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C3a expressed in the central nervous system protects against LPS-induced shock

Boos L, Szalai AJ, Barnum SR2005Neuroscience LettersJournal Article
10.1016/j.neulet.2005.07.015PubMed
Immune/InnateNeurological
Bacterial Endotoxins

Abstract

Complement is implicated in the pathogenesis of inflammatory disorders of the central nervous system (CNS), like multiple sclerosis, Alzheimer's disease, and trauma. The anaphylatoxins C3a and C5a are thought to be the major contributors to complement-mediated inflammation in the CNS, likely mediating their effects via their ability to attract and activate leukocytes and common capacity to augment inflammation. For example, in experimental autoimmune encephalomyelitis, the animal model of multiple sclerosis, CNS-specific expression of C3a in C3a/GFAP transgenic mice renders them prone to massive cellular infiltration of the CNS and increases their mortality. In contrast, other studies have suggested that C3a can function in an anti-inflammatory fashion in the CNS, by inducing neurotrophin production and preventing NMDA-mediated neurotoxicity. To further investigate the seemingly paradoxical role of C3a in acute inflammation of the brain, we studied the pathogenesis of endotoxin shock in C3a/GFAP transgenic, C3a receptor-deficient (C3aR-/-) and C3a/GFAPxC3aR-/- mutant mice. Here we report that C3a/GFAP mice were significantly more resistant to endotoxin-induced lethality than wild-type and C3aR-/- mice. Surprisingly, C3a/GFAPxC3aR-/- hybrids were also significantly protected, indicating that C3a exerts its protective anti-inflammatory effect either directly or via an as yet unidentified non-canonical C3aR.

Cited By (2)

  • Innate Immunity and Protective Neuroinflammation: New Emphasis on the Role of Neuroimmune Regulatory ProteinsInternational review of neurobiology · 2007
  • The role of complement, C5a and its receptors in sepsis and multiorgan dysfunction syndromeJournal of Investigative Surgery · 2006

References (5)

  • Signaling the brain in systemic inflammation: the role of complementFrontiers in bioscience · 2004
  • Complement anaphylatoxin receptors on neurons: new tricks for old receptors?Trends in Neurosciences · 1999
  • Complement C3a receptors in the pituitary gland: a novel pathway by which an innate immune molecule releases hormones involved in the control of inflammationThe FASEB Journal · 2003
  • Deletion of the Complement Anaphylatoxin C3a Receptor Attenuates, Whereas Ectopic Expression of C3a in the Brain Exacerbates, Experimental Autoimmune EncephalomyelitisThe Journal of Immunology · 2004

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