Journal of Animal and Veterinary Advances

Year: 2009
Volume: 8
Issue: 5
Page No. 928 - 934

References

Arestegui, M.B., S.C. Gualtier, J. Dominguez and O.G. Scharovsky, 2001. Brucella genus and its interaction with the mononuclear phagocytic system. Vet. Mex., 32: 131-139.

Cassataro, J., C.A. Velikovsky, S. De La Barrera, S.M. Estein and L. Bruno(et al)., 2005. A DNA vaccine coding for the brucella outer membrane protein 31 confers protection against B. melitensis and B. ovis infection by eliciting a specific cytotoxic response. Infect. Immun., 73: 6537-6546.
CrossRef  |  Direct Link  |  

Celli, J., 2006. Surviving inside a macrophage: The many ways of Brucella. Res. Microbiol., 157: 93-98.
PubMed  |  Direct Link  |  

Del Arco, S.T.E., A. Nunez, V. Tenorio, E. Diaz-Aparicio, M. De La Garza and F. Suarez-Guemes, 2005. Subcellular fractions of Brucella ovis distinctively induce the production of interleukin-2, interleukin-4 and interferon-γ in mice. Can. J. Vet. Res., 69: 53-57.
PubMed  |  Direct Link  |  

Golding, B., D.E. Scott, O. Scharf, L.Y. Huang and Y. Zaitseva et al., 2001. Immunity and protection against Brucella abortus. Microbes Infect., 3: 43-48.
CrossRef  |  PubMed  |  Direct Link  |  

Gonzalez, D., M.J. Grillo, M.J. De Miguel, A. Tara and V. Arce-Gorvel et al., 2008. Brucellosis vaccines: Assessment of Brucella melitensis lipopolysaccharide rough mutants defective in core and o-polysaccharide synthesis and export. PLoS One, 3: e2760-e2760.
CrossRef  |  PubMed  |  Direct Link  |  

He, Y., R. Vemulapalli, A. Zeytun and G.G. Schurig, 2001. Induction of specific cytotoxic lymphocytes in mice vaccinated with Brucella abortus RB51. Infect. Immun., 69: 5502-5508.
Direct Link  |  

Jimenez de Bagues, M.P., P.H. Eizer, J.M. Blasco, C.M. Marin, C. Gamazo and X.J. Winter, 1994. Protective immunity to Brucella ovis in BALB/e mice following recovery from primary infection or immunization with subcellular vaccines. Infect. Immun., 62: 632-638.
Direct Link  |  

Kim, S., M. Watarai, Y. Kondo, J. Erdenebaatar, S. Makino and T. Shirahata, 2003. Isolation and characterization of mini-Tn5Km2 insertion mutants of Brucella abortus deficient in internalization and intracellular growth in HeLa cells. Infect. Immun., 71: 3020-3027.
Direct Link  |  

Montaraz, J.A. and J. Winter, 1986. Comparison of living and nonliving vaccines for Brucella abortus in BALB/c mice. Infect. Immun., 53: 245-251.
PubMed  |  Direct Link  |  

Pasquali, P., R. Adone, L.C. Gasbarre, C. Pistoia and F. Ciuchin, 2001. Mouse citokine profiles associate with Brucella abortus RB51 vaccination or Brucella abortus 2308. Infect. Immun., 69: 6541-6544.
Direct Link  |  

Pasquali, P., R. Adone, L.C. Gasbarre, C. Pistoia and F. Ciuchini, 2002. Effect of Exogenous Interleukin-18 (IL-18) and IL-12 in the Course of Brucella abortus 2308 Infection in Mice. Clin. Diag. Lab. Immun., 9: 491-492.
PubMed  |  Direct Link  |  

Rajashekara, G., D.A. Glover, M. Banai, D. O`Callaghan and G.A. Splitter, 2006. Attenuated bioluminescent Brucella melitensis mutants GR019 (virB4), GR024 (galE) and GR026 (BMEI1090-BMEI1091) confer protection in mice. Infect. Immun., 74: 2925-2936.
Direct Link  |  

Rolan, H.G. and R.M. Tsolis, 2007. Mice lacking components of adaptive immunity show increased Brucella abortus VIRB mutant colonization. Infect. Immun., 75: 2965-2973.
Direct Link  |  

Rolan, H.G. and R.M. Tsolis, 2008. Inactivation of the type IV secretion system reduces the TH1 polarization of the immune response to Brucella abortus infection. Infect. Immun., 76: 3207-3213.
Direct Link  |  

Roux, C.M., H.G. Rolan, R.L. Santos, P.D. Beremand, T.L. Thomas, L.G. Adams and R.M. Tsolis, 2007. Brucella requires a functional Type IV secretion system to elicit innate immune responses in mice. Cell. Microbiol., 9: 1851-1869.
PubMed  |  Direct Link  |  

Sieira, R., D.J. Comerci, D.O. Sanchez and R.A. Ugalde, 2000. A homologue of an operon required for DNA transfer in Agrobacterium is required in Brucella abortus for virulence and intracelular multiplication. J. Bacteriol., 182: 4849-4855.
Direct Link  |  

Spera, J.M., J.E. Ugalde, J. Mucci, D.J. Comerci and R.A. Ugalde, 2006. A B lymphocyte mitogen is a Brucella abortus virulence factor required for persistent infection. Proc. Natl. Acad. Sci. USA., 103: 16514-16519.
PubMed  |  Direct Link  |  

Splitter, G., S. Oliveira, M. Carey, C. Miller, J. Ko and J. Covert, 1996. T lymphocyte mediated protection against facultative intracellular bacteria. Vet. Immunol. Immunopathol., 54: 309-319.
PubMed  |  

Ulett, G.C., N. Ketheesan and R.G. Hirst, 2000. Cytokine gene expression in innately susceptible BALB/C mice and relatively resistant C57BL/6 mice during infection with virulent Burkholderia pseudomallei. Infect. Immun., 68: 2034-2042.
Direct Link  |  

Zhan, Y. and C. Cheers, 1995. Endogenous interleukin-12 is involved in resistance to Brucella abortus infection. Infect. Immun., 63: 1387-1390.
PubMed  |  Direct Link  |  

Zhan, Y., A. Kelso and C. Cheers, 1995. Differential activation of Brucella-reactive CD4+ T cells by Brucella infection or immunization with antigenic extracts. Infec. Immun., 63: 969-975.
PubMed  |  Direct Link  |  

Zhan, Y., Z. Liu and C. Cheers, 1996. Tumor necrosis factor Alpha and inteleukin-12 contribute to resistance to the intracellular bacterium Brucella abortus by different mechanisms. Infect. Immun., 64: 2782-2786.
Direct Link  |  

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