Ramer Matt S, Bishop Thomas, Dockery Peter, Mobarak Makarim S, O'Leary Donald, Fraher John P, Priestley John V, McMahon Stephen B
CORD (Collaboration on Repair Discoveries), The University of British Columbia, Biosciences Building, 6270 University Boulevard, Vancouver, British Columbia V6T 1Z4, Canada.
Mol Cell Neurosci. 2002 Feb;19(2):239-49. doi: 10.1006/mcne.2001.1067.
Injured dorsal root axons fail to regenerate into the adult spinal cord, leading to permanent sensory loss. We investigated the ability of intrathecal neurotrophin-3 (NT3) to promote axonal regeneration across the dorsal root entry zone (DREZ) and functional recovery in adult rats. Quantitative electron microscopy showed robust penetration of CNS tissue by regenerating sensory axons treated with NT3 at 1 and 2 weeks postrhizotomy. Light and electron microscopical anterograde tracing experiments showed that these axons reentered appropriate and ectopic laminae of the dorsal horn, where they formed vesicle-filled synaptic buttons. Cord dorsum potential recordings confirmed that these were functional. In behavioral studies, NT3-treated (but not untreated or vehicle-treated) rats regained proprioception. Recovery depended on NT3-mediated sensory regeneration: preventing regeneration by root excision prevented recovery. NT3 treatment allows sensory axons to overcome inhibition present at the DREZ and may thus serve to promote functional recovery following dorsal root avulsions in humans.
受损的背根轴突无法再生进入成年脊髓,导致永久性感觉丧失。我们研究了鞘内注射神经营养因子-3(NT3)促进成年大鼠轴突穿过背根进入区(DREZ)再生及功能恢复的能力。定量电子显微镜显示,在神经根切断术后1周和2周,用NT3处理的再生感觉轴突能有力地穿透中枢神经系统组织。光镜和电镜顺行示踪实验表明,这些轴突重新进入背角的适当和异位板层,并在那里形成充满囊泡的突触小体。脊髓背电位记录证实这些是有功能的。在行为学研究中,接受NT3治疗的(而非未治疗或接受载体治疗的)大鼠恢复了本体感觉。恢复依赖于NT3介导的感觉再生:通过切除神经根阻止再生会阻止恢复。NT3治疗可使感觉轴突克服DREZ处存在的抑制作用,因此可能有助于促进人类背根撕脱伤后的功能恢复。