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坐骨神经节段间缺乏施万细胞时再生轴突的快速生长。

Rapid growth of regenerating axons across the segments of sciatic nerve devoid of Schwann cells.

作者信息

Sketelj J, Bresjanac M, Popović M

机构信息

Institute of Pathophysiology, School of Medicine, E. Kardelj University, Ljubljana, Yugoslavia.

出版信息

J Neurosci Res. 1989 Oct;24(2):153-62. doi: 10.1002/jnr.490240205.

Abstract

The characteristic response of Schwann cells (SC) accompanies peripheral nerve injury and regeneration. To elucidate their role, the question of whether or not regenerating axons can elongate across the segments of a peripheral nerve devoid of SC was investigated. Rat sciatic nerve was crushed so that the continuity of SC basal laminae was not interrupted. A segment about 15 mm long distal to the crush was either repeatedly frozen/thawed to eliminate SC or scalded by moist heat which, in addition, denatured the proteins in the SC basal laminae, too. Both sensory and motor axons grew rapidly across the frozen/thawed segment of the nerve. Their rate of elongation was reduced by only 30% in comparison to control crushed nerves. SC were not present along the path of growing axons adhering tightly to the bare SC basal laminae. The rate of elongation of regenerating sensory and motor axons in scalded nerve segments was eight times lower than in control crushed nerves. SC were present in that part of the scalded region that had been invaded by the regenerating axons but no further distally. These results suggest that acellular basal laminae of SC provide very good, although not optimal, conditions for elongation of regenerating sensory and motor axons. If biochemical integrity of the basal lamina is destroyed, the regenerating axons must be accompanied or preceded by viable SC. and axon elongation rate is significantly reduced.

摘要

施万细胞(SC)的特征性反应伴随着周围神经损伤与再生过程。为阐明其作用,研究了再生轴突能否跨越缺乏施万细胞的周围神经节段进行延伸这一问题。将大鼠坐骨神经挤压,以使施万细胞基膜的连续性未被打断。在挤压部位远端约15毫米长的节段,要么反复冻融以消除施万细胞,要么用湿热烫伤,此外,这也会使施万细胞基膜中的蛋白质变性。感觉和运动轴突均迅速跨越神经的冻融节段生长。与对照挤压神经相比,它们的延伸速率仅降低了30%。生长的轴突路径上不存在施万细胞,轴突紧密附着于裸露的施万细胞基膜。在烫伤神经节段中,再生感觉和运动轴突的延伸速率比对照挤压神经低八倍。在再生轴突已侵入的烫伤区域部分存在施万细胞,但更远端则没有。这些结果表明,施万细胞的无细胞基膜为再生感觉和运动轴突的延伸提供了非常好但并非最佳的条件。如果基膜的生化完整性被破坏,再生轴突必须有存活的施万细胞伴随或先于其存在,且轴突延伸速率会显著降低。

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