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Published on: April 19, 2017
Experimental murine hyalohyphomycosis with soil-derived isolates of Fusarium solani
Y Sugiura1, Y Sugita-Konishi, S Kumagai
1Department of Food Chemistry, Kobe Institute of Health, Kobe, Japan. kih-info-1@mse.biglobe.ne.jp
Abstract:
Two strains of soil-borne Fusarium solani, both characterized for their ability to produce cyclosporin A and C, were examined for their pathogenicity in severe combined immunodeficiency (SCID) and BALB/c male mice. Intravenous (i.v.) infections with F. solani conidia were performed. No mortality was observed after infection with 0.3-1.6 x 10(7) cfu per mouse in SCID and BALB/c mice. When mice were infected with 0.8-1.5 x 10(6) cfu per mouse and 2 days later with 1.2-1.9 x 10(6) cfu per mouse, 28.6-85.7% survival occurred over a 25-day period, depending on the F. solani strain and the inbred mouse line used. Death was preceded by renal insufficiency affecting both kidneys. Furthermore, i.v. injection with heat-killed conidia followed 2 days later by injecting viable conidia resulted in renal infection in both breeds of mice. F. solani isolated from infected organs was more virulent than the original isolate, and 3/8 (37.5%) of BALB/c and 4/7 (57.1%) of SCID mice died after receiving a single dose. Dissemination to the brain was found only in SCID mice, but torticollis was observed in both mouse breeds. Soil-borne F. solani isolates possess poor pathogenic potential for mice, but either two successive infective doses or a primary injection with heat-killed conidia followed by a single infective dose breaks through host defenses in normal and immunoincompetent mice. Mouse passage increased the pathogenicity of two soil-derived F. solani strains.
Insights
Soil-borne Fusarium solani shows low pathogenicity in mice. However, multiple doses or a heat-killed followed by a live dose can overcome host defenses, increasing virulence.
Area of Science:
- Mycology
- Immunology
- Infectious Diseases
Background:
- Fusarium solani, a soil-borne fungus, produces cyclosporins A and C.
- Understanding the pathogenicity of F. solani is crucial for assessing infection risks.
Purpose of the Study:
- To evaluate the pathogenicity of two F. solani strains in severe combined immunodeficiency (SCID) and BALB/c mice.
- To determine factors influencing F. solani virulence and host response.
Main Methods:
- Intravenous (i.v.) infection of mice with varying doses of F. solani conidia.
- Use of both live and heat-killed conidia to assess infectivity.
- Monitoring survival rates, renal function, and dissemination of the fungus.
Main Results:
- High doses of F. solani did not cause mortality.
- Sequential infections or a combination of heat-killed and live conidia led to renal infections and mortality (28.6-85.7% survival).
- F. solani isolated from infected organs showed increased virulence, with brain dissemination observed in SCID mice.
Conclusions:
- Soil-borne F. solani has limited pathogenic potential in mice.
- Repeated or specific infection strategies can overcome host defenses.
- Mouse passage enhances the pathogenicity of F. solani strains.
Related Concept Videos
Fungal Group Zygomycota
Fungal Phylum Microsporidia

