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本文引用的文献

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Lysosomal storage disorders: old diseases, present and future challenges.溶酶体贮积症:古老的疾病,当前与未来的挑战
Pediatr Endocrinol Rev. 2013 Nov;11 Suppl 1:59-63.
2
Innate immune activation in the pathogenesis of a murine model of globoid cell leukodystrophy.先天免疫激活在球状细胞脑白质营养不良小鼠模型发病机制中的作用。
Am J Pathol. 2014 Feb;184(2):382-96. doi: 10.1016/j.ajpath.2013.10.011. Epub 2013 Dec 4.
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Deletion of tumor necrosis factor-α ameliorates neurodegeneration in Sandhoff disease mice.肿瘤坏死因子-α缺失可改善桑德霍夫病小鼠的神经退行性变。
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Systemic ceramide accumulation leads to severe and varied pathological consequences.全身性神经酰胺积累会导致严重且多样的病理后果。
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Contribution of brain inflammation to neuronal cell death in neuronopathic forms of Gaucher's disease.脑炎症对神经病变型戈谢病神经元细胞死亡的贡献。
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Neuropathology in mouse models of mucopolysaccharidosis type I, IIIA and IIIB.黏多糖贮积症 I、IIIA 和 IIIB 型小鼠模型的神经病理学。
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Neuronal and epithelial cell rescue resolves chronic systemic inflammation in the lipid storage disorder Niemann-Pick C.神经元和上皮细胞挽救可解决脂质贮积病尼曼-匹克 C 型的慢性全身炎症。
Hum Mol Genet. 2012 Jul 1;21(13):2946-60. doi: 10.1093/hmg/dds126. Epub 2012 Apr 6.
9
The natural course of gross motor deterioration in metachromatic leukodystrophy.黏脂贮积症性脑白质营养不良进行性粗大运动功能恶化的自然病程。
Dev Med Child Neurol. 2011 Sep;53(9):850-855. doi: 10.1111/j.1469-8749.2011.04028.x. Epub 2011 Jun 27.
10
Intracerebroventricular enzyme infusion corrects central nervous system pathology and dysfunction in a mouse model of metachromatic leukodystrophy.鞘内酶输注纠正黏脂贮积症模型小鼠中枢神经系统病变和功能障碍。
Hum Mol Genet. 2011 Jul 15;20(14):2760-9. doi: 10.1093/hmg/ddr175. Epub 2011 Apr 22.

辛伐他汀抗炎治疗改善异染性脑白质营养不良小鼠模型中的神经炎症和中枢神经系统功能。

Anti-inflammatory Therapy With Simvastatin Improves Neuroinflammation and CNS Function in a Mouse Model of Metachromatic Leukodystrophy.

作者信息

Stein Axel, Stroobants Stijn, Gieselmann Volkmar, D'Hooge Rudi, Matzner Ulrich

机构信息

Institut für Biochemie und Molekularbiologie, Rheinische Friedrich-Wilhelms Universität, Bonn, Germany.

Laboratory of Biological Psychology, Department of Psychology, University of Leuven, Leuven, Belgium.

出版信息

Mol Ther. 2015 Jul;23(7):1160-1168. doi: 10.1038/mt.2015.69. Epub 2015 Apr 21.

DOI:10.1038/mt.2015.69
PMID:25896249
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4817791/
Abstract

Metachromatic leukodystrophy (MLD) is a lysosomal storage disease caused by a functional deficiency of the lysosomal enzyme arylsulfatase A. The prevailing late-infantile variant of MLD is characterized by widespread and progressive demyelination of the central nervous system (CNS) causing death during childhood. In order to gain insight into the pathomechanism of the disease and to identify novel therapeutic targets, we analyzed neuroinflammation in two mouse models reproducing a mild, nondemyelinating, and a more severe, demyelinating, variant of MLD, respectively. Microgliosis and upregulation of cytokine/chemokine levels were clearly more pronounced in the demyelinating model. The analysis of the temporal cytokine/chemokine profiles revealed that the onset of demyelination is preceded by a sustained elevation of the macrophage inflammatory protein (MIP)-1α followed by an upregulation of MIP-1β, monocyte chemotactic protein (MCP)-1, and several interleukins. The tumor necrosis factor (TNF)-α remains unchanged. Treatment of the demyelinating mouse model with the nonsteroidal anti-inflammatory drug simvastatin reduced neuroinflammation, improved the swimming performance and ataxic gait, and retarded demyelination of the spinal cord. Our data suggest that neuroinflammation is causative for demyelination in MLD mice and that anti-inflammatory treatment might be a novel therapeutic option to improve the CNS function of MLD patients.

摘要

异染性脑白质营养不良(MLD)是一种溶酶体贮积病,由溶酶体酶芳基硫酸酯酶A功能缺陷引起。MLD常见的晚发型变异型的特征是中枢神经系统(CNS)广泛且进行性脱髓鞘,导致儿童期死亡。为了深入了解该疾病的发病机制并确定新的治疗靶点,我们分别在两种小鼠模型中分析了神经炎症,这两种模型分别重现了轻度、非脱髓鞘型和更严重的脱髓鞘型MLD变异型。在脱髓鞘模型中,小胶质细胞增生和细胞因子/趋化因子水平上调明显更为显著。对细胞因子/趋化因子时间谱的分析表明,脱髓鞘开始前巨噬细胞炎性蛋白(MIP)-1α持续升高,随后MIP-1β、单核细胞趋化蛋白(MCP)-1和几种白细胞介素上调。肿瘤坏死因子(TNF)-α保持不变。用非甾体抗炎药辛伐他汀治疗脱髓鞘小鼠模型可减轻神经炎症,改善游泳能力和共济失调步态,并延缓脊髓脱髓鞘。我们的数据表明,神经炎症是MLD小鼠脱髓鞘的病因,抗炎治疗可能是改善MLD患者中枢神经系统功能的一种新的治疗选择。