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Pathogenic inflammation in the CNS of mice carrying human PLP1 mutations

机译:携带人PLP1突变小鼠CNS的致病性炎症

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Progressive forms of multiple sclerosis lead to chronic disability, substantial decline in quality of life and reduced longevity. It is often suggested that they occur independently of inflammation. Here we investigated the disease progression in mouse models carrying PLP1 point mutations previously found in patients displaying clinical features of multiple sclerosis. These mouse models show loss-of-function of PLP1 associated with neuroinflammation; the latter leading to clinically relevant axonal degeneration, neuronal loss and brain atrophy as demonstrated by inactivation of the recombination activating gene 1. Moreover, these pathological hallmarks were substantially amplified when we attenuated immune regulation by inactivation of the programmed cell death-1 gene. Our observations support the view that primary oligodendroglial abnormalities can evoke pathogenically relevant neuroinflammation that drives neurodegeneration, as observed in some forms of multiple sclerosis but also in other, genetically-mediated neurodegenerative disorders of the human nervous system. As many potent immunomodulatory drugs have emerged during the last years, it is tempting to consider immunomodulation as a treatment option not only for multiple sclerosis, but also for so far non-treatable, genetically-mediated disorders of the nervous system accompanied by pathogenic neuroinflammation.
机译:多发性硬化症的进展形式导致慢性残疾,生活质量下降并降低寿命。通常表明它们是独立于炎症发生的。在这里,我们研究了在显示多发性硬化症的临床特征的患者中携带PLP1点突变的小鼠模型中的疾病进展。这些小鼠模型显示出与神经炎症相关的PLP1的丧失;后者导致临床相关的轴突变性,神经元损失和脑萎缩,通过灭活重组活化基因的灭活。此外,当我们通过灭活细胞死亡-1基因而减弱免疫调节时,这些病态标志基本上扩增。我们的观察结果支持初级寡突畸形异常可以引起致病相关的神经炎炎症,以某种形式的多发性硬化,而且在其他形式的遗传介导的人类神经系统的神经变性障碍中观察到。由于在过去几年中出现了许多有效的免疫调节药,因此不仅需要考虑免疫调节作为治疗期权,而且不仅适用于多发性硬化,还涉及到目前为止不可治疗的遗传介导的神经系统伴随着致病性神经炎症的遗传疾病。

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