The proposed research will analyze the role of B cells and their products in resistance to Toxoplasma gondii infection in mice. Toxoplasmosis is a significant cause of morbidity/mortality in AIDS patients and congenitally infected individuals, and is also an important reasearch tool with which to analyze innate and acquired immunological mechanisms of host resistance to pathogenic microbes. Infection of B cell-deficient muMT mice has revealed that B cells are needed in order for mice to resist chronic primary T. gondii infection and to survive challenge with highly virulent parasites if previously vaccinated. Two hypotheses are proposed to explain the role of B cells in resistance to T. gondii. The proposed experiments will examine whether B cells are needed for the production of protective antibodies or for the regulation of T. gondii-induced T cells and cytokines having the potential to cause immunopathology. Experimental goals will be addressed by analysis of host cell and cytokine responses and histopathology in infected muMT and control B cell-sufficient mice. The ability of immune serum, together with immune T cells, to confer protection against a challenge infection with virulent tachyzoites will be addressed in adoptive immunization experiments. The resistance of vaccinated mice with mutated Fc receptor genes or C3, C4, or C5 complement genes will be examined in relation to the hypothesis that antibodies are essential to protection in this model. The potential for B cells to regulate cytokine production and the generation of T. gondii-specific T cells will be studied. Also, the role of B cells in protection against congenital T. gondii infection and the influence of Toxoplasma-specific antibodies on the resistance of mice infected as neonates will be analyzed.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Project (R01)
Project #
5R01AI046571-04
Application #
6632192
Study Section
Tropical Medicine and Parasitology Study Section (TMP)
Program Officer
Wali, Tonu M
Project Start
2000-04-01
Project End
2005-03-31
Budget Start
2003-04-01
Budget End
2004-03-31
Support Year
4
Fiscal Year
2003
Total Cost
$405,003
Indirect Cost
Name
Trudeau Institute, Inc.
Department
Type
DUNS #
020658969
City
Saranac Lake
State
NY
Country
United States
Zip Code
12983
Mullarky, Isis K; Szaba, Frank M; Kummer, Lawrence W et al. (2007) Gamma interferon suppresses erythropoiesis via interleukin-15. Infect Immun 75:2630-3
Smiley, Stephen T; Lanthier, Paula A; Couper, Kevin N et al. (2005) Exacerbated susceptibility to infection-stimulated immunopathology in CD1d-deficient mice. J Immunol 174:7904-11
Couper, Kevin N; Roberts, Craig W; Brombacher, Frank et al. (2005) Toxoplasma gondii-specific immunoglobulin M limits parasite dissemination by preventing host cell invasion. Infect Immun 73:8060-8
Couper, K N; Chen, W; Houston, K M et al. (2005) ES-62 is unable to modulate Toxoplasma gondii-driven Th1 responses and pathology. Parasite Immunol 27:147-50
Johnson, Lawrence L; Lanthier, Paula; Hoffman, Jessica et al. (2004) Vaccination protects B cell-deficient mice against an oral challenge with mildly virulent Toxoplasma gondii. Vaccine 22:4054-61
Hancock, Wayne W; Szaba, Frank M; Berggren, Kiera N et al. (2004) Intact type 1 immunity and immune-associated coagulative responses in mice lacking IFN gamma-inducible fibrinogen-like protein 2. Proc Natl Acad Sci U S A 101:3005-10
Johnson, Lawrence L; Berggren, Kiera N; Szaba, Frank M et al. (2003) Fibrin-mediated protection against infection-stimulated immunopathology. J Exp Med 197:801-6
Johnson, Lawrence L; Sayles, Peter C (2002) Deficient humoral responses underlie susceptibility to Toxoplasma gondii in CD4-deficient mice. Infect Immun 70:185-91