Dezawa M, Mutoh T, Dezawa A, Adachi-Usami E
Department of Ophthalmology, School of Medicine, Chiba University, Chiba City, Japan.
Neuroscience. 1998 Aug;85(3):663-7. doi: 10.1016/s0306-4522(98)00051-7.
Gap junctions are intercellular channels which mediate the traffic of ions and a variety of molecular messengers between contiguous cells. Here, we report on the possibility that atypical gap junctions develop between heterologous tissues, such as regenerating nerve axons and Schwann cells, during peripheral nerve regeneration in adult rats. After a complete transection and subsequent regeneration in the rat sciatic nerve distal segment, a small scale gap junction-like structure was observed between the regenerating axons and adjoining Schwann cells. Immunoelectron microscopy showed that one of the gap junctional proteins, connexin32, was located at a small region of contact between the axon and Schwann cells. Biocytin, a small molecular weight dye, was transported from regenerating axons into adjoining Schwann cells. The present findings suggest that regenerating axons communicate directly with adjacent Schwann cells through small gap junctions, which may play a role in the mechanism of regeneration following nerve transection.
缝隙连接是细胞间通道,介导相邻细胞间离子及多种分子信使的运输。在此,我们报告成年大鼠外周神经再生过程中,在诸如再生神经轴突和施万细胞等异源组织之间形成非典型缝隙连接的可能性。大鼠坐骨神经远端节段完全横断并随后再生后,在再生轴突与相邻施万细胞之间观察到小规模的缝隙连接样结构。免疫电子显微镜显示,缝隙连接蛋白之一连接蛋白32位于轴突与施万细胞之间的小接触区域。生物胞素,一种小分子量染料,从再生轴突转运至相邻施万细胞。目前的研究结果表明,再生轴突通过小缝隙连接与相邻施万细胞直接通讯,这可能在神经横断后的再生机制中发挥作用。