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G A de Vries

Publications and source records attributed to G A de Vries.

15 recordsLinked to original sources

The pathogenic potential of Sporotrichum pruinosum isolated from the human respiratory tract.

The repeated occurrence of Sporotrichum pruinosum, demonstrated by direct microscopy and culture, is reported from the respiratory tract of three patients who complained of cough, expectoration of sputum, dyspnoea and occasional pyrexia. This observation coupled with the presence of immediate, type I, cutaneous hypersensitivity against S. pruinosum in two of the patients and the ability of the fungus to incite lesions in experimentally infected mice supported an etiologic relationship between the fungus and the patients' symptoms. The macroscopic and microscopic characters of one of the clinical isolates of S. pruinosum are briefly described. It is suggested that the isolation of S. pruinosum from clinical specimens should not be regarded as of no etiologic significance without careful clinical and laboratory evaluation of the patient.

Adult↗

Comparative study of an isolate resembling Banti's fungus with Cladosporium trichoides.

A fungus isolated from a subcutaneous abscess of a cat was found to fit closely to the description of Banti's fungus, Torula bantiana Saccardo, which was reclassified by Borelli as Cladosporium bantianum (Sacc.) Borelli. The cat isolate was different from Cladosporium trichoides Emmons in conidial size, branching of conidial chains, and minimum, optimum, and maximum temperature for growth. Although the isolate was neurotropic in mice, the fungal morphology in mouse brain was clearly different from C. trichoides. From this study, it was apparent that C. bantianum (Sacc.) Borelli and C. trichoides Emmons should be regarded as two separate species. The 2 species were compared with C. carrionii Trejos.

Animals↗

Subcutaneous zygomycosis (phycomycosis).

Decrease of host resistance in subcutaneous zygomycosis appears to be very specific. Potassium iodide causes nonspecific resolution of the eosinophilic granuloma. The disease offers a unique direct human model for the study of host resistance and granuloma resolution.

Fungi↗