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雌性大鼠子宫颈旁神经节突触连接的光镜和电镜研究:特别涉及降钙素基因相关肽、甘丙肽和速激肽(P物质和神经激肽A)免疫反应性神经纤维和终末。

Light- and electron-microscopic study of synaptic connections in the paracervical ganglion of the female rat: special reference to calcitonin gene-related peptide-, galanin- and tachykinin (substance P and neurokinin A)-immunoreactive nerve fibers and terminals.

作者信息

Papka R E, McNeill D L

机构信息

Department of Anatomical Sciences, University of Oklahoma, Oklahoma City 73190.

出版信息

Cell Tissue Res. 1993 Mar;271(3):417-28. doi: 10.1007/BF02913724.

Abstract

Nerve fibers and varicosities in the pelvic paracervical ganglia (PG) are immunoreactive for the neuropeptides calcitonin gene-related peptide, galanin, and the tachykinins substance P and neurokinin A. Many of these fibers and varicosities are capsaicin-sensitive, originate in dorsal root ganglia and, thus, are considered to be primary afferent fibers. Numerous immunoreactive varicosities are pericellular to principal neurons in the PG. The present study examines the ultrastructure of calcitonin gene-related peptide-, galanin-, substance P-, and neurokinin A-immunoreactive nerve fibers and varicosities in the ganglia to determine their relationships to principal neurons and their synaptic connectivity. Paracervical ganglia of female rats were processed for light-microscopic immunohistochemistry using antisera against synapsin I, as a nerve terminal marker, and microtubule-associated protein-2 to define soma and dendrites. The rationale for performing this co-immunohistochemical analysis was to reveal the relationship between nerve endings and principal neurons. Synapsin I endings were predominantly axosomatic with fewer being axodendritic. Other ganglia were processed for electron-microscopic immunohistochemistry using both standard immunogold and peroxidase-anti-peroxidase procedures. Unmyelinated fibers and varicosities immunoreactive for calcitonin gene-related peptide, galanin, and the tachykinins were routinely observed in the interstitium between neuron somas. Numerous immunoreactive axon profiles were present in small groups that were ensheathed by Schwann cells. Immunoreactive fibers and varicosities were also observed within the satellite-cell sheath of the neuron soma and often intimately associated with the membrane of the soma, somal protrusions, or with the proximal part of a dendrite. Membrane specializations, indicative of synaptic contacts, between the fibers and the principal neurons were observed. It is suggested that these peptide-immunoreactive sensory fibers and varicosities are involved in regulation of activity in the PG.

摘要

盆腔子宫颈旁神经节(PG)中的神经纤维和膨体对神经肽降钙素基因相关肽、甘丙肽以及速激肽P物质和神经激肽A具有免疫反应性。这些纤维和膨体中的许多对辣椒素敏感,起源于背根神经节,因此被认为是初级传入纤维。PG中许多免疫反应性膨体位于主神经元的细胞周围。本研究检查了神经节中降钙素基因相关肽、甘丙肽、P物质和神经激肽A免疫反应性神经纤维和膨体的超微结构,以确定它们与主神经元的关系及其突触连接。使用针对突触素I(作为神经末梢标记物)的抗血清和微管相关蛋白2来定义胞体和树突,对雌性大鼠的子宫颈旁神经节进行光镜免疫组织化学处理。进行这种共免疫组织化学分析的基本原理是揭示神经末梢与主神经元之间的关系。突触素I末梢主要是轴-体突触,轴-树突触较少。使用标准免疫金和过氧化物酶-抗过氧化物酶程序对其他神经节进行电镜免疫组织化学处理。在神经元胞体之间的间质中经常观察到对降钙素基因相关肽、甘丙肽和速激肽具有免疫反应性的无髓纤维和膨体。许多免疫反应性轴突轮廓呈小群存在,被施万细胞包裹。在神经元胞体的卫星细胞鞘内也观察到免疫反应性纤维和膨体,并且它们经常与胞体膜、胞体突起或树突的近端部分紧密相关。观察到纤维与主神经元之间有指示突触接触的膜特化。提示这些肽免疫反应性感觉纤维和膨体参与了PG中活性的调节。

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