Battonyai Izabella, Elekes K
MTA Centre for Ecological Research, Balaton Limnological Institute, Department of Experimental Zoology, P.O. Box 35, H-8237 Tihany, Hungary.
Acta Biol Hung. 2012;63 Suppl 2:96-103. doi: 10.1556/ABiol.63.2012.Suppl.2.13.
In the procerebrum of terrestrial snails, 5-HT is a key modulatory substance of the generation of synchronous oscillatory activity and odor learning capability. In this study, we have analyzed the characteristics of the 5-HT-immunoreactive (5-HT-IR) innervation of the distinct anatomical regions of the procerebrum of Helix pomatia, applying correlative light- and electron microscopic immunocytochemistry. A dense network of 5-HT-IR innervation was demonstrated in the cell body layer, meanwhile a varicose fiber system of different density occurred in the different neuropil regions. At the ultrastructural level, labeled varicosities were found to contact both procerebral cell bodies, and different unlabeled axon profiles in the neuropils. The labeled structures established mostly close non-specialized membrane contacts with the postsynaptic profiles. The overall dense distribution of 5-HT-IR innervation supports a general modulatory role of 5-HT in processing different olfactory events.
在陆生蜗牛的前脑,5-羟色胺(5-HT)是同步振荡活动产生和气味学习能力的关键调节物质。在本研究中,我们应用相关的光镜和电镜免疫细胞化学方法,分析了苹果螺前脑不同解剖区域5-HT免疫反应性(5-HT-IR)神经支配的特征。在细胞体层显示出密集的5-HT-IR神经支配网络,同时在不同的神经纤维网区域出现了密度不同的曲张纤维系统。在超微结构水平上,发现标记的曲张体与前脑细胞体以及神经纤维网中不同的未标记轴突轮廓相接触。标记结构大多与突触后轮廓建立紧密的非特异性膜接触。5-HT-IR神经支配的整体密集分布支持5-HT在处理不同嗅觉事件中的一般调节作用。