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Local Overexpression of Interleukin-11 in the Central Nervous System Limits Demyelination and Enhances Remyelination

机译:中枢神经系统中白介素11的局部过表达限制了脱髓鞘作用并增强了髓鞘再生

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摘要

Demyelination is one of the pathological hallmarks of multiple sclerosis (MS). To date, no therapy is available which directly potentiates endogenous remyelination. Interleukin-11 (IL-11), a member of the gp130 family of cytokines, is upregulated in MS lesions. Systemic IL-11 treatment was shown to ameliorate clinical symptoms in experimental autoimmune encephalomyelitis (EAE), an animal model of MS. IL-11 modulates immune cells and protects oligodendrocytes in vitro. In this study, the cuprizone-induced demyelination mouse model was used to elucidate effects of IL-11 on de- and remyelination, independent of the immune response. Prophylactic-lentiviral- (LV-) mediated overexpression of IL-11 in mouse brain significantly limited acute demyelination, which was accompanied with the preservation of CC1+ mature oligodendrocytes (OLs) and a decrease in microglial activation (Mac-2+). We further demonstrated that IL-11 directly reduces myelin phagocytosis in vitro. When IL-11 expressing LV was therapeutically applied in animals with extensive demyelination, a significant enhancement of remyelination was observed as demonstrated by Luxol Fast Blue staining and electron microscopy imaging. Our results indicate that IL-11 promotes maturation of NG2+ OPCs into myelinating CC1+ OLs and may thus explain the enhanced remyelination. Overall, we demonstrate that IL-11 is of therapeutic interest for MS and other demyelinating diseases by limiting demyelination and promoting remyelination.
机译:脱髓鞘是多发性硬化症(MS)的病理标志之一。迄今为止,尚无可直接增强内源性髓鞘再生的疗法。白细胞介素11(IL-11)是gp130细胞因子家族的成员,在MS病变中上调。研究表明,全身性IL-11治疗可改善实验性自身免疫性脑脊髓炎(EAE)(一种MS动物模型)的临床症状。 IL-11调节免疫细胞并在体外保护少突胶质细胞。在这项研究中,使用铜氮酮诱导的脱髓鞘小鼠模型阐明了IL-11对脱髓鞘和再髓鞘的作用,而与免疫反应无关。预防性慢病毒(LV-)介导的小鼠脑中IL-11的过表达显着限制了急性脱髓鞘,并伴有CC1 + 成熟少突胶质细胞(OLs)的保存和小胶质细胞活化的降低( Mac-2 + )。我们进一步证明了IL-11在体外可直接减少髓磷脂的吞噬作用。当表达IL-11的LV治疗性应用到具有广泛脱髓鞘作用的动物中时,如Luxol固蓝染色和电子显微镜成像所示,观察到了髓鞘的显着增强。我们的结果表明,IL-11促进NG2 + OPCs进入有髓CC1 + OLs的成熟,因此可以解释增强的髓鞘再生。总体而言,我们证明IL-11通过限制脱髓鞘作用和促进髓鞘再生对MS和其他脱髓鞘疾病具有治疗意义。

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