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Trichophyton rubrum Phenotypic Virulence Factors in Mexican Strains
Esther Conde-Cuevas1, Rigoberto Hernández-Castro2, Claudia Erika Fuentes-Venado3,4
1Maestría en Ciencias de la Salud, Escuela Superior de Medicina, Instituto Politécnico Nacional, Plan de San Luis y Díaz Mirón, Ciudad de México 11340, Mexico.
Abstract:
(1) Background: T. rubrum is the most important agent in tinea pedis, tinea manuum, tinea cruris, tinea corporis, and even in subcutaneous dermatophytosis. T. rubrum must overcome several obstacles to adhere, grow, and invade the host, for which their virulence factors are important. Previous studies have demonstrated the capability of T. rubrum strains to produce proteases, phospholipases, hemolysins, and elastases. The aim of this work was the genotypic identification of clinical isolates of T. rubrum to subsequently determine production of the main phenotypic virulence factors associated with this pathogen responsible for different types of dermatophytosis in Mexican patients. (2) Methods: Twenty samples of T. rubrum were obtained from different body parts of patients treated in the Mycology section. The colonies were transferred to specific agars to analyze the production of phenotypical virulence factors (lipase, phospholipase, hemolysin, and elastase). (3) Results: Almost all the strains of T. rubrum showed growth in the test culture medium. A significantly smaller size of the halo diameter of elastase (26.51 ± 11.95 mm) in comparison to lipase (59.51 ± 16.00 mm) and phospholipase (55.97 ± 19.60 mm) was measured. Additionally, a significantly reduced size of the halo diameter of hemolysin (42.01 ± 5.49 mm) was observed compared to lipase. When comparing the virulence factors, greater expression of lipase was observed, followed by phospholipase, hemolysins, and elastase. T. rubrum strains were classified as being between high and ultra-lipase producers; most of the strains were also considered low producers of phospholipase and hemolysins; and most of the strains (n = 13) were classified as non-producers of elastase. (4) Conclusions: Almost all the T. rubrum strains of the study were found to be ultra-producers of lipase, and low producers of hemolysins and phospholipases. Elastase was the least expressed virulence factor in these strains.
Insights
Trichophyton rubrum, a common cause of fungal infections, primarily produces lipase and shows lower levels of phospholipase and hemolysin. Elastase was the least expressed virulence factor in these dermatophyte strains.
Area of Science:
- Medical Mycology
- Dermatology
- Infectious Diseases
Background:
- Trichophyton rubrum is a primary agent of dermatophytosis, causing infections like tinea pedis and tinea corporis.
- Virulence factors such as proteases, phospholipases, hemolysins, and elastases are crucial for T. rubrum's adherence, growth, and invasion.
- Understanding these factors is key to managing T. rubrum infections.
Purpose of the Study:
- To genotypically identify clinical isolates of Trichophyton rubrum.
- To determine the production of key phenotypic virulence factors (lipase, phospholipase, hemolysin, elastase) in Mexican patients.
- To correlate virulence factor expression with dermatophytosis types.
Main Methods:
- Twenty clinical isolates of T. rubrum were obtained from various body sites.
- Isolates were cultured on specific agars to assess phenotypic virulence factor production.
- Halo diameters for lipase, phospholipase, hemolysin, and elastase were measured and compared.
Main Results:
- All T. rubrum strains exhibited growth, with significant variations in virulence factor expression.
- Lipase production was highest (halo diameter 59.51 ± 16.00 mm), followed by phospholipase (55.97 ± 19.60 mm) and hemolysin (42.01 ± 5.49 mm).
- Elastase production was significantly lower (26.51 ± 11.95 mm), with most strains classified as non-producers.
Conclusions:
- The majority of T. rubrum strains studied were ultra-producers of lipase.
- These strains were characterized as low producers of hemolysins and phospholipases.
- Elastase was identified as the least expressed virulence factor among the evaluated T. rubrum isolates.
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