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Immunoelectron microscopic localization of neural cell adhesion molecules (L1, N-CAM, and myelin-associated glycoprotein) in regenerating adult mouse sciatic nerve

机译:再生成年小鼠坐骨神经中神经细胞粘附分子(L1,N-CAM和髓磷脂相关糖蛋白)的免疫电子显微定位

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摘要

The localization of the neural cell adhesion molecules L1, N-CAM, and the myelin-associated glycoprotein was studied by pre- and postembedding staining procedures at the light and electron microscopic levels in transected and crushed adult mouse sciatic nerve. During the first 2-6 d after transection, myelinated and nonmyelinated axons degenerated in the distal part of the proximal stump close to the transection site and over the entire length of the distal part of the transected nerve. During this time, regrowing axons were seen only in the proximal, but not in the distal nerve stump. In most cases L1 and N- CAM remained detectable at cell contacts between nonmyelinating Schwann cells and degenerating axons as long as these were still morphologically intact. Similarly, myelin-associated glycoprotein remained detectable in the periaxonal area of the degenerating myelinated axons. During and after degeneration of axons, nonmyelinating Schwann cells formed slender processes which were L1 and N-CAM positive. They resembled small-diameter axons but could be unequivocally identified as Schwann cells by chronical denervation. Unlike the nonmyelinating Schwann cells, only few myelinating ones expressed L1 and N-CAM. At the cut ends of the nerve stumps a cap developed (more at the proximal than at the distal stump) that contained S-100-negative and fibronectin-positive fibroblast-like cells. Most of these cells were N-CAM positive but always L1 negative. Growth cones and regrowing axons expressed N-CAM and L1 at contact sites with these cells. Regrowing axons of small diameter were L1 and N- CAM positive where they made contact with each other or with Schwann cells, while large-diameter axons were only poorly antigen positive or completely negative. 14 d after transection, when regrowing axons were seen in the distal part of the transected nerve, regrowing axons made L1- and N-CAM-positive contacts with Schwann cells. When contacting basement membrane, axons were rarely found to express L1 and N-CAM. Most, if not all, Schwann cells associated with degenerating myelin expressed L1 and N-CAM. In crushed nerves, the immunostaining pattern was essentially the same as in the cut nerve. During formation of myelin, the sequence of adhesion molecule expression was the same as during development: L1 disappeared and N-CAM was reduced on myelinating Schwann cells and axons after the Schwann cell process had turned approximately 1.5 loops around the axon. Myelin-associated glycoprotein then appeared both periaxonally and on the turning loops of Schwann cells in the uncompacted myelin.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:通过植入前和植入后的染色和染色过程,在横切和压扁的成年小鼠坐骨神经中研究了神经细胞粘附分子L1,N-CAM和与髓磷脂相关的糖蛋白的定位。在横切后的前2-6 d内,有髓和无髓轴突在靠近横断部位的近端残端的远端部分以及横切神经远端的整个长度上退化。在这段时间内,仅在近端可见到轴突生长,而在远端神经残端未见。在大多数情况下,只要非形态学的雪旺氏细胞和变性轴突之间的细胞接触仍可以检测到L1和N-CAM,只要它们仍保持形态完整即可。同样,髓鞘相关糖蛋白在变性髓鞘轴突的轴突周围区域仍可检测到。在轴突变性期间和之后,无髓鞘的雪旺细胞形成细长的过程,其为L1和N-CAM阳性。它们类似于小直径的轴突,但通过慢性去神经支配可以明确地鉴定为雪旺细胞。与非髓鞘雪旺细胞不同,只有少数髓鞘细胞表达L1和N-CAM。在神经残端的切开端,形成了一个顶盖(比近端残端更靠近远端),其中包含S-100阴性和纤连蛋白阳性的成纤维细胞样细胞。这些细胞大多数为N-CAM阳性,但始终为L1阴性。生长锥和再生轴突在与这些细胞接触的部位表达N-CAM和L1。小直径的再生轴突彼此接触或与雪旺氏细胞接触时为L1和N-CAM阳性,而大直径的轴突则只有较弱的抗原阳性或完全阴性。横切后14 d,当在横断神经的远端看到生长的轴突时,生长的轴突与Schwann细胞发生L1-和N-CAM阳性接触。当接触基底膜时,很少发现轴突表达L1和N-CAM。与退化髓鞘相关的大多数(如果不是全部)雪旺细胞表达L1和N-CAM。在压伤的神经中,免疫染色模式与在切割的神经中基本相同。在髓鞘形成过程中,粘附分子表达的顺序与发育过程中相同:在有髓鞘的雪旺氏细胞和轴突上,L1消失并且N-CAM减少,而后雪旺氏细胞过程围绕轴突旋转了约1.5个环。髓磷脂相关糖蛋白然后在未致密的髓磷脂中沿轴突和雪旺氏细胞的转环出现。(摘要截短为400字)

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