Molecular and cellular interactions between Brucella abortus antigens and host immune responses.
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[1] V. Azevedo,et al. Molecular and immunological characterisation of recombinant Brucella abortus glyceraldehyde-3-phosphate-dehydrogenase, a T- and B-cell reactive protein that induces partial protection when co-administered with an interleukin-12-expressing plasmid in a DNA vaccine formulation. , 2002, Journal of medical microbiology.
[2] L. Eskra,et al. Brucella abortus Genes Identified following Constitutive Growth and Macrophage Infection , 2001, Infection and Immunity.
[3] J. Letesson,et al. Induction of Immune Response in BALB/c Mice with a DNA Vaccine Encoding Bacterioferritin or P39 ofBrucella spp , 2001, Infection and Immunity.
[4] Yasushi Itoh,et al. IL-12 Induction by a Th1-Inducing Adjuvant In Vivo: Dendritic Cell Subsets and Regulation by IL-10 , 2001, The Journal of Immunology.
[5] C. Baldwin,et al. Interferon‐γ is crucial for surviving a Brucella abortus infection in both resistant C57BL/6 and susceptible BALB/c mice , 2001, Immunology.
[6] J. Letesson,et al. Protection of BALB/c Mice against Brucella abortus 544 Challenge by Vaccination with Bacterioferritin or P39 Recombinant Proteins with CpG Oligodeoxynucleotides as Adjuvant , 2001, Infection and Immunity.
[7] P. Murphy,et al. Early production of rhizopine in nodules induced by Sinorhizobium meliloti strain L5-30. , 2001, Canadian journal of microbiology.
[8] D. Scott,et al. Immunity and protection against Brucella abortus. , 2001, Microbes and infection.
[9] C. Tang,et al. Identification and characterization of in vivo attenuated mutants of Brucella melitensis , 2000, Molecular microbiology.
[10] D. Sánchez,et al. A Homologue of an Operon Required for DNA Transfer in Agrobacterium Is Required in Brucella abortusfor Virulence and Intracellular Multiplication , 2000, Journal of bacteriology.
[11] T. Ficht,et al. Identification of Genes Required for Chronic Persistence of Brucella abortus in Mice , 2000, Infection and Immunity.
[12] D. O’Callaghan,et al. Identification of Brucella suis Genes Affecting Intracellular Survival in an In Vitro Human Macrophage Infection Model by Signature-Tagged Transposon Mutagenesis , 2000, Infection and Immunity.
[13] E. Andrews,et al. Identification and partial characterisation of a new protective antigen of Brucella abortus. , 2000, Journal of medical microbiology.
[14] C. Nombela,et al. Two‐dimensional gel electrophoresis as analytical tool for identifying Candida albicans immunogenic proteins , 2007, Electrophoresis.
[15] P. Jungblut,et al. Comprehensive detection of immunorelevant Borrelia garinii antigens by two‐dimensional electrophoresis , 1999, Electrophoresis.
[16] T. Yamada,et al. Ribosomal protein L7 included in tuberculin purified protein derivative (PPD) is a major heat-resistant protein inducing strong delayed-type hypersensitivity. , 1999, Scandinavian journal of immunology.
[17] J. Liautard,et al. Constitutive and Inducible Expression of Green Fluorescent Protein in Brucella suis , 1999, Infection and Immunity.
[18] D. O’Callaghan,et al. A homologue of the Agrobacterium tumefaciens VirB and Bordetella pertussis Ptl type IV secretion systems is essential for intracellular survival of Brucella suis , 1999, Molecular microbiology.
[19] R. Vemulapalli,et al. Vaccination with Live Escherichia coli ExpressingBrucella abortus Cu/Zn Superoxide Dismutase Protects Mice against Virulent B. abortus , 1999, Infection and Immunity.
[20] R. Vemulapalli,et al. Cloning and Sequencing of yajC and secDHomologs of Brucella abortus and Demonstration of Immune Responses to YajC in Mice Vaccinated with B. abortus RB51 , 1998, Infection and Immunity.
[21] R. Roop,et al. Identification and Characterization of a 14-Kilodalton Brucella abortus Protein Reactive with Antibodies from Naturally and Experimentally Infected Hosts and T Lymphocytes from Experimentally Infected BALB/c Mice , 1998, Infection and Immunity.
[22] J. Letesson,et al. Identification of the major T-cell antigens present in the Brucella melitensis B115 protein preparation, Brucellergene OCB. , 1997, Journal of medical microbiology.
[23] M. J. Corbel,et al. Brucellosis: an overview. , 1997, Emerging infectious diseases.
[24] G. Splitter,et al. RecombinantBrucella abortusProteins That Induce Proliferation and Gamma-Interferon Secretion by CD4+T Cells fromBrucella-Vaccinated Mice and Delayed-Type Hypersensitivity in Sensitized Guinea Pigs , 1996 .
[25] G. Splitter,et al. Immunization of mice with recombinant L7/L12 ribosomal protein confers protection against Brucella abortus infection. , 1996, Vaccine.
[26] G. Splitter,et al. CD8+ Type 1 CD44hi CD45 RBlo T lymphocytes control intracellular Brucella abortus infection as demonstrated in major histocompatibility complex class I‐ and class II‐deficient mice , 1995, European journal of immunology.
[27] N. Balaban,et al. Intracellular antigens (microtubule-associated protein copurified with glycosomal enzymes)--possible vaccines against trypanosomiasis. , 1995, The Journal of infectious diseases.
[28] G. Splitter,et al. Recombinant L7/L12 ribosomal protein and gamma-irradiated Brucella abortus induce a T-helper 1 subset response from murine CD4+ T cells. , 1994, Immunology.
[29] A. Genizi,et al. Brucella ribosomal protein L7/L12 is a major component in the antigenicity of brucellin INRA for delayed-type hypersensitivity in brucella-sensitized guinea pigs , 1994, Infection and immunity.
[30] G. Splitter,et al. Subcloning and expression of the Brucella abortus L7/L12 ribosomal gene and T-lymphocyte recognition of the recombinant protein , 1994, Infection and immunity.
[31] G. Splitter,et al. Isolation of Brucella abortus ssb and uvrA genes from a genomic library by use of lymphocytes as probes , 1993, Infection and immunity.
[32] C. Cheers,et al. Cytokine response of T-cell subsets from Brucella abortus-infected mice to soluble Brucella proteins , 1993, Infection and immunity.
[33] G. Splitter,et al. Antigens of Brucella abortus S19 immunodominant for bovine lymphocytes as identified by one- and two-dimensional cellular immunoblotting , 1992, Infection and immunity.
[34] G. Splitter,et al. Sodium dodecyl sulfate- and salt-extracted antigens from various Brucella species induce proliferation of bovine lymphocytes , 1992, Infection and immunity.
[35] L. Araya,et al. Comparative protection of mice against virulent and attenuated strains of Brucella abortus by passive transfer of immune T cells or serum , 1990, Infection and immunity.
[36] A. Prata,et al. Human resistance to Schistosoma mansoni is associated with IgG reactivity to a 37-kDa larval surface antigen. , 1988, Journal of immunology.
[37] R. Gregory. Microbial ribosomal vaccines. , 1986, Reviews of infectious diseases.
[38] M. Corbel. The immunogenic activity of ribosomal fractions derived from Brucella abortus , 1976, Journal of Hygiene.