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Published on: October 3, 2016
Biosafety level 2 model of pneumonic plague and protection studies with F1 and Psa
Estela M Galván1, Manoj Kumar Mohan Nair, Huaiqing Chen
1Department of Pathobiology, University of Pennsylvania School of Veterinary Medicine, 3800 Spruce Street, Philadelphia, PA 19104, USA.
Abstract:
Attenuated Yersinia pestis pgm strains, such as KIM5, lack the siderophore yersiniabactin. Strain KIM5 does not induce significant pneumonia when delivered intranasally. In this study, mice were found to develop pneumonia after intranasal challenge with strain KIM5 when they were injected intraperitoneally with iron dextran, though not with iron sulfate. KIM5-infected mice treated daily with 4 mg iron dextran died in 3 days with severe pneumonia. Pneumonia was less severe if 4 mg iron dextran was administered only once before infection. The best-studied experimental vaccine against plague currently consists of the Yersinia pestis capsular antigen F1 and the type 3 secreted protein LcrV. The F1 antigen was shown to be protective against KIM5 infections in mice administered iron dextran doses leading to light or severe pneumonia, supporting the use of an iron dextran-treated model of pneumonic plague. Since F1 has been reported to be incompletely protective in some primates, and bacterial isolates lacking F1 are still virulent, there has been considerable interest in identifying additional protective subunit immunogens. Here we showed that the highly conserved Psa fimbriae of Y. pestis (also called pH 6 antigen) are expressed in murine organs after infection through the respiratory tract. Studies with iron dextran-treated mice showed that vaccination with the Psa fimbrial protein together with an adjuvant afforded incomplete but significant protection in the mouse model described. Therefore, further investigations to fully characterize the protective properties of the Psa fimbriae are warranted.
Insights
Iron dextran administration exacerbates pneumonia in mice infected with attenuated Yersinia pestis. Vaccination with Psa fimbriae offers partial protection against pneumonic plague in this model.
Area of Science:
- Microbiology
- Immunology
- Pathogen Research
Background:
- Attenuated Yersinia pestis strains, like KIM5, are deficient in yersiniabactin, limiting their ability to cause severe pneumonia.
- Iron availability is a critical factor in bacterial virulence and pathogenesis.
Purpose of the Study:
- To investigate the role of iron dextran in enhancing pneumonic plague induced by attenuated Yersinia pestis.
- To evaluate the protective efficacy of the Psa fimbrial protein as a potential vaccine candidate against pneumonic plague.
Main Methods:
- Mice were intranasally challenged with Yersinia pestis KIM5 and treated with iron dextran or iron sulfate.
- Pneumonia severity and survival rates were assessed in iron-treated and control groups.
- Vaccination efficacy of Psa fimbrial protein with adjuvant was tested in the iron dextran-induced pneumonic plague model.
Main Results:
- Intraperitoneal iron dextran administration, but not iron sulfate, led to significant pneumonia in mice infected with Yersinia pestis KIM5.
- Daily iron dextran treatment resulted in severe pneumonia and rapid mortality.
- The F1 antigen provided protection against KIM5 infection in the iron dextran model.
- Vaccination with Psa fimbrial protein conferred incomplete but significant protection.
Conclusions:
- Iron dextran can be used to establish a relevant mouse model for studying pneumonic plague.
- The Psa fimbrial protein shows promise as a subunit immunogen for a pneumonic plague vaccine, warranting further investigation.
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