Lang Philip M, Moalem-Taylor Gila, Tracey David J, Bostock Hugh, Grafe Peter
Department of Physiology, University of Munich, Pettenkoferstrasse 12, D-80336 Munich, Germany.
J Neurophysiol. 2006 Dec;96(6):2963-71. doi: 10.1152/jn.00716.2006. Epub 2006 Sep 6.
Activity-dependent fluctuations in axonal excitability and changes in interspike intervals modify the conduction of trains of action potentials in unmyelinated peripheral nerve fibers. During inflammation of a nerve trunk, long stretches of axons are exposed to inflammatory mediators such as 5-hydroxytryptamine [5-HT]. In the present study, we have tested the effects of m-chlorophenylbiguanide (mCPBG), an agonist at the 5-HT(3) serotonin receptor, on activity- and potential-dependent variations in membrane threshold and conduction velocity of unmyelinated C-fiber axons of isolated rat sural nerve segments. The increase in axonal excitability during application of mCPBG was much stronger at higher frequencies of action potentials and/or during axonal membrane hyperpolarization. The effects on the postspike recovery cycle also depended on the rate of stimulation. At an action potential frequency of 1 Hz or in hyperpolarized axons, mCPBG produced a loss of superexcitability. In contrast, at 0.33 Hz, a small increase in the postspike subexcitability was observed. Similar effects on excitability changes were found when latency instead of threshold was recorded, but only at higher action potential frequencies: at 1.8 Hz, mCPBG increased conduction velocity and reduced postspike supernormality. The latter effect would increase the interspike interval if pairs of action potentials were conducted along several cm in an inflamed nerve trunk. These data indicate that activation of axonal 5-HT(3) receptors not only enhances membrane excitability but also modulates action potential trains in unmyelinated, including nociceptive, nerve fibers at high impulse rates.
轴突兴奋性的活动依赖性波动以及峰间间隔的变化会改变无髓鞘外周神经纤维中动作电位序列的传导。在神经干发生炎症期间,长段轴突会暴露于诸如5-羟色胺[5-HT]等炎症介质中。在本研究中,我们测试了5-HT3血清素受体激动剂间氯苯双胍(mCPBG)对离体大鼠腓肠神经节段无髓鞘C纤维轴突膜阈值和传导速度的活动及电位依赖性变化的影响。在较高动作电位频率和/或轴突膜超极化期间,应用mCPBG时轴突兴奋性的增加要强得多。对峰后恢复周期的影响也取决于刺激速率。在动作电位频率为1Hz或轴突超极化时,mCPBG会导致超兴奋性丧失。相反,在0.33Hz时,观察到峰后亚兴奋性有小幅增加。当记录潜伏期而非阈值时,发现对兴奋性变化有类似影响,但仅在较高动作电位频率时:在1.8Hz时,mCPBG增加传导速度并降低峰后超常期。如果在发炎的神经干中沿几厘米传导成对的动作电位,后一种效应会增加峰间间隔。这些数据表明,轴突5-HT3受体的激活不仅增强膜兴奋性,还能在高冲动率下调节无髓鞘神经纤维(包括伤害性神经纤维)中的动作电位序列。