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首页> 外文期刊>Glia >Dynamic Impact of Brief Electrical Nerve Stimulation on the Neural Immune Axis-Polarization of Macrophages Toward a Pro-Repair Phenotype in Demyelinated Peripheral Nerve
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Dynamic Impact of Brief Electrical Nerve Stimulation on the Neural Immune Axis-Polarization of Macrophages Toward a Pro-Repair Phenotype in Demyelinated Peripheral Nerve

机译:短暂电神经刺激对脱髓鞘周围神经亲修复表型的巨噬细胞神经免疫轴极化的动态影响。

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Demyelinating peripheral nerves are infiltrated by cells of the monocyte lineage, including macrophages, which are highly plastic, existing on a continuum from pro-inflammatory M1 to pro-repair M2 phenotypic states. Whether one can therapeutically manipulate demyelinated peripheral nerves to promote a pro-repair M2 phenotype remains to be elucidated. We previously identified brief electrical nerve stimulation (ES) as therapeutically beneficial for remyelination, benefits which include accelerated clearance of macrophages, making us theorize that ES alters the local immune response. Thus, the impact of ES on the immune microenvironment in the zone of demyelination was examined. Adult male rat tibial nerves were focally demyelinated via 1% lysophosphatidyl choline (LPC) injection. Five days later, half underwent 1 hour 20 Hz sciatic nerve ES proximal to the LPC injection site. ES had a remarkable and significant impact, shifting the macrophage phenotype from predominantly pro-inflammatory/M1 toward a predominantly pro-repair/M2 one, as evidenced by an increased incidence of expression of M2-associated phenotypic markers in identified macrophages and a decrease in M1-associated marker expression. This was discernible at 3 days post-ES (8 days post-LPC) and continued at the 5 day post-ES (10 days post-LPC) time point examined. ES also affected chemokine (C-C motif) ligand 2 (CCL2; aka MCP-1) expression in a manner that correlated with increases and decreases in macrophage numbers observed in the demyelination zone. The data establish that briefly increasing neuronal activity favorably alters the immune microenvironment in demyelinated nerve, rapidly polarizing macrophages toward a pro-repair phenotype, a beneficial therapeutic concept that may extend to other pathologies.
机译:脱髓鞘性周围神经被单核细胞系的细胞(包括高度可塑性的巨噬细胞)浸润,存在于从促炎性M1到修复性M2表型状态的连续区域。是否可以治疗脱髓鞘的周围神经以促进修复前的M2表型尚待阐明。我们先前发现短暂的电神经刺激(ES)对髓鞘再生具有治疗优势,其中包括加速清除巨噬细胞,这使我们认为ES可以改变局部免疫反应。因此,检查了ES对脱髓鞘区域中的免疫微环境的影响。通过1%溶血磷脂酰胆碱(LPC)注射使成年雄性大鼠胫骨神经局部脱髓鞘。五天后,一半在LPC注射部位附近接受了1小时20 Hz的坐骨神经ES。 ES具有显着且显着的影响,将巨噬细胞表型从主要为促炎/ M1转变为主要为修复/ M2,这一点已得到证明,已鉴定的巨噬细胞中与M2相关的表型标记物的表达发生率增加且M1相关标记表达。在ES后3天(LPC后8天)可以看出这一点,并在ES后5天(LPC后10天)继续观察。 ES还以与在脱髓鞘区域中观察到的巨噬细胞数量增加和减少相关的方式影响趋化因子(C-C基序)配体2(CCL2;又名MCP-1)的表达。数据证实,短暂增加神经元活性有利地改变了脱髓鞘神经中的免疫微环境,使巨噬细胞迅速极化为修复前表型,这是有益的治疗概念,可能会扩展到其他疾病。

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