再髓鞘化
神经科学
多发性硬化
灵长类动物
视神经
轴突变性
轴突
髓鞘
白质
变性(医学)
视网膜变性
生物
医学
中枢神经系统
病理
视网膜
磁共振成像
免疫学
放射科
作者
Nadège Sarrazin,Estelle Chavret-Reculon,Corinne Bachelin,Mehdi Felfli,Rafik Arab,Sophie Gilardeau,Elena Brazhnikova,Élisabeth Dubus,Lydia Yahia Cherif,Jean Lorenceau,Serge Picaud,Serge G. Rosolen,Pierre Moissonnier,Pierre Pouget,Anne Baron‐Van Evercooren
标识
DOI:10.1073/pnas.2115973119
摘要
Significance Promotion of remyelination has become a new therapeutic avenue to prevent neuronal degeneration and promote recovery in white matter diseases, such as multiple sclerosis (MS). To date most of these strategies have been developed in short-lived rodent models of demyelination, which spontaneously repair. Well-defined nonhuman primate models closer to man would allow us to efficiently advance therapeutic approaches. Here we present a nonhuman primate model of optic nerve demyelination that recapitulates several features of MS lesions. The model leads to failed remyelination, associated with progressive axonal degeneration and visual dysfunction, thus providing the missing link to translate emerging preclinical therapies to the clinic for myelin disorders such as MS.
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