Institute of Higher Nervous Activity and Neurophysiology, Russian Academy of Science, Butlerova 5a, Moscow, 117485, Russia.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2012 Feb;198(2):145-58. doi: 10.1007/s00359-011-0695-9. Epub 2011 Nov 11.
We investigated the role of serotonin (5HT) and dopamine (DA) in the regulation of olfactory system function and odor-evoked tentacle movements in the snail Helix. Preparations of the posterior tentacle (including sensory pad, tentacular ganglion and olfactory nerve) or central ganglia with attached posterior tentacles were exposed to cineole odorant and the evoked responses were affected by prior application of 5HT or DA or their precursors 5-hydroxytryptophan (5HTP) and L: -DOPA, respectively. 5HT applications decreased cineole-evoked responses recorded in the olfactory nerve and hyperpolarized the identified tentacle retractor muscle motoneuron MtC3, while DA applications led to the opposite changes. 5HTP and L: -DOPA modified MtC3 activity comparable to 5HT and DA action. DA was also found to decrease the amplitude of spontaneous local field potential oscillations in the procerebrum, a central olfactory structure. In vivo studies demonstrated that injection of 5HTP in freely moving snails reduced the tentacle withdrawal response to aversive ethyl acetate odorant, whereas the injection of L: -DOPA increased responses to "neutral" cineole and aversive ethyl acetate odorants. Our data suggest that 5HT and DA affect the peripheral (sensory epithelium and tentacular ganglion), the central (procerebrum), and the single motor neuron (withdrawal motoneuron MtC3) level of the snail's nervous system.
我们研究了 5-羟色胺(5HT)和多巴胺(DA)在调节蜗牛触角嗅觉系统功能和气味诱发触角运动中的作用。后部触角(包括感觉垫、触角神经节和嗅觉神经)或带有后部触角的中央神经节的制剂暴露于桉叶醇气味中,诱发反应受到 5HT 或 DA 或其前体 5-羟色氨酸(5HTP)和 L: -DOPA 的预先应用的影响。5HT 的应用降低了在嗅觉神经中记录的桉叶醇诱发反应,并使已识别的触角回缩肌运动神经元 MtC3 超极化,而 DA 的应用导致相反的变化。5HTP 和 L: -DOPA 修饰 MtC3 活性可与 5HT 和 DA 作用相媲美。还发现 DA 降低了中央嗅觉结构前脑叶中自发局部场电位振荡的幅度。体内研究表明,在自由移动的蜗牛中注射 5HTP 可减少对厌恶的乙酸乙酯气味的触角退缩反应,而注射 L: -DOPA 则增加了对“中性”桉叶醇和厌恶的乙酸乙酯气味的反应。我们的数据表明,5HT 和 DA 影响蜗牛神经系统的外周(感觉上皮和触角神经节)、中枢(前脑叶)和单个运动神经元(退缩运动神经元 MtC3)水平。