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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Interleukin-6 promotes sprouting and functional recovery in lesioned organotypic hippocampal slice cultures.
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Interleukin-6 promotes sprouting and functional recovery in lesioned organotypic hippocampal slice cultures.

机译:白介素6促进受损的器官型海马切片培养物中的发芽和功能恢复。

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Interleukin (IL)-6 is a pro-inflammatory cytokine now widely recognized to contribute to the molecular events that follow CNS injury. Little is known, however, about its action on axonal sprouting and regeneration in the brain. We addressed this issue using the model of transection of Schaffer collaterals in mice organotypic hippocampal slice cultures. Transection of slice cultures was associated with a marked release of IL-6 that could be neutralized by an IL-6 blocking antibody. We monitored functional recovery across the lesion by recording synaptic responses using a multi-electrode array. We found that application of IL-6 antibodies to the cultures after lesioning significantly reduced functional recovery across the lesion. Furthermore, the level of expression of the 43-kDa growth-associated protein (GAP-43) was lower in slices treated with the IL-6 neutralizing antibody than in those treated with a control IgG. Conversely, addition of exogenous IL-6 to the culture medium resulted in a dose-dependent enhancement of functional recovery across the lesion and a higher level of expression of GAP-43. Co-culture of CA3 hemi-slices from thy1-YFP mice with CA1 hemi-slices from wild-type animals confirmed that IL-6-treated co-cultures exhibited an increased number of growing fluorescent fibres across the lesion site. Taken together these data indicate that IL-6 plays an important role in CNS repair mechanisms by promoting regrowth and axon regeneration.
机译:白介素(IL)-6是一种促炎性细胞因子,现已被广泛认为有助于中枢神经系统损伤后的分子事件。然而,关于其对大脑轴突发芽和再生的作用知之甚少。我们在小鼠器官型海马切片培养物中使用Schaffer侧支横切模型解决了这个问题。切片培养物的横切与IL-6的明显释放有关,IL-6的释放可以被IL-6阻断抗体中和。我们通过使用多电极阵列记录突触反应来监测整个病变的功能恢复。我们发现,病变后向培养物中应用IL-6抗体会大大降低整个病变的功能恢复。此外,用IL-6中和抗体处理的切片中的43-kDa生长相关蛋白(GAP-43)的表达水平低于用对照IgG处理的切片中的43-kDa生长相关蛋白(GAP-43)的表达水平。相反,向培养基中添加外源IL-6导致整个病变处功能恢复的剂量依赖性增强和GAP-43的较高表达水平。来自thy1-YFP小鼠的CA3半切片与来自野生型动物的CA1半切片的共培养证实,经IL-6处理的共培养物在病灶部位的荧光纤维生长数量增加。这些数据加在一起表明,IL-6通过促进再生和轴突再生在中枢神经系统修复机制中起重要作用。

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