首页> 美国卫生研究院文献>The Journal of Neuroscience >After Nerve Injury Lineage Tracing Shows That Myelin and Remak Schwann Cells Elongate Extensively and Branch to Form Repair Schwann Cells Which Shorten Radically on Remyelination
【2h】

After Nerve Injury Lineage Tracing Shows That Myelin and Remak Schwann Cells Elongate Extensively and Branch to Form Repair Schwann Cells Which Shorten Radically on Remyelination

机译:神经损伤后沿袭谱系显示髓磷脂和Remak雪旺氏细胞广泛延伸并分支形成修复雪旺氏细胞后者在髓鞘再生时迅速缩短

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

There is consensus that, distal to peripheral nerve injury, myelin and Remak cells reorganize to form cellular columns, Bungner's bands, which are indispensable for regeneration. However, knowledge of the structure of these regeneration tracks has not advanced for decades and the structure of the cells that form them, denervated or repair Schwann cells, remains obscure. Furthermore, the origin of these cells from myelin and Remak cells and their ability to give rise to myelin cells after regeneration has not been demonstrated directly, although these conversions are believed to be central to nerve repair. Using genetic lineage-tracing and scanning-block face electron microscopy, we show that injury of sciatic nerves from mice of either sex triggers extensive and unexpected Schwann cell elongation and branching to form long, parallel processes. Repair cells are 2- to 3-fold longer than myelin and Remak cells and 7- to 10-fold longer than immature Schwann cells. Remarkably, when repair cells transit back to myelinating cells, they shorten ∼7-fold to generate the typically short internodes of regenerated nerves. The present experiments define novel morphological transitions in injured nerves and show that repair Schwann cells have a cell-type-specific structure that differentiates them from other cells in the Schwann cell lineage. They also provide the first direct evidence using genetic lineage tracing for two basic assumptions in Schwann cell biology: that myelin and Remak cells generate the elongated cells that build Bungner bands in injured nerves and that such cells can transform to myelin cells after regeneration.>SIGNIFICANCE STATEMENT After injury to peripheral nerves, the myelin and Remak Schwann cells distal to the injury site reorganize and modify their properties to form cells that support the survival of injured neurons, promote axon growth, remove myelin-associated growth inhibitors, and guide regenerating axons to their targets. We show that the generation of these repair-supportive Schwann cells involves an extensive cellular elongation and branching, often to form long, parallel processes. This generates a distinctive repair cell morphology that is favorable for the formation of the regeneration tracks that are essential for nerve repair. Remyelination, conversely, involves a striking cell shortening to form the typical short myelin cells of regenerated nerves. We also provide evidence for direct lineage relationships between: (1) repair cells and myelin and Remak cells of uninjured nerves and (2) remyelinating cells in regenerated nerves.
机译:人们普遍认为,在周围神经损伤的远端,髓磷脂和Remak细胞会重组形成细胞柱,即邦格氏带,这对于再生是必不可少的。然而,几十年来对这些再生轨迹的结构的了解还没有发展,形成它们,去神经化或修复雪旺氏细胞的细胞的结构仍然不清楚。此外,虽然这些转化被认为是神经修复的关键,但尚未直接证实这些细胞来自髓鞘和Remak细胞的起源以及它们在再生后产生髓鞘细胞的能力。使用遗传谱系追踪和扫描阻滞面电子显微镜,我们表明,来自任何性别的小鼠的坐骨神经损伤都会触发广泛而出乎意料的雪旺氏细胞伸长和分支,形成长而平行的过程。修复细胞比髓磷脂和Remak细胞长2至3倍,比未成熟雪旺细胞长7至10倍。值得注意的是,当修复细胞迁移回有髓细胞时,它们缩短约7倍,从而产生通常较短的再生神经节间。本实验定义了受损神经中新的形态学转变,并表明修复的雪旺氏细胞具有特定于细胞类型的结构,该结构将它们与雪旺氏细胞谱系中的其他细胞区分开。他们还提供了使用遗传谱系追踪的第一个直接证据,用于雪旺氏细胞生物学中的两个基本假设:髓磷脂和Remak细胞产生伸长的细胞,在受伤的神经中建立Bungner带,并且这种细胞在再生后可以转化为髓磷脂细胞。 >重要声明周围神经损伤后,位于损伤部位远端的髓磷脂和Remak Schwann细胞会重组并改变其特性,形成支持受损神经元存活,促进轴突生长,去除与髓磷脂相关的生长抑制剂的细胞。 ,并引导再生轴突到达目标。我们表明,这些修复支持雪旺细胞的生成涉及广泛的细胞伸长和分支,经常形成长而平行的过程。这产生了独特的修复细胞形态,有利于形成神经修复所必需的再生轨迹。相反地​​,髓鞘再生涉及到打击细胞缩短,从而形成再生神经的典型的短髓鞘细胞。我们还为以下方面的直接谱系关系提供了证据:(1)修复细胞以及未损伤神经的髓磷脂和Remak细胞,以及(2)再生神经中的髓鞘细胞。

著录项

相似文献

  • 外文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号