guidelines.
Area of Science:
- Veterinary Mycology
- Antimicrobial Resistance
- Epidemiology
Background:
- Commensal yeasts (Malassezia, Candida) and zoophilic dermatophytes (Microsporum, Trichophyton) are clinically relevant in canine and feline infections.
- Fungal infections pose a significant health concern in companion animals, necessitating local epidemiological data.
Purpose of the Study:
- To determine the prevalence of fungal species causing ear and skin infections in dogs and cats in Grenada.
- To evaluate the antifungal susceptibility of isolated fungal pathogens to key azole drugs.
Main Methods:
- Fungal isolates were obtained from ear, skin, and hair samples using Sabouraud Dextrose Agar.
- Identification involved morphological, biochemical (BD Phoenix M50), and molecular (PCR, ITS sequencing) methods.
- Antifungal susceptibility testing utilized the E-Test for ketoconazole, itraconazole, fluconazole, and voriconazole.
Main Results:
- A total of 405 samples from 136 dogs and 43 cats were analyzed.
- The predominant species identified were Malassezia pachydermatis, Candida tropicalis, and Trichophyton spp.
- All fungal isolates exhibited 100% resistance to fluconazole.
Conclusions:
- This research provides crucial epidemiological data on fungal infections in companion animals in Grenada.
- The universal resistance to fluconazole underscores the need for revised therapeutic strategies and preventive measures.
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