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Expression of an Activated Integrin Promotes Long-Distance Sensory Axon Regeneration in the Spinal Cord.

机译:激活的整合素的表达促进脊髓远距离感觉轴突再生。

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摘要

UNLABELLED: After CNS injury, axon regeneration is blocked by an inhibitory environment consisting of the highly upregulated tenascin-C and chondroitin sulfate proteoglycans (CSPGs). Tenascin-C promotes growth of axons if they express a tenascin-binding integrin, particularly α9β1. Additionally, integrins can be inactivated by CSPGs, and this inhibition can be overcome by the presence of a β1-binding integrin activator, kindlin-1. We examined the synergistic effect of α9 integrin and kindlin-1 on sensory axon regeneration in adult rat spinal cord after dorsal root crush and adeno-associated virus transgene expression in dorsal root ganglia. After 12 weeks, axons from C6-C7 dorsal root ganglia regenerated through the tenascin-C-rich dorsal root entry zone into the dorsal column up to C1 level and above (>25 mm axon length) through a normal pathway. Animals also showed anatomical and electrophysiological evidence of reconnection to the dorsal horn and behavioral recovery in mechanical pressure, thermal pain, and ladder-walking tasks. Expression of α9 integrin or kindlin-1 alone promoted much less regeneration and recovery. SIGNIFICANCE STATEMENT: The study demonstrates that long-distance sensory axon regeneration over a normal pathway and with sensory and sensory-motor recovery can be achieved. This was achieved by expressing an integrin that recognizes tenascin-C, one of the components of glial scar tissue, and an integrin activator. This enabled extensive long-distance (>25 mm) regeneration of both myelinated and unmyelinated sensory axons with topographically correct connections in the spinal cord. The extent of growth and recovery we have seen would probably be clinically significant. Restoration of sensation to hands, perineum, and genitalia would be a significant improvement for a spinal cord-injured patient.
机译:未加标签:中枢神经系统损伤后,轴突再生被抑制环境(由高度上调的腱生蛋白C和硫酸软骨素蛋白聚糖(CSPG)组成)阻断。如果腱生蛋白-C表达结合腱生蛋白的整联蛋白,尤其是α9β1,它们会促进轴突的生长。此外,整联蛋白可以被CSPG灭活,并且这种抑制作用可以通过结合β1的整联蛋白激活剂kindlin-1来克服。我们研究了α9整联蛋白和kindlin-1对成年大鼠脊髓背根挤压后的感觉轴突再生和背根神经节中腺相关病毒转基因表达的协同作用。 12周后,来自C6-C7背根神经节的轴突通过正常途径通过富含腱生蛋白-C的背根进入区再生到C1水平及以上(> 25 mm轴突长度)的背柱。动物还显示出与背角重新连接以及机械压力,热痛和爬梯任务的行为恢复的解剖学和电生理学证据。单独表达α9整合素或kindlin-1可以促进更少的再生和恢复。意义声明:该研究表明,可以实现正常途径的远距离感觉轴突再生,并具有感觉和感觉运动恢复。这是通过表达识别腱糖蛋白-C(神经胶质瘢痕组织的成分之一)的整合素和整合素激活剂来实现的。这样可以实现脊髓有形的正确连接的有髓和无髓感觉轴突的长距离(> 25 mm)再生。我们看到的生长和恢复程度可能在临床上很重要。对于脊髓损伤的患者,恢复手,会阴和生殖器的感觉将是显着的改善。

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