Department of Cell and Developmental Biology, University of Colorado School of Medicine, 12801 East 17th Avenue, Research Complex 1 South, Mail Stop 8108, Aurora, CO 80045, USA; Center for NeuroScience, University of Colorado School of Medicine, 12801 East 17th Avenue, Research Complex 1 South, Mail Stop 8108, Aurora, CO 80045, USA.
Exp Neurol. 2014 Jan;251:39-46. doi: 10.1016/j.expneurol.2013.10.017. Epub 2013 Nov 4.
After inflammation-induced demyelination, such as in the disease multiple sclerosis, endogenous remyelination often fails. However, in animal models of demyelination induced with toxins, remyelination can be quite robust. A significant difference between inflammation-induced and toxin-induced demyelination is the response of local cells within the lesion, including astrocytes, oligodendrocytes, microglia/macrophages, and NG2+ cells, which respond to inflammatory stimuli with increased extracellular matrix (ECM) protein and chondroitin sulfate proteoglycan (CSPG) production and deposition. Here, we summarize current knowledge of ECM changes in demyelinating lesions, as well as oligodendrocyte responses to aberrant ECM proteins and CSPGs after various types of demyelinating insults. The discovery that CSPGs act through the receptor protein tyrosine phosphatase sigma (PTPσ) and the Rho-ROCK pathway to inhibit oligodendrocyte process extension and myelination, but not oligodendrocyte differentiation (Pendleton et al., Experimental Neurology (2013) vol. 247, pp. 113-121), highlights the need to better understand the ECM changes that accompany demyelination and their influence on oligodendrocytes and effective remyelination.
在炎症引起的脱髓鞘后,如多发性硬化症等疾病,内源性髓鞘再生常常失败。然而,在毒素诱导的脱髓鞘动物模型中,髓鞘再生可能非常活跃。炎症诱导和毒素诱导的脱髓鞘之间的一个显著区别是病变部位的局部细胞的反应,包括星形胶质细胞、少突胶质细胞、小胶质细胞/巨噬细胞和 NG2+细胞,它们对炎症刺激的反应是细胞外基质(ECM)蛋白和软骨素硫酸蛋白聚糖(CSPG)的产生和沉积增加。在这里,我们总结了脱髓鞘病变中 ECM 变化的最新知识,以及各种类型的脱髓鞘损伤后,少突胶质细胞对异常 ECM 蛋白和 CSPG 的反应。发现 CSPG 通过受体蛋白酪氨酸磷酸酶 sigma(PTPσ)和 Rho-ROCK 途径发挥作用,抑制少突胶质细胞突起的延伸和髓鞘形成,但不抑制少突胶质细胞分化(Pendleton 等人,《实验神经病学》(2013 年)第 247 卷,第 113-121 页),这突出表明需要更好地了解伴随脱髓鞘的 ECM 变化及其对少突胶质细胞和有效的髓鞘再生的影响。