Literature DB >> 12438369

B-cell-deficient mice show an exacerbated inflammatory response in a model of Chlamydophila abortus infection.

Antonio J Buendía1, Laura Del Río, Nieves Ortega, Joaquín Sánchez, María C Gallego, María R Caro, Jose A Navarro, Francisco Cuello, Jesús Salinas.   

Abstract

The resolution of Chlamydophila abortus (Chlamydia psittaci serotype 1) infection is dependent on gamma interferon and CD8(+) T cells, and classically, B cells have been considered to play a minimal role in host defense. The role of B cells in the immune response was studied by using a model of infection in mice with genetically modified immunoglobulin M transmembrane domains ( micro MT). In the absence of B cells, infection with C. abortus leads to an acute severe fatal disease that involves a disseminated intravascular coagulation syndrome. micro MT mice displayed an increased level of proinflammatory cytokines in serum, and an increased number of neutrophils was observed in the lesions. The possible deleterious role of neutrophils in the pathogenesis of disease in micro MT mice was determined by depletion of the neutrophils with the monoclonal antibody RB6-8C5. This led to an enhancement of the bacterial burden and early mortality in both micro MT and wild-type mice, while necrotic lesions remained. Analysis of the presence of immunoregulatory cytokines showed significantly lower levels of transforming growth factor beta in the sera of micro MT mice. However, mice lacking mature B cells were able to establish a specific immune response that protected them from a secondary challenge. Taken together, these data suggest an immunomodulatory role for B cells in the early events of C. abortus primary infection that can protect mice against an exaggerated inflammatory response.

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Year:  2002        PMID: 12438369      PMCID: PMC133017          DOI: 10.1128/IAI.70.12.6911-6918.2002

Source DB:  PubMed          Journal:  Infect Immun        ISSN: 0019-9567            Impact factor:   3.441


  44 in total

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7.  B cells are essential for moderating the inflammatory response and controlling bacterial multiplication in a mouse model of vaccination against Chlamydophila abortus infection.

Authors:  Antonio J Buendía; Nieves Ortega; María R Caro; Laura Del Río; María C Gallego; Joaquín Sánchez; Jose A Navarro; Francisco Cuello; Jesús Salinas
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