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首页> 外文期刊>Journal of the Neurological Sciences: Official Bulletin of the World Federation of Neurology >Demyelination and axonal damage in a non-human primate model of multiple sclerosis.
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Demyelination and axonal damage in a non-human primate model of multiple sclerosis.

机译:非人灵长类动物多发性硬化症模型中的脱髓鞘和轴突损伤。

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The demyelinating plaque is the paradigmatic lesion of multiple sclerosis (MS), but only recently attention has been given to axonal damage and to its role in the pathophysiology of disease. Albeit the possible relevance of axonal loss in MS and its experimental models, the amount and timing of axonal sufferance has been addressed only in experimental autoimmune encephalomyelitis (EAE) of rodents. In this report we observed that, in the marmoset model of EAE, axonal damage occurs early during the demyelinating process as assessed by immunoreactivity for amyloid precursor protein (APP) and non-phosphorylated neurofilaments (SMI-32 positive) detected mostly in early active lesions compared to late active and normal appearing white matter. The rare occurrence of morphological features of axonal transection, such as APP or SMI-32 positive spheroids and swellings, as well as an increase of neurofilament density in the demyelinated axons without accumulation of electron dense organelles or osmiophilic bodies, at electron microscopy, suggests that early axonal damage may be, at least in part, a reversible process. These findings are of relevance for the development of therapies, which can protect axons and enhance their function and survival.
机译:脱髓鞘斑块是多发性硬化症(MS)的典型病变,但直到最近才关注轴突损伤及其在疾病病理生理中的作用。尽管在MS及其实验模型中可能存在轴突丢失的相关性,但仅在啮齿动物的实验性自身免疫性脑脊髓炎(EAE)中解决了轴突遭受的数量和时机。在本报告中,我们观察到,在EAE的mo猴模型中,轴突损伤发生在脱髓鞘过程的早期,这是通过对淀粉样前体蛋白(APP)和非磷酸化的神经丝(SMI-32阳性)的免疫反应性进行评估的,主要在早期活动性病变中发现与晚期活跃和正常出现的白质相比。在电子显微镜下,轴突横断的形态学特征很少发生,例如APP或SMI-32阳性球状体和肿胀,以及脱髓鞘的轴突中神经丝密度的增加而没有电子致密的细胞器或亲嗜性细胞的积聚。早期轴突损伤可能至少部分是可逆过程。这些发现与疗法的发展有关,疗法可以保护轴突并增强其功能和存活。

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