Perrier Jean-François, Cotel Florence
Institute of Neuroscience and Pharmacology, University of Copenhagen, Blegdamsvej 3, DK-2200 Copenhagen, Denmark.
J Physiol. 2008 Mar 1;586(5):1233-8. doi: 10.1113/jphysiol.2007.145706. Epub 2007 Dec 20.
This report considers serotonergic (5-HT) effects on spinal motoneurons, reviewing previous data and presenting a new study showing distinct effects of two 5-HT receptor subtypes. We previously investigated the effects of 5-HT on motoneurons in a slice preparation from the spinal cord of the adult turtle. In agreement with previous studies, we had found that 5-HT applied to the extracellular medium promoted a voltage sensitive plateau potential. However, we also reported that this effect was only observed in half of the motoneurons; 5-HT inhibited the firing of the other half of the motoneurons recorded from. To investigate the reasons for this, we applied 5-HT focally by means of the microiontophoresis technique. Facilitation of plateau potentials was observed when 5-HT was released at sites throughout the somatodendritic region. However, motoneurons were inhibited by 5-HT when selectively applied in the perisomatic region. These two effects could be induced in the same motoneuron. With pharmacological tools, we demonstrate here that the facilitation of plateau potentials is mediated by 5-HT(2) receptors and the inhibitory effect is due to the activation of 5-HT(1A/7) receptors.
本报告探讨了血清素能(5-羟色胺,5-HT)对脊髓运动神经元的影响,回顾了既往数据并展示了一项新研究,该研究揭示了两种5-HT受体亚型的不同作用。我们之前研究了5-HT对成年海龟脊髓切片制备中运动神经元的影响。与既往研究一致,我们发现应用于细胞外培养基的5-HT可促进电压敏感的平台电位。然而,我们还报告称,这种效应仅在一半的运动神经元中观察到;5-HT抑制了所记录的另一半运动神经元的放电。为了探究其原因,我们通过微离子电泳技术局部应用5-HT。当5-HT在整个树突体区域释放时,观察到平台电位增强。然而,当在胞体周围区域选择性应用5-HT时,运动神经元受到抑制。这两种效应可在同一运动神经元中诱导产生。在此,我们使用药理学工具证明,平台电位的增强由5-HT(2)受体介导,而抑制作用则是由于5-HT(1A/7)受体的激活。