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Determining the Pathogenic Potential of Non-sporulating Molds Isolated from Cutaneous Specimens
Nantha Kumar Jeyaprakasam1, Mohd Fuat Abdul Razak2, Noor Azimah Binti Ahmad1
1Biomedical Science Programme, Faculty of Health Sciences, Universiti Kebangsaan Malaysia, Jalan Raja Muda Abdul Aziz, 50300, Kuala Lumpur, Malaysia.
Abstract:
Although non-sporulating molds (NSM) are frequently isolated from patients and have been recognized as agents of pulmonary disease, their clinical significance in cutaneous specimens is relatively unknown. Therefore, this study aimed to identify NSM and to determine the keratinolytic activity of isolates from cutaneous sites. NSM isolates from clinical specimens such as skin, nail, and body fluids were identified based on their ribosomal DNA sequences. Of 17 NSM isolates (7 Ascomycota, 10 Basidiomycota), eleven were identified to species level while five were identified to the genus level. These include Schizophyllum commune, a known human pathogen, Phoma multirostrata, a plant pathogen, and Perenniporia tephropora, a saprophyte. To determine fungal pathogenicity, keratinolytic activity, a major virulence factor, was evaluated ex vivo using human nail samples by measuring dye release from keratin azure, for NSM along with pathogens (Trichophyton mentagrophytes, Trichophyton rubrum, Microsporum canis and Fusarium spp.) and nonpathogenic (endophyte) fungi for comparison. This study showed that pathogenic fungi had the highest keratinolytic activity (7.13 ± 0.552 keratinase units) while the nonpathogenic endophytes had the lowest activity (2.37 ± 0.262 keratinase units). Keratinolytic activity of two Ascomycota NSM (Guignardia mangiferae and Hypoxylon sp.) and one Basidiomycota NSM (Fomitopsis cf. meliae) was equivalent to that of pathogenic fungi, while Xylaria feejeensis showed significantly higher activity (p < 0.05) than nonpathogenic endophytes. These results indicate that the pathogenic ability of NSM is species dependent; clinical isolates, especially more frequently isolated species, may be involved in disease etiology.
Insights
Non-sporulating molds (NSM) from skin and nail samples were identified, and their keratinolytic activity was assessed. Some NSM exhibited pathogenic potential, suggesting species-dependent involvement in cutaneous diseases.
Area of Science:
- Mycology
- Dermatology
- Medical Microbiology
Background:
- Non-sporulating molds (NSM) are common in clinical settings but their role in skin infections is unclear.
- Pulmonary infections by NSM are recognized, yet cutaneous significance remains understudied.
Purpose of the Study:
- To identify NSM from cutaneous sources.
- To evaluate the keratinolytic activity of these NSM isolates as a measure of pathogenicity.
Main Methods:
- NSM isolates from skin, nail, and body fluid specimens were identified using ribosomal DNA sequencing.
- Keratinolytic activity was assessed ex vivo using human nail samples and keratin azure dye release.
- Activity was compared between NSM, known pathogenic fungi, and nonpathogenic endophytes.
Main Results:
- Seventeen NSM isolates were identified, including human and plant pathogens.
- Pathogenic fungi showed the highest keratinolytic activity, while endophytes had the lowest.
- Several NSM, including Guignardia mangiferae, Hypoxylon sp., and Fomitopsis cf. meliae, demonstrated keratinolytic activity comparable to known pathogens.
Conclusions:
- The pathogenic potential of NSM is species-specific.
- Certain NSM isolates possess significant keratinolytic activity, indicating a potential role in cutaneous infections.
- Further investigation into frequently isolated NSM is warranted to understand their etiological role in skin diseases.
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