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

机译:在中枢神经系统中表达的C3a可以防止LPS诱发的休克。

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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.
机译:补体参与中枢神经系统(CNS)炎症性疾病的发病机制,例如多发性硬化症,阿尔茨海默氏病和创伤。过敏毒素C3a和C5a被认为是补体介导的中枢神经系统炎症的主要贡献者,可能通过其吸引和激活白细胞的能力以及增强炎症的共同能力来介导其作用。例如,在实验性自身免疫性脑脊髓炎(多发性硬化症的动物模型)中,C3a / GFAP转基因小鼠中C3a的CNS特异性表达使它们易于发生CNS的大量细胞浸润并增加其死亡率。相反,其他研究表明,C3a可以通过诱导神经营养蛋白生成和预防NMDA介导的神经毒性,以抗炎的方式在CNS中发挥作用。为了进一步研究C3a在大脑急性炎症中的看似矛盾的作用,我们研究了C3a / GFAP转基因,C3a受体缺陷(C3aR-/-)和C3a / GFAPxC3aR-/-突变小鼠的内毒素休克的发病机理。在这里,我们报告C3a / GFAP小鼠比野生型和C3aR-/-小鼠对内毒素致死性的抵抗力强得多。令人惊讶的是,C3a / GFAPxC3aR-/-杂种也得到了显着保护,表明C3a直接或通过尚未鉴定的非经典C3aR发挥其保护性抗炎作用。

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