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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Suppression of inflammation with conditional deletion of the prostaglandin E2 EP2 receptor in macrophages and brain microglia
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Suppression of inflammation with conditional deletion of the prostaglandin E2 EP2 receptor in macrophages and brain microglia

机译:在巨噬细胞和脑小胶质细胞中条件性删除前列腺素E2 EP2受体可抑制炎症

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摘要

Prostaglandin E2 (PGE2), a potent lipid signaling molecule, modulates inflammatory responses through activation of downstream G-protein coupled EP1-4 receptors. Here, we investigated the cell-specific in vivo function of PGE2 signaling through its E-prostanoid 2 (EP2) receptor in murine innate immune responses systemically and in the CNS. In vivo, systemic administration of lipopolysaccharide (LPS) resulted in a broad induction of cytokines and chemokines in plasma that was significantly attenuated in EP2-deficient mice. Ex vivo stimulation of peritoneal macrophages with LPS elicited proinflammatory responses that were dependent on EP2 signaling and that overlapped with in vivo plasma findings, suggesting that myeloid-lineage EP2 signaling is a major effector of innate immune responses. Conditional deletion of the EP2 receptor in myeloid lineage cells in Cd11bCre;EP2lox/lox mice attenuated plasma inflammatory responses and transmission of systemic inflammation to the brain was inhibited, with decreased hippocampal inflammatory gene expression and cerebral cortical levels of IL-6. Conditional deletion of EP2 significantly blunted microglial and astrocytic inflammatory responses to the neurotoxin MPTP and reduced striatal dopamine turnover. Suppression of microglial EP2 signaling also increased numbers of dopaminergic (DA) neurons in the substantia nigra independent of MPTP treatment, suggesting that microglial EP2 may influence development or survival of DA neurons. Unbiased microarray analysis of microglia isolated from adult Cd11bCre;EP2lox/lox and control mice demonstrated a broad downregulation of inflammatory pathways with ablation of microglial EP2 receptor. Together, these data identify a cell-specific proinflammatory role for macrophage/microglial EP2 signaling in innate immune responses systemically and in brain.
机译:前列腺素E2(PGE2)是一种有效的脂质信号分子,通过激活下游G蛋白偶联的EP1-4受体来调节炎症反应。在这里,我们调查了小鼠的先天免疫应答中和中枢神经系统中PGE2信号通过其E-前列腺素2(EP2)受体的细胞特异性体内功能。在体内,脂多糖(LPS)的全身给药导致血浆中细胞因子和趋化因子的广泛诱导,这在EP2缺陷型小鼠中明显减弱。用LPS对腹膜巨噬细胞进行离体刺激会引起促炎反应,该反应取决于EP2信号传导,并且与体内血浆发现重叠,这表明髓系谱系EP2信号传导是先天免疫反应的主要效应器。 Cd11bCre的髓系细胞中有条件地删除EP2受体; EP2lox / lox小鼠减弱了血浆炎症反应,并抑制了全身性炎症向大脑的传播,海马炎症基因的表达减少且IL-6的大脑皮层水平降低。 EP2的有条件删除显着减弱了对神经毒素MPTP的小胶质细胞和星形胶质细胞的炎症反应,并减少了纹状体多巴胺的代谢。小胶质细胞EP2信号的抑制也增加了黑质中多巴胺能(DA)神经元的数量,与MPTP治疗无关,这表明小胶质细胞EP2可能影响DA神经元的发育或存活。从成年Cd11bCre; EP2lox / lox和对照小鼠中分离出的小胶质细胞的无偏微阵列分析表明,消融了小胶质细胞EP2受体后,炎症途径广泛下调。总之,这些数据确定了巨噬细胞/小胶质细胞EP2信号传导在系统和大脑固有免疫反应中的细胞特异性促炎作用。

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