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Fungus invasion into human hair tissue in black dot ringworm: light and electron microscopic study
Abstract:
In order to investigate the morphology of fungi invading into the human hair tissue, three cases of black dot ringworm caused by Trichophyton violaceum and Trichophyton glabrum were studied by light and electron microscopy. Fungal elements were mainly present in the hair cortex and showed a constant morphologic change during the differentiation of hair layers. The fungal elements, located deep in the keratogenous zone of the cortex, showed less electron dense non-septate hyphae. Distally, the hyphae showed septation and contained several scattered dense bodies in the cytoplasm. At the level where the Huxley's layer was keratinized, the fungal elements were transformed into arthrospores, which occupied the large volume of the cortex; each spore was surrounded by a fiber- and melanosome-free, electron lucent halo. Fungal elements occasionally invaded the keratinized hair cuticle and keratinized inner root sheath in a few hair follicles. Fungi do not invade the hair germinative cells. There seems to be a distinct relationship between the morphology of the invading fungi and the cortical cell differentiation in black dot ringworm; a balance between the fungus proliferation and the cortical cell development may be present.
Insights
Black dot ringworm fungi invade human hair cortex, transforming into arthrospores. Their morphology changes with hair cell differentiation, suggesting a balance between fungal growth and host development.
Area of Science:
- Mycology
- Dermatology
- Human Pathology
Background:
- Black dot ringworm is a fungal infection affecting human hair.
- Caused by Trichophyton species, it presents unique morphological challenges.
- Understanding fungal invasion patterns is crucial for treatment.
Purpose of the Study:
- To investigate the morphology of fungi invading human hair.
- To analyze fungal element changes during hair differentiation.
- To explore the relationship between fungal morphology and host cell development.
Main Methods:
- Light and electron microscopy were used.
- Three cases of black dot ringworm were examined.
- Fungal elements within hair tissue were analyzed.
Main Results:
- Fungal elements were primarily found in the hair cortex.
- Morphological changes included non-septate hyphae, septated hyphae with dense bodies, and arthrospores.
- Arthrospores, surrounded by a halo, occupied the cortex.
- Fungal invasion occurred in the cuticle and inner root sheath but not germinative cells.
Conclusions:
- Fungal morphology correlates with hair cortical cell differentiation.
- A balance likely exists between fungal proliferation and hair cell development.
- This study provides insights into the pathogenesis of black dot ringworm.
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