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苹果螺外周神经系统中肽能调节的超微结构方面

Ultrastructural aspects of peptidergic modulation in the peripheral nervous system of Helix pomatia.

作者信息

Elekes K

机构信息

Department of Experimental Zoology, Balaton Limnological Research Institute of the Hungarian Academy of Sciences, H-8237 Tihany, Hungary.

出版信息

Microsc Res Tech. 2000 Jun 15;49(6):534-46. doi: 10.1002/1097-0029(20000615)49:6<534::AID-JEMT4>3.0.CO;2-6.

Abstract

The ultrastructural characteristics of peptidergic peripheral contacts in the snail, Helix pomatia, were investigated, with special attention to the innervation of the heart, buccal mass, and salivary gland by Mytilus inhibitory peptide-immunoreactive neurons. Following the application of correlative light- and electron-microscopic pre-embedding immunocytochemistry, the peripheral tissues reveal a rich innervation by Mytilus inhibitory peptide-immunoreactive elements. These neurons establish three types of neuromuscular contacts in the heart and buccal mass: (1) close (16-20 nm) unspecialized membrane contacts; (2) contacts with a relative wide (40-100 nm) intersynaptic cleft; and (3) labeled varicosties located freely in the extracellular space, far (0. 5-several microm) from the muscle cells. In the salivary gland, the immunoractive profiles contact both the muscular and glandular elements with close (type 1) and wider (type 2) membrane attachments. The great majority of Mytilus inhibitory peptide-immunoreactive profiles contain an ultrastructurally uniform population of large (120-150 nm) electron dense granules. The ultrastructural features of the innervation by Mytilus inhibitory peptide-immunoreactive elements are compared with those established by immunogold labelled FMRFamide-containing profiles in the heart and salivary gland. These latter display similarities in forming the different kinds of intercellular contacts, and differences in the morphological variability of the content of granules in the immunolabeled profiles. The results suggest diverse, non-synaptic modulatory roles of neuropeptides in the peripheral nervous system of Helix pomatia, including localized membrane effects and neurohormonal-like remote global controls, that may also be of significance in orchestrating the effects of neuropeptides released at the same time on different targets.

摘要

研究了苹果蜗牛(Helix pomatia)中肽能外周接触的超微结构特征,特别关注贻贝抑制肽免疫反应性神经元对心脏、口腔团块和唾液腺的神经支配。应用相关的光镜和电镜预包埋免疫细胞化学方法后,外周组织显示出丰富的贻贝抑制肽免疫反应性元件神经支配。这些神经元在心脏和口腔团块中建立了三种类型的神经肌肉接触:(1)紧密(16 - 20纳米)的非特化膜接触;(2)具有相对较宽(40 - 100纳米)突触间隙的接触;(3)自由位于细胞外空间、距肌肉细胞较远(0.5 - 几微米)的标记曲张体。在唾液腺中,免疫反应性轮廓通过紧密(1型)和较宽(2型)的膜附着与肌肉和腺性元件接触。绝大多数贻贝抑制肽免疫反应性轮廓含有超微结构上均匀的大(120 - 150纳米)电子致密颗粒群体。将贻贝抑制肽免疫反应性元件神经支配的超微结构特征与心脏和唾液腺中免疫金标记的含FMRF酰胺轮廓所建立的特征进行了比较。后者在形成不同类型的细胞间接触方面表现出相似性,而在免疫标记轮廓中颗粒内容物的形态变异性方面存在差异。结果表明神经肽在苹果蜗牛外周神经系统中具有多种非突触调节作用,包括局部膜效应和神经激素样远程全局控制,这在协调同时释放到不同靶点上的神经肽的作用方面可能也具有重要意义。

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