首页> 美国卫生研究院文献>Frontiers in Neurology >Changes in Neuronal Excitability by Activated Microglia: Differential Na+ Current Upregulation in Pyramid-Shaped and Bipolar Neurons by TNF-α and IL-18
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Changes in Neuronal Excitability by Activated Microglia: Differential Na+ Current Upregulation in Pyramid-Shaped and Bipolar Neurons by TNF-α and IL-18

机译:激活的小胶质细胞在神经元兴奋性中的变化:金字塔形和双极型神经元中的TNF-α和IL-18差异性Na +电流上调。

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摘要

Microglia are activated during pathological events in the brain and are capable of releasing various types of inflammatory cytokines. Here, we demonstrate that the addition of 5% microglia activated by 1 μg/ml lipopolysaccharides (LPS) to hippocampal cultures upregulates Na+ current densities (INavD) of bipolar as well as pyramid-shaped neurons, thereby increasing their excitability. Deactivation of microglia by the addition of 10 ng/ml transforming growth factor-β (TGF-β) decreases INavD below control levels suggesting that the residual activated microglial cells influence neuronal excitability in control cultures. Preincubation of hippocampal cultures with 10 ng/ml tumor necrosis factor-α (TNF-α), a major cytokine released by activated microglia, upregulated INavD significantly by ~30% in bipolar cells, whereas in pyramid-shaped cells, the upregulation only reached an increase of ~14%. Incubation of the cultures with antibodies against either TNF-receptor 1 or 2 blocked the upregulation of INavD in bipolar cells, whereas in pyramid-shaped cells, increases in INavD were exclusively blocked by antibodies against TNF-receptor 2, suggesting that both cell types respond differently to TNF-α exposure. Since additional cytokines, such as interleukin-18 (IL-18), are released from activated microglia, we tested potential effects of IL-18 on INavD in both cell types. Exposure to 5–10 ng/ml IL-18 for 4 days increased INavD in both pyramid-shaped as well as bipolar neurons, albeit the dose–response curves were shifted to lower concentrations in bipolar cells. Our results suggest that by secretion of cytokines, microglial cells upregulate Na+ current densities in bipolar and pyramid-shaped neurons to some extent differentially. Depending on the exact cytokine composition and concentration released, this could change the balance between the activity of inhibitory bipolar and excitatory pyramid-shaped cells. Since bipolar cells show a larger upregulation of INavD in response to TNF-α as well as respond to smaller concentrations of IL-18, our results offer an explanation for the finding, that in certain conditions of brain inflammations periods of dizziness are followed by epileptic seizures.
机译:小胶质细胞在大脑的病理事件期间被激活,并能够释放各种类型的炎症细胞因子。在这里,我们证明了向海马培养物中添加1μg/ ml脂多糖(LPS)激活的5%小胶质细胞会上调双极的Na + 电流密度(INavD)以及金字塔形神经元,从而增加他们的兴奋性。通过添加10μng/ ml转化生长因子-β(TGF-β)使小胶质细胞失活将INavD降低至低于对照水平,表明残留的活化小胶质细胞会影响对照培养物中的神经元兴奋性。用激活的小胶质细胞释放的主要细胞因子10µng / ml肿瘤坏死因子-α(TNF-α)对海马培养物进行预培养,在双极细胞中INavD明显上调约30%,而在金字塔形细胞中,仅达到增加了〜14%。用抗TNF受体1或2的抗体孵育培养物可阻止双极细胞中INavD的上调,而在金字塔形细胞中,抗​​TNF受体2的抗体只能阻止INavD的增加,这表明这两种细胞类型都有反应与TNF-α暴露不同。由于从活化的小胶质细胞中释放了其他细胞因子,例如白介素18(IL-18),因此我们测试了两种细胞类型中IL-18对INavD的潜在作用。在金字塔形以及双极型神经元中,暴露于5–10μng / ml IL-18 4天均会增加INavD,尽管剂量反应曲线已移至双极型细胞中较低的浓度。我们的结果表明,通过分泌细胞因子,小胶质细胞在一定程度上上调了双极和金字塔形神经元中Na + 的电流密度。根据确切的细胞因子组成和释放的浓度,这可能会改变抑制性双极细胞和兴奋性金字塔形细胞之间的平衡。由于双极细胞对TNF-α的反应以及对较小浓度的IL-18的INavD的上调都较大,因此我们的结果为以下发现提供了解释:在某些脑部炎症情况下,头晕后会出现癫痫癫痫发作。

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