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Identification of Zoophilic Dermatophytes Using MALDI-TOF Mass Spectrometry
Christina-Marie Baumbach1, Stefanie Müller1, Maximilian Reuschel2
1Institute of Bacteriology and Mycology, Centre of Infectious Diseases, Faculty of Veterinary Medicine, Leipzig University, Leipzig, Germany.
Abstract:
Dermatophytoses represent a major health burden in animals and man. Zoophilic dermatophytes usually show a high specificity to their original animal host but a zoonotic transmission is increasingly recorded. In humans, these infections elicit highly inflammatory skin lesions requiring prolonged therapy even in the immunocompetent patient. The correct identification of the causative agent is often crucial to initiate a targeted and effective therapy. To that end, matrix assisted laser desorption ionization time-of-flight mass spectrometry (MALDI-TOF MS) represents a promising tool. The objective of this study was to evaluate the reliability of species identification of zoophilic dermatophytes using MALDI-TOF MS. The investigation of isolates from veterinary clinical samples suspicious of dermatophytoses suggests a good MALDI-TOF MS based identification of the most common zoophilic dermatophyte Microsporum canis. Trichophyton (T.) spp. usually achieved scores only around the cutoff value for secure species identification because of a small number of reference spectra. Moreover, these results need to be interpreted with caution due to the close taxonomic relationship of dermatophytes being reflected in very similar spectra. In our study, the analysis of 50 clinical samples of hedgehogs revealed no correct identification using the provided databases, nor for zoophilic neither for geophilic causative agents. After DNA sequencing, adaptation of sample processing and an individual extension of the in-house database, acceptable identification scores were achieved (T. erinacei and Arthroderma spp., respectively). A score-oriented distance dendrogram revealed clustering of geophilic isolates of four different species of the genus Arthroderma and underlined the close relationship of the important zoophilic agents T. erinacei, T. verrucosum and T. benhamiae by forming a subclade within a larger cluster including different dermatophytes. Taken together, MALDI-TOF MS proofed suitable for the identification of zoophilic dermatophytes provided fresh cultures are used and the reference library was previously extended with spectra of laboratory-relevant species. Performing independent molecular methods, such as sequencing, is strongly recommended to substantiate the findings from morphologic and MALDI-TOF MS analyses, especially for uncommon causative agents.
Insights
Matrix assisted laser desorption ionization time-of-flight mass spectrometry (MALDI-TOF MS) shows promise for identifying animal dermatophytes. However, accurate identification requires updated databases and molecular methods for reliable results, especially for less common species.
Area of Science:
- Veterinary Mycology
- Clinical Microbiology
- Mass Spectrometry Applications
Background:
- Dermatophytoses pose a significant health concern in animals and humans, often causing inflammatory skin lesions.
- Accurate identification of causative dermatophyte species is crucial for effective treatment, especially given increasing zoonotic transmission.
- Matrix assisted laser desorption ionization time-of-flight mass spectrometry (MALDI-TOF MS) is a developing tool for microbial identification.
Purpose of the Study:
- To evaluate the reliability of MALDI-TOF MS for identifying zoophilic dermatophytes from veterinary clinical samples.
- To assess the effectiveness of existing databases and explore improvements for accurate species identification.
Main Methods:
- Analysis of clinical samples suspected of dermatophytosis using MALDI-TOF MS.
- Comparison of MALDI-TOF MS identification results with DNA sequencing data.
- Adaptation of sample processing and extension of an in-house spectral database.
- Construction of a score-oriented distance dendrogram for phylogenetic analysis.
Main Results:
- MALDI-TOF MS showed good identification for *Microsporum canis* but limited accuracy for *Trichophyton* spp. due to insufficient reference spectra.
- Initial analysis of hedgehog samples yielded no correct identifications with standard databases.
- Post-database update and method refinement, acceptable identification scores were achieved for *T. erinacei* and *Arthroderma* spp.
- Phylogenetic analysis revealed close relationships among geophilic *Arthroderma* species and zoophilic *Trichophyton* species.
Conclusions:
- MALDI-TOF MS is suitable for zoophilic dermatophyte identification when using fresh cultures and an extended, laboratory-relevant spectral library.
- Close taxonomic relationships among dermatophytes necessitate cautious interpretation of MALDI-TOF MS results.
- Independent molecular methods like DNA sequencing are recommended to confirm MALDI-TOF MS findings, particularly for uncommon agents.
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