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首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >Ambivalent aspects of interleukin-6 in cerebral ischemia: inflammatory versus neurotrophic aspects.
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Ambivalent aspects of interleukin-6 in cerebral ischemia: inflammatory versus neurotrophic aspects.

机译:脑缺血中白介素6的歧义方面:炎症与神经营养方面。

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Interleukin-6 (IL-6) is pleiotropic cytokine involved in many central nervous system disorders including stroke, and elevated serum IL-6 has been found in acute stroke patients. IL-6 is implicated in the inflammation, which contributes to both injury and repair process after cerebral ischemia. However, IL-6 is one of the neurotrophic cytokines sharing a common receptor subunit, gp130, with other neurotrophic cytokines, such as leukemia inhibitory factor (LIF) and ciliary neurotrophic factor. The expression of IL-6 is most prominently identified in neurons in the peri-ischemic regions, and LIF expression shows a similar pattern. The direct injection of these cytokines into the brain after ischemia can reduce ischemic brain injury. The cytokine receptors are localized on the neuron surface, suggesting that neurons are the cytokine target. The major IL-6 downstream signaling pathway is JAK-STAT, and Stat3 activation occurs mainly in neurons during postischemic reperfusion. Further investigation is necessary to clarify the exact role of Stat3 signaling in neuroprotection. Taken together, the information suggests that IL-6 plays a double role in cerebral ischemia, as an inflammatory mediator during the acute phase and as a neurotrophic mediator between the subacute and prolonged phases.
机译:白细胞介素6(IL-6)是参与包括中风在内的许多中枢神经系统疾病的多效性细胞因子,并且在急性中风患者中发现血清IL-6升高。 IL-6与炎症有关,它在脑缺血后促进损伤和修复过程。但是,IL-6是一种神经营养细胞因子,与其他神经营养细胞因子(例如白血病抑制因子(LIF)和睫状神经营养因子)共有一个共同的受体亚基gp130。 IL-6的表达在局部缺血区域的神经元中最为明显,而LIF的表达也类似。在缺血后将这些细胞因子直接注射到大脑中可以减少缺血性脑损伤。细胞因子受体位于神经元表面,表明神经元是细胞因子的靶标。 IL-6的主要下游信号传导途径是JAK-STAT,Stat3激活主要发生在缺血再灌注过程中的神经元中。有必要进行进一步研究以阐明Stat3信号在神经保护中的确切作用。综上所述,该信息提示IL-6在脑缺血中起双重作用,在急性期作为炎症介质,在亚急性期和长期期之间作为神经营养介质。

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