Mar A, Drapeau P
Department of Biology, McGill University, Montréal, Québec, Canada.
J Neurosci. 1996 Jul 15;16(14):4335-43. doi: 10.1523/JNEUROSCI.16-14-04335.1996.
Conduction block is a mechanism of activity-dependent neuronal plasticity, but little is known about its possible neuromodulation. Extensive activity in leech touch (T), pressure (P), and nociceptive (N) mechanosensory neurons results in conduction block of their minor receptive fields. We have examined whether the duration of conduction block could be modulated by the serotonergic Retzius neurons or by application of serotonin (5-HT). Activation of one Retzius cell reduced the duration of conduction block in T and P cell posterior fields, but their anterior fields and N cell fields were unaffected. Perfusion with 5-HT had stronger effects, reducing the duration of conduction block in T, P, and lateral N cells in the posterior fields and either reducing or more often enhancing the expression of conduction block in anterior fields. The effects of 5-HT on posterior fields were blocked by the nonspecific 5-HT antagonist methysergide and were partly suppressed by the 5-HT2 antagonist ketanserin. To determine the site of 5-HT action, the central ganglion or peripheral skin was perfused independently. T and to a greater extent P cells showed a preferential sensitivity to application of 5-HT onto the central ganglion. Interestingly, medial N cells exhibited a progressive decrease in the duration of conduction block during repeated trials ("wind-up") that was unaffected by 5-HT. We conclude that secretion of 5-HT by the Retzius cells has a central modulatory effect on the duration of conduction block in T, P, and lateral N cells.
传导阻滞是一种与活动相关的神经元可塑性机制,但对其可能的神经调节作用知之甚少。水蛭的触觉(T)、压力(P)和伤害性(N)机械感觉神经元的大量活动会导致其较小感受野的传导阻滞。我们研究了传导阻滞的持续时间是否可由血清素能的Retzius神经元或通过应用血清素(5-HT)来调节。激活一个Retzius细胞可缩短T细胞和P细胞后感受野传导阻滞的持续时间,但它们的前感受野和N细胞感受野不受影响。用5-HT灌注有更强的作用,可缩短后感受野中T、P和外侧N细胞传导阻滞的持续时间,并可减少或更常见地增强前感受野中传导阻滞的表现。5-HT对后感受野的作用可被非特异性5-HT拮抗剂美西麦角阻断,并被5-HT2拮抗剂酮色林部分抑制。为确定5-HT的作用部位,分别对中枢神经节或外周皮肤进行灌注。T细胞以及在更大程度上P细胞对向中枢神经节施加5-HT表现出优先敏感性。有趣的是,内侧N细胞在重复试验期间(“卷绕”)传导阻滞的持续时间逐渐缩短,这不受5-HT影响。我们得出结论,Retzius细胞分泌的5-HT对T、P和外侧N细胞传导阻滞的持续时间具有中枢调节作用。