首页> 外文期刊>Journal of Neuroscience Research >Dysfunctional oligodendrocyte progenitor cell (OPC) populations may inhibit repopulation of OPC depleted tissue.
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Dysfunctional oligodendrocyte progenitor cell (OPC) populations may inhibit repopulation of OPC depleted tissue.

机译:功能异常的少突胶质细胞祖细胞(OPC)可能会抑制OPC耗尽组织的重新繁殖。

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We have attempted to extend a previously described rat model of focal oligodendrocyte progenitor cell (OPC) depletion, using 40 Gy X-irradiation (Chari and Blakemore [2002] Glia 37:307-313), to the adult mouse spinal cord, to examine the ability of OPCs present in adjacent normal areas to colonise areas of progenitor depletion. In contrast to rat, OPCs in the mouse spinal cord appeared to be a comparatively radiation-resistant population, as 30-35% of OPCs survived in X-irradiated tissue (whereas <1% of OPCs survive in X-irradiated rat spinal cord). The numbers of surviving OPCs remained constant with time indicating that this population was incapable of regenerating itself in response to OPC loss. Additionally, these OPCs did not contribute to remyelination of axons when demyelinating lesions were placed in X-irradiated tissue, suggesting that the surviving cells are functionally impaired. Importantly, the length of the OPC-depleted area did not diminish with time, as would be expected if progressive repopulation of OPC-depleted areas by OPCs from normal areas was occurring. Our findings therefore raise the possibility that the presence of a residual dysfunctional OPC population may inhibit colonisation of such areas by normal OPCs.
机译:我们尝试使用40 Gy X射线(Chari和Blakemore [2002] Glia 37:307-313)将先前描述的局灶性少突胶质祖细胞(OPC)耗竭的大鼠模型扩展至成年小鼠脊髓,相邻正常区域中存在的OPC在祖细胞耗竭区域定居的能力。与大鼠相反,小鼠脊髓中的OPC似乎具有较高的抗辐射性,因为30%至35%的OPC在X射线照射的组织中存活(而<1%的OPC在X射线照射的大鼠脊髓中存活) 。存活的OPC数量随时间保持不变,这表明该种群无法响应OPC损失而自我再生。此外,当将脱髓鞘的病变置于X射线照射的组织中时,这些OPC不会促进轴突的髓鞘再生,表明存活的细胞功能受损。重要的是,OPC耗尽区域的长度不会随时间减少,这是可以预料的,如果OPC从正常区域逐渐向OPC耗尽区域填充人口。因此,我们的发现增加了残留的功能异常的OPC群体的存在可能抑制正常OPC在这些区域定居的可能性。

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