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Evaluation of Host-Pathogen Responses and Vaccine Efficacy in Mice
Published on: February 22, 2019
Immunization with Ehrlichia P28 outer membrane proteins confers protection in a mouse model of ehrlichiosis
Patricia A Crocquet-Valdes1, Nagaraja R Thirumalapura, Nahed Ismail
1Department of Pathology, University of Texas Medical Branch, 301 University Boulevard, Galveston, TX 77555-0609, USA.
Abstract:
The obligately intracellular bacterium Ehrlichia chaffeensis that resides in mononuclear phagocytes is the etiologic agent of human monocytotropic ehrlichiosis (HME). HME is an emerging and often life-threatening, tick-transmitted infectious disease in the United States. Effective primary immune responses against Ehrlichia infection involve generation of Ehrlichia-specific gamma interferon (IFN-γ)-producing CD4(+) T cells and cytotoxic CD8(+) T cells, activation of macrophages by IFN-γ, and production of Ehrlichia-specific antibodies of the Th1 isotype. Currently, there are no vaccines available against HME. We evaluated the ability of 28-kDa outer membrane proteins (P28-OMP-1) of the closely related Ehrlichia muris to stimulate long-term protective memory T and B cell responses and confer protection in mice. The spleens of mice vaccinated with E. muris P28-9, P28-12, P28-19, or a mixture of these three P28 proteins (P28s) using a DNA prime-protein boost regimen and challenged with E. muris had significantly lower bacterial loads than the spleens of mock-vaccinated mice. Mice immunized with P28-9, P28-12, P28-19, or the mixture induced Ehrlichia-specific CD4(+) Th1 cells. Interestingly, mice immunized with P28-14, orthologs of which in E. chaffeensis and E. canis are primarily expressed in tick cells, failed to lower the ehrlichial burden in the spleen. Immunization with the recombinant P28-19 protein alone also significantly decreased the bacterial load in the spleen and liver compared to those of the controls. Our study reports, for the first time, the protective roles of the Ehrlichia P28-9 and P28-12 proteins in addition to confirming previous reports of the protective ability of P28-19. Partial protection induced by immunization with P28-9, P28-12, and P28-19 against Ehrlichia was associated with the generation of Ehrlichia-specific cell-mediated and humoral immune responses.
Insights
This study shows that Ehrlichia muris outer membrane proteins P28-9 and P28-12, along with P28-19, can generate protective immune responses against Ehrlichia infection in mice. These findings offer potential for developing vaccines against human monocytotropic ehrlichiosis (HME).
Area of Science:
- Immunology
- Microbiology
- Vaccinology
Background:
- Human monocytotropic ehrlichiosis (HME) is a serious tick-borne illness caused by Ehrlichia chaffeensis.
- Current treatments lack vaccines, highlighting the need for preventative strategies.
- Effective immunity involves T cells and antibodies, but protective antigens are not fully identified.
Purpose of the Study:
- To investigate the immunoprotective potential of Ehrlichia muris 28-kDa outer membrane proteins (P28-OMP-1) against Ehrlichia infection.
- To assess the ability of these proteins to induce long-term protective memory immune responses.
- To evaluate the efficacy of a DNA prime-protein boost vaccination strategy.
Main Methods:
- Mice were vaccinated with DNA encoding E. muris P28 proteins followed by protein boost.
- Vaccinated mice were challenged with E. muris, and bacterial loads in spleens and livers were quantified.
- Immune responses, including T cell activation (CD4+ Th1) and antibody production, were analyzed.
Main Results:
- Vaccination with E. muris P28-9, P28-12, P28-19, or a mixture significantly reduced bacterial loads in mouse spleens.
- Immunization induced Ehrlichia-specific CD4+ T helper 1 (Th1) cell responses.
- P28-19 alone also demonstrated significant protection in spleen and liver, while P28-14 showed no protective effect.
Conclusions:
- Ehrlichia P28-9 and P28-12 proteins, in addition to P28-19, confer partial protection against Ehrlichia infection.
- Protection is associated with the generation of cell-mediated and humoral immune responses.
- These P28 proteins represent promising candidates for HME vaccine development.

