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Experimental aspergillosis in mice: aspects of resistance
Abstract:
Intravenous inoculation of Aspergillus fumigatus spores was used to study experimentally induced and natural resistance. Slight resistance resulted in increased survival time and higher resistance produced in addition a decreased infection rate.Sublethal doses of living spores gave significant protection against challenge 3 weeks later, but large doses of heat-killed spores had no demonstrable effect.Mice from one source showed a single, dramatic decrease in dose response to a deep-frozen strain of the organism over a period of 34 months. The dose response initially resembled that described by Scholer (1959) in which one million spores killed the majority of mice. The change was almost certainly due to an increase in resistance of the mice due to environmental factors, and the resistance was probably also effective against other strains of the organism. Although not proved, it seemed likely that the resistance was due to increased natural contact with A. fumigatus or related fungi. Possibly for a similar reason, mice of the same stock bred on different premises differed in their susceptibility to infection. The results indicated that environmental resistance-producing factors may have been operating simultaneously on a number of premises housing laboratory animals in south-east England. These findings may have significance in relation to the occurrence of natural aspergillosis of mammals and birds.Of five A. fumigatus strains, four were of closely similar virulence; the fifth strain grew more slowly in vitro and was somewhat less virulent. Isolates from mice which died sporadically after small doses of spores were of no greater virulence than the inoculated strain. Although the susceptibility of mice aged 3 weeks was not uniform under all conditions, such animals were less resistant than young adult mice. Mice from six different sources showed only slight differences in susceptibility between each other, or from mice known to have developed a natural resistance.
Insights
Mice developed resistance to Aspergillus fumigatus infection through environmental exposure, not heat-killed spores. This natural resistance impacts survival rates and infection incidence in laboratory animals.
Area of Science:
- Mycology
- Immunology
- Veterinary Pathology
Background:
- Aspergillus fumigatus is an opportunistic fungal pathogen causing aspergillosis in mammals and birds.
- Understanding resistance mechanisms is crucial for managing fungal infections in laboratory settings and wildlife.
Purpose of the Study:
- To investigate experimentally induced and natural resistance to Aspergillus fumigatus in mice.
- To evaluate the impact of environmental factors on fungal resistance and susceptibility.
Main Methods:
- Intravenous inoculation of Aspergillus fumigatus spores in mice.
- Administration of sublethal doses of living spores and heat-killed spores.
- Monitoring survival rates, infection rates, and dose-response over 34 months.
- Comparison of susceptibility across different mouse sources and ages.
Main Results:
- Sublethal doses of living spores conferred significant protection against subsequent challenge.
- Heat-killed spores had no demonstrable protective effect.
- A dramatic decrease in dose response over 34 months indicated increasing mouse resistance, likely due to environmental factors.
- Mice from different breeding premises exhibited varying susceptibility, suggesting environmental influences.
Conclusions:
- Environmental factors can significantly enhance natural resistance to Aspergillus fumigatus in mice.
- Experimentally induced resistance is achievable with living spores, but not heat-killed ones.
- Findings have implications for understanding and controlling natural aspergillosis in animals.