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Astroglial Inhibition of NF-κB Does Not Ameliorate Disease Onset and Progression in a Mouse Model for Amyotrophic Lateral Sclerosis (ALS)

机译:星形胶质细胞抑制NF-κB不能改善肌萎缩性侧索硬化症(ALS)小鼠模型中疾病的发作和进展。

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摘要

Motor neuron death in amyotrophic lateral sclerosis (ALS) is considered a “non-cell autonomous” process, with astrocytes playing a critical role in disease progression. Glial cells are activated early in transgenic mice expressing mutant SOD1, suggesting that neuroinflammation has a relevant role in the cascade of events that trigger the death of motor neurons. An inflammatory cascade including COX2 expression, secretion of cytokines and release of NO from astrocytes may descend from activation of a NF->κB-mediated pathway observed in astrocytes from ALS patients and in experimental models. We have attempted rescue of transgenic mutant SOD1 mice through the inhibition of the NF-κB pathway selectively in astrocytes. Here we show that despite efficient inhibition of this major pathway, double transgenic mice expressing the mutant SOD1G93A ubiquitously and the dominant negative form of I>κBα (I>κBαAA) in astrocytes under control of the GFAP promoter show no benefit in terms of onset and progression of disease. Our data indicate that motor neuron death in ALS cannot be prevented by inhibition of a single inflammatory pathway because alternative pathways are activated in the presence of a persistent toxic stimulus.
机译:肌萎缩性侧索硬化症(ALS)中的运动神经元死亡被认为是“非细胞自主”过程,星形胶质细胞在疾病进展中起关键作用。在表达突变型SOD1的转基因小鼠中,神经胶质细胞被早期激活,这表明神经炎症在触发运动神经元死亡的一系列事件中具有相关作用。星形胶质细胞中包括COX2表达,细胞因子分泌和NO释放的炎症级联反应可能是由于在ALS患者和实验模型的星形胶质细胞中观察到的NF- >κ B介导的途径激活而引起的。我们试图通过选择性抑制星形胶质细胞中的NF-κB途径来挽救转基因突变SOD1小鼠。在这里,我们显示,尽管有效抑制了这一主要途径,但双转基因小鼠普遍表达突变型SOD1 G93A 和I >κBα(I >κ 在GFAP启动子控制下的星形胶质细胞中,BαAA)对疾病的发作和进展无益处。我们的数据表明,不能通过抑制单个炎性途径来预防ALS中的运动神经元死亡,因为在存在持续性毒性刺激的情况下,其他途径均被激活。

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