首页> 外文期刊>Journal of Neuropathology and Experimental Neurology: Official Journal of the American Association of Neuropathologists, Inc >Perturbed myelination process of premyelinating oligodendrocyte in Niemann-Pick type C mouse.
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Perturbed myelination process of premyelinating oligodendrocyte in Niemann-Pick type C mouse.

机译:Niemann-Pick C型小鼠的前髓鞘少突胶质细胞的扰动髓鞘形成过程。

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Niemann-Pick disease type C (NPC) is an autosomal recessive neurovisceral lipid storage disease caused by a loss of NPCI function, which results in perturbation of intracellular cholesterol transport. In BALB/c npc(nih) mice, the murine ortholog of NPCI gene is mutated. In NPC mouse, hypomyelination is conspicuous in the cerebral white matter and corpus callosum in addition to neuronal storage. However, the pathogenesis on hypomyelination is not well elucidated. We hypothesized that the hypomyelination in NPC mice resulted from either defective differentiation of oligodendrocyte lineage cells or a failure of proper axon-glial interaction. Myelin basic protein immunohistochemistry disclosed severe hypomyelination of cerebral cortex as well. NG2- or O4-positive progenitor cells and premyelinating oligodendrocytes (OLs) were abundant. However, pi-glutathione-S-transferase-positive mature OLs were considerably reduced. In hypomyelinated white matter, strong immunoreactivity of polysialylated-neural cell adhesion molecule, a negative regulator of myelination, was observed in axons. Given the fact that neuro-axonal degeneration has been observed in NPC mouse as early as 9 days of age prior to the commencement of myelination in the corpus callosum and that axonal signals are essential for the proper myelination, subtle axonal injury might be contributing to the pathogenesis of disturbed myelination in the NPC mouse.
机译:C型Niemann-Pick疾病(NPC)是由NPCI功能丧失引起的常染色体隐性神经内脏脂质存储疾病,其导致细胞内胆固醇转运的紊乱。在BALB / c npc(nih)小鼠中,NPCI基因的鼠直系同源基因被突变。在NPC小鼠中,除神经元存储外,脑白质和call体中的髓鞘明显减少。然而,关于髓鞘发育不足的发病机理尚不清楚。我们假设NPC小鼠的低髓鞘形成是由于少突胶质细胞系分化不良或适当的轴突-神经胶质相互作用失败引起的。髓鞘碱性蛋白免疫组织化学也显示出大脑皮质的严重低髓鞘形成。 NG2或O4阳性祖细胞和前髓鞘少突胶质细胞(OL)丰富。但是,π-谷胱甘肽-S-转移酶阳性的成熟OL显着降低。在低髓鞘的白质中,在轴突中观察到多唾液酸化神经细胞粘附分子(髓鞘的负调节剂)的强免疫反应性。鉴于早在9体髓鞘形成开始之前的9天就已经在NPC小鼠中观察到神经轴突变性,并且轴突信号对于适当的髓鞘形成必不可少,因此细微的轴突损伤可能是造成这种情况的原因。 NPC小鼠髓鞘异常的发病机理。

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