Baron-Van Evercooren A, Gansmuller A, Duhamel E, Pascal F, Gumpel M
INSERM U134, Unité de Neurobiologie cellulaire, Hôpital de la Salpêtrière, Paris, France.
J Neuroimmunol. 1992 Oct;40(2-3):235-42. doi: 10.1016/0165-5728(92)90139-c.
In multiple sclerosis and experimental demyelination, oligodendrocytes and Schwann cells are able to repair myelin lesions of the central nervous system. However, spontaneous myelin repair is often insufficient. Several approaches to enhance remyelination have been considered and transplantation of myelin-forming cells has been proposed as one of them. In this paper, we present results which confirm the ability of transplanted Schwann cells to remyelinate an induced demyelinated lesion of the spinal cord. Schwann cells were either purified Schwann cells isolated from 1-2-day-old rat sciatic nerves, or immortalized Schwann cells (MSC80) arising from a purified culture of 7-day-old mouse sciatic nerves. They were transplanted into or at a distance from a lysolecithin-induced lesion of the Shiverer spinal cord. Labelling of the Schwann cells with the fluorochrome Hoechst 33342 enabled us to trace them after transplantation in their host and evaluate their ability to reach and to repair the demyelinated lesion. Using the Hoechst-Shiverer model, we show that when transplanted in the lesion, cultured Schwann cells, even immortalized, are able to remyelinate such a lesion efficiently. In addition, when transplanted at a distance from the lesion, they are able to reach and repair the lesion in time frames which allow them to compete actively with host oligodendrocytes.
在多发性硬化症和实验性脱髓鞘疾病中,少突胶质细胞和施万细胞能够修复中枢神经系统的髓鞘损伤。然而,自发的髓鞘修复往往是不充分的。人们已经考虑了几种增强髓鞘再生的方法,其中之一就是提出移植形成髓鞘的细胞。在本文中,我们展示的结果证实了移植的施万细胞能够使诱导的脊髓脱髓鞘损伤重新形成髓鞘。施万细胞要么是从1 - 2日龄大鼠坐骨神经中分离得到的纯化施万细胞,要么是源自7日龄小鼠坐骨神经纯化培养物的永生化施万细胞(MSC80)。它们被移植到颤抖小鼠脊髓的溶血卵磷脂诱导损伤部位或其附近。用荧光染料Hoechst 33342对施万细胞进行标记,使我们能够在移植后追踪它们在宿主体内的情况,并评估它们到达和修复脱髓鞘损伤的能力。使用Hoechst - 颤抖小鼠模型,我们表明,当移植到损伤部位时,培养的施万细胞,即使是永生化的,也能够有效地使这样的损伤重新形成髓鞘。此外,当在离损伤部位一定距离处移植时,它们能够及时到达并修复损伤,这使它们能够与宿主少突胶质细胞积极竞争。