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首页> 外文期刊>Journal of neuroinflammation >Complement is dispensable for neurodegeneration in Niemann-Pick disease type C
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Complement is dispensable for neurodegeneration in Niemann-Pick disease type C

机译:补体对于C型Niemann-Pick疾病的神经变性至关重要

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Background The immune system has been implicated in neurodegeneration during development and disease. In various studies, the absence of complement (that is, C1q deficiency) impeded the elimination of apoptotic neurons, allowing survival. In the genetic lysosomal storage disease Niemann-Pick C (NPC), caused by loss of NPC1 function, the expression of complement system components, C1q especially, is elevated in degenerating brain regions of Npc1-/- mice. Here we test whether complement is mediating neurodegeneration in NPC disease. Findings In normal mature mice, C1q mRNA was found in neurons, particularly cerebellar Purkinje neurons (PNs). In Npc1-/- mice, C1q mRNA was additionally found in activated microglia, which accumulate during disease progression and PN loss. Interestingly, C1q was not enriched on or near degenerating neurons. Instead, C1q was concentrated in other brain regions, where it partially co-localized with a potential C1q inhibitor, chondroitin sulfate proteoglycan (CSPG). Genetic deletion of C1q, or of the downstream complement pathway component C3, did not significantly alter patterned neuron loss or disease progression. Deletion of other immune response factors, a Toll-like receptor, a matrix metalloprotease, or the apoptosis facilitator BIM, also failed to alter neuron loss. Conclusion We conclude that complement is not involved in the death and clearance of neurons in NPC disease. This study supports a view of neuroinflammation as a secondary response with non-causal relationship to neuron injury in the disease. This disease model may prove useful for understanding the conditions in which complement and immunity do contribute to neurodegeneration in other disorders.
机译:背景技术免疫系统与发育和疾病期间的神经变性有关。在各种研究中,补体的缺乏(即C1q缺乏)阻碍了凋亡神经元的消除,从而得以存活。在由NPC1功能丧失引起的遗传溶酶体贮积病Niemann-Pick C(NPC)中,补体系统成分(尤其是C1q)的表达在Npc1-/-小鼠的退化大脑区域中升高。在这里,我们测试补体是否在NPC疾病中介导神经变性。研究结果在正常成熟小鼠中,神经元,特别是小脑浦肯野神经元(PNs)中发现了C1q mRNA。在Npc1-/-小鼠中,在活化的小胶质细胞中还发现了C1q mRNA,它们在疾病进展和PN丢失期间积累。有趣的是,C1q在变性神经元上或附近没有富集。取而代之的是,C1q集中在其他大脑区域,在其中与潜在的C1q抑制剂硫酸软骨素蛋白聚糖(CSPG)部分共定位。 C1q或下游补体途径组分C3的遗传删除没有显着改变模式化的神经元丢失或疾病进展。删除其他免疫反应因子,Toll样受体,基质金属蛋白酶或凋亡促进因子BIM,也未能改变神经元的丢失。结论我们得出结论,补体不参与NPC疾病中神经元的死亡和清除。这项研究支持将神经发炎视为继发性反应,与疾病中神经元损伤无因果关系。该疾病模型可能有助于理解补体和免疫确实导致其他疾病中神经退行性变的状况。

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