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Sexual Transmission of American Trypanosomes from Males and Females to Naive Mates
Published on: January 27, 2019
Previously unrecognized vaccine candidates control Trypanosoma cruzi infection and immunopathology in mice
Vandanajay Bhatia1, Nisha Jain Garg
1Department of Microbiology and Immunology, University of Texas Medical Branch, 301 University Boulevard, Galveston, TX 77555-1070, USA.
Abstract:
Trypanosoma cruzi is the etiologic agent of Chagas' disease, a major health problem in Latin America and an emerging infectious disease in the United States. Previously, we screened a T. cruzi sequence database by a computational-bioinformatic approach and identified antigens that exhibited the characteristics of good vaccine candidates. In this study, we tested the vaccine efficacy of three of the putative candidate antigens against T. cruzi infection and disease in a mouse model. C57BL/6 mice vaccinated with T. cruzi G1 (TcG1)-, TcG2-, or TcG4-encoding plasmids and cytokine (interleukin-12 and granulocyte-macrophage colony-stimulating factor) expression plasmids elicited a strong Th1-type antibody response dominated by immunoglobulin G2b (IgG2b)/IgG1 isotypes. The dominant IgG2b/IgG1 antibody response was maintained after a challenge infection and was associated with 50 to 90% control of the acute-phase tissue parasite burden and an almost undetectable level of tissue parasites during the chronic phase, as determined by a sensitive T. cruzi 18S rRNA gene-specific real-time PCR approach. Splenocytes from vaccinated-and-infected mice, compared to unvaccinated-and-infected mice, exhibited decreased (approximately 50% lower) proliferation and gamma interferon (IFN-gamma) production when stimulated in vitro with T. cruzi antigens, thus suggesting that protection from challenge infection was not provided by an active T-cell response. Subsequently, the serum and cardiac levels of IFN-gamma and tumor necrosis factor alpha and infiltration of inflammatory infiltrate in the heart were decreased in vaccinated mice during the course of infection and chronic disease development. Taken together, these results demonstrate the identification of novel vaccine candidates that provided protection from T. cruzi-induced immunopathology in experimental mice.
Insights
New vaccine candidates targeting Trypanosoma cruzi show promise. Immunization reduced parasite load and disease severity in mice, indicating potential for Chagas disease prevention.
Area of Science:
- Immunology
- Parasitology
- Infectious Diseases
Background:
- Chagas disease, caused by Trypanosoma cruzi, is a significant health concern in the Americas.
- Identifying effective vaccine candidates is crucial for controlling Trypanosoma cruzi infections.
Purpose of the Study:
- To evaluate the vaccine efficacy of three novel Trypanosoma cruzi antigens (TcG1, TcG2, TcG4) in a mouse model.
- To assess the immune response and protection against infection and disease.
Main Methods:
- Mice were vaccinated with plasmids encoding T. cruzi antigens and cytokines.
- Vaccine efficacy was assessed by challenging mice with T. cruzi and measuring parasite burden using real-time PCR.
- Immune responses, including antibody production, splenocyte proliferation, and cytokine levels, were analyzed.
Main Results:
- Vaccination induced a strong Th1-type antibody response (IgG2b/IgG1).
- Significant control (50-90%) of acute parasite burden and near-undetectable chronic parasite levels were observed.
- Reduced splenocyte proliferation and IFN-gamma production, along with lower cardiac inflammation, suggest protection from immunopathology.
Conclusions:
- TcG1, TcG2, and TcG4 are promising vaccine candidates against Trypanosoma cruzi.
- These candidates offer protection from T. cruzi-induced immunopathology in a murine model.
- Further research is warranted to explore their therapeutic potential for Chagas disease.

