Fusarium oxysporum is an onychomycosis etiopathogenic agent

To evaluate and characterize the etiopathogenesis of the fusarial onychomycosis in an ex vivo study through fragments of sterile human nail, without the addition of any nutritional source. The infection and invasion of Fusarium oxysporum in the nail were evaluated by scanning electron microscopy (SE...

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Published inFuture microbiology Vol. 13; no. 16; pp. 1745 - 1756
Main Authors Veiga, Flávia F, de Castro-Hoshino, Lidiane V, Sato, Francielle, Bombassaro, Amanda, Vicente, Vânia A, Mendes, Vanessa, Baesso, Mauro L, Negri, Melyssa, Svidzinski, Terezinha Ie
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Published England Future Medicine Ltd 01.12.2018
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Abstract To evaluate and characterize the etiopathogenesis of the fusarial onychomycosis in an ex vivo study through fragments of sterile human nail, without the addition of any nutritional source. The infection and invasion of Fusarium oxysporum in the nail were evaluated by scanning electron microscopy (SEM), CFU, matrix, histopathology and Fourier Transform Infrared Spectrometer coupled to an equipment with diamond accessory (FTIR-ATR). F. oxysporum infected and invaded across the nail, regardless of application face. However, the dorsal nail surface was the strongest barrier, while the ventral was more vulnerable to infection and invasion process. The fungal-nail interaction resulted in the formation of a dense biofilm. F. oxysporum infect and invade the healthy human nail, resulting in biofilm formation. Therefore, F. oxysporum is likely a primary onychomycosis agent.
AbstractList Aim: To evaluate and characterize the etiopathogenesis of the fusarial onychomycosis in an ex vivo study through fragments of sterile human nail, without the addition of any nutritional source. Materials & methods: The infection and invasion of Fusarium oxysporum in the nail were evaluated by scanning electron microscopy (SEM), CFU, matrix, histopathology and Fourier Transform Infrared Spectrometer coupled to an equipment with diamond accessory (FTIR-ATR). Results:F. oxysporum infected and invaded across the nail, regardless of application face. However, the dorsal nail surface was the strongest barrier, while the ventral was more vulnerable to infection and invasion process. The fungal–nail interaction resulted in the formation of a dense biofilm. Conclusion:F. oxysporum infect and invade the healthy human nail, resulting in biofilm formation. Therefore, F. oxysporum is likely a primary onychomycosis agent.
AIMTo evaluate and characterize the etiopathogenesis of the fusarial onychomycosis in an ex vivo study through fragments of sterile human nail, without the addition of any nutritional source.MATERIALS & METHODSThe infection and invasion of Fusarium oxysporum in the nail were evaluated by scanning electron microscopy (SEM), CFU, matrix, histopathology and Fourier Transform Infrared Spectrometer coupled to an equipment with diamond accessory (FTIR-ATR).RESULTSF. oxysporum infected and invaded across the nail, regardless of application face. However, the dorsal nail surface was the strongest barrier, while the ventral was more vulnerable to infection and invasion process. The fungal-nail interaction resulted in the formation of a dense biofilm.CONCLUSIONF. oxysporum infect and invade the healthy human nail, resulting in biofilm formation. Therefore, F. oxysporum is likely a primary onychomycosis agent.
To evaluate and characterize the etiopathogenesis of the fusarial onychomycosis in an ex vivo study through fragments of sterile human nail, without the addition of any nutritional source. The infection and invasion of Fusarium oxysporum in the nail were evaluated by scanning electron microscopy (SEM), CFU, matrix, histopathology and Fourier Transform Infrared Spectrometer coupled to an equipment with diamond accessory (FTIR-ATR). F. oxysporum infected and invaded across the nail, regardless of application face. However, the dorsal nail surface was the strongest barrier, while the ventral was more vulnerable to infection and invasion process. The fungal-nail interaction resulted in the formation of a dense biofilm. F. oxysporum infect and invade the healthy human nail, resulting in biofilm formation. Therefore, F. oxysporum is likely a primary onychomycosis agent.
Author Vicente, Vânia A
Mendes, Vanessa
Negri, Melyssa
Svidzinski, Terezinha Ie
de Castro-Hoshino, Lidiane V
Bombassaro, Amanda
Veiga, Flávia F
Sato, Francielle
Baesso, Mauro L
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/30507250$$D View this record in MEDLINE/PubMed
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Snippet To evaluate and characterize the etiopathogenesis of the fusarial onychomycosis in an ex vivo study through fragments of sterile human nail, without the...
Aim: To evaluate and characterize the etiopathogenesis of the fusarial onychomycosis in an ex vivo study through fragments of sterile human nail, without the...
AIMTo evaluate and characterize the etiopathogenesis of the fusarial onychomycosis in an ex vivo study through fragments of sterile human nail, without the...
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StartPage 1745
SubjectTerms Biofilms
Biofilms - growth & development
Biomass
Female
Fourier transforms
Fungi
Fusariosis - microbiology
Fusariosis - pathology
Fusarium - growth & development
Fusarium - pathogenicity
Fusarium oxysporum
Gene expression
Histopathology
Host-Pathogen Interactions
Humans
Infections
Microscopy, Electron, Scanning
Nail Diseases - microbiology
Nail Diseases - pathology
Nails - microbiology
Nails - pathology
Onychomycosis
Onychomycosis - microbiology
Onychomycosis - pathology
Proteins
Scanning electron microscopy
Volunteers
Title Fusarium oxysporum is an onychomycosis etiopathogenic agent
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