Repeated social defeat increases the bactericidal activity of splenic macrophages through a Toll-like receptor-dependent pathway
Open Access
- 1 September 2007
- journal article
- Published by American Physiological Society in American Journal of Physiology-Regulatory, Integrative and Comparative Physiology
- Vol. 293 (3), R1180-R1190
- https://doi.org/10.1152/ajpregu.00307.2007
Abstract
Phagocytes of the innate immune system, such as monocytes/macrophages, represent a first line of defense against invading microorganisms. Psychological stress is often thought to suppress the functioning of these cells, in part due to the immunosuppressive activity of stress-induced glucocorticoid hormones. However, exposure to the stressor social disruption (SDR) has been shown to increase cytokine production by monocytes/macrophages and to reduce their sensitivity to corticosterone. Thus, it was hypothesized that splenic monocytes/macrophages from socially stressed mice would be primed to be more physiologically active than cells from nonstressed controls. Flow cytometry was used to demonstrate that exposure to SDR significantly increased the expression of Toll-like receptors (TLR) 2 and 4 on the surface of splenic macrophages. In a follow-up experiment, exposure to SDR also increased the ability of these macrophages to kill Escherichia coli ex vivo and in vivo. However, SDR failed to increase the bactericidal activity of splenic macrophages from C3H/HeJ mice, which lack functional TLR4. In mice with functional TLR4, the stress-induced increase in bactericidal activity was associated with a significant increase in macrophage gene expression for inducible nitric oxide synthase and subunits of the NADPH oxidase complex, which are responsible for generating reactive nitrogen and oxygen intermediates, respectively. This stress-induced increase in gene expression was not evident in the TLR4-deficient mice. These data indicate that SDR increases TLR expression, which in turn enhances the bactericidal activity of splenic macrophages, in part by increasing pathways responsible for reactive oxygen and nitrogen intermediate production.Keywords
This publication has 58 references indexed in Scilit:
- Exacerbation of murine ileitis by Toll-like receptor 4 mediated sensing of lipopolysaccharide from commensal Escherichia coliGut, 2007
- A Regulated Adaptor Function of p40phox: Distinct p67phoxMembrane Targeting by p40phoxand by p47phoxMolecular Biology of the Cell, 2007
- The phosphoinositide-binding protein p40phox activates the NADPH oxidase during FcγIIA receptor–induced phagocytosisThe Journal of Experimental Medicine, 2006
- Neutrophils from p40phox−/− mice exhibit severe defects in NADPH oxidase regulation and oxidant-dependent bacterial killingThe Journal of Experimental Medicine, 2006
- Differential toll-like receptor expression after ex vivo lipopolysaccharide exposure in patients with sepsis and following surgical stressClinical Immunology, 2006
- Antimicrobial reactive oxygen and nitrogen species: concepts and controversiesNature Reviews Microbiology, 2004
- Role of the hypothalamic-pituitary-adrenal axis, glucocorticoids and glucocorticoid receptors in toxic sequelae of exposure to bacterial and viral productsJournal of Endocrinology, 2004
- Phagocytosis induces superoxide formation and apoptosis in macrophagesExperimental & Molecular Medicine, 2003
- Host and Bacterial Factors Involved in the Innate Ability of Mouse Macrophages To Eliminate Internalized UnopsonizedEscherichia coliInfection and Immunity, 2000
- Innate and adaptive immune responses in a social conflict paradigmClinical Immunology and Immunopathology, 1990