Department of Neurobiology and Behavior, Seeley Mudd Hall, Cornell University, Ithaca, New York 14853, USA.
J Neurosci. 2012 Sep 19;32(38):13145-54. doi: 10.1523/JNEUROSCI.2995-12.2012.
Denervation-induced plastic changes impair locomotor recovery after spinal cord injury (SCI). Spinal motoneurons become hyperexcitable after SCI, but the plastic responses of locomotor network interneurons (INs) after SCI have not been studied. Using an adult mouse SCI model, we analyzed the effects of complete spinal cord lesions on the intrinsic electrophysiological properties, excitability, and neuromodulatory responses to serotonin (5-HT) in mouse lumbar V2a spinal INs, which help regulate left-right alternation during locomotion. Four weeks after SCI, V2a INs showed almost no changes in baseline excitability or action potential properties; the only parameter that changed was a reduced input resistance. However, V2a INs became 100- to 1000-fold more sensitive to 5-HT. Immunocytochemical analysis showed that SCI caused a coordinated loss of serotonergic fibers and the 5-HT transporter (SERT). Blocking the SERT with citalopram in intact mice did not increase 5-HT sensitivity to the level seen after SCI. SCI also evoked an increase in 5-HT(2C) receptor cluster number and intensity, suggesting that several plastic changes cooperate in increasing 5-HT sensitivity. Our results suggest that different components of the spinal neuronal network responsible for coordinating locomotion are differentially affected by SCI, and highlight the importance of understanding these changes when considering therapies targeted at functional recovery.
去神经诱导的可塑性变化会损害脊髓损伤 (SCI) 后的运动功能恢复。SCI 后脊髓运动神经元变得过度兴奋,但 SCI 后运动网络中间神经元 (INs) 的可塑性反应尚未得到研究。使用成年小鼠 SCI 模型,我们分析了完全性脊髓损伤对调节运动时左右交替的小鼠腰段 V2a 脊髓 INs 固有电生理特性、兴奋性和 5-羟色胺 (5-HT) 神经调质反应的影响。SCI 后 4 周,V2a INs 的基础兴奋性或动作电位特性几乎没有变化;唯一改变的参数是输入电阻降低。然而,V2a INs 对 5-HT 的敏感性增加了 100-1000 倍。免疫细胞化学分析显示,SCI 导致 5-HT 能纤维和 5-HT 转运体 (SERT) 的协调丧失。在完整的小鼠中用西酞普兰阻断 SERT 并不能将 5-HT 的敏感性提高到 SCI 后的水平。SCI 还引起 5-HT(2C)受体簇数量和强度的增加,表明几种可塑性变化共同增加了 5-HT 的敏感性。我们的结果表明,负责协调运动的脊髓神经元网络的不同成分受到 SCI 的不同影响,并强调在考虑针对功能恢复的治疗方法时,了解这些变化的重要性。