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The role of Purkinje cell-derived VEGF in cerebellar astrogliosis in Niemann-Pick type C mice

机译:浦肯野细胞源性VEGF在Niemann-Pick C型小鼠小脑星形胶质增生中的作用

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摘要

Niemann-Pick type C disease (NP-C) is a fatal neuro-degenerative disorder caused by a deficiency of NPC1 gene function, which leads to severe neuroinflammation such as astrogliosis. While reports demonstrating neuroinflammation are prevalent in NP-C, information about the onset and progression of cerebellar astrogliosis in this disorder is lacking. Using gene targeting, we generated vascular endothelial growth factor (VEGF) conditional null mutant mice. Deletion of VEGF in cerebellar Purkinje neurons (PNs) led to a significant increase of astrogliosis in the brain of NP-C mice in addition to the loss of PNs, suggesting PN-derived VEGF as an important factor in NP-C pathology. Moreover, replenishment of VEGF in neurons improved brain pathology in NP-C mice. Overall, our data provide a new pathological perspective on cerebellar astrogliosis in NP-C and suggest the importance of VEGF as a therapeutic target for this disease.
机译:Niemann-Pick C型疾病(NP-C)是由NPC1基因功能缺陷引起的致命性神经退行性疾病,可导致严重的神经炎症,如星形胶质细胞增生症。虽然NP-C中普遍存在证明神经炎症的报道,但缺乏有关这种疾病中小脑星形胶质增生的发病和进展的信息。使用基因靶向,我们生成了血管内皮生长因子(VEGF)条件无效突变小鼠。小脑浦肯野神经元(PNs)中VEGF的缺失除了导致PNs丢失外,还导致NP-C小鼠大脑中星形胶质增生的明显增加,这表明PN衍生的VEGF是NP-C病理学的重要因素。此外,神经元中VEGF的补充改善了NP-C小鼠的脑部病理。总体而言,我们的数据为NP-C中小脑星形胶质增生提供了新的病理学观点,并提示VEGF作为该疾病治疗靶标的重要性。

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