雌性大鼠颈旁神经节:神经元、SIF细胞和神经末梢的组织化学和免疫组织化学。

R E Papka, H H Traurig, P Klenn
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引用次数: 83

摘要

对雌性大鼠颈旁神经节进行了研究,以阐明神经节内神经成分的多样性。采用光镜、电镜、组织化学、免疫组织化学等方法观察神经元亚型;小的强荧光(SIF)细胞;和神经末梢,并检查这些元素之间的关系。根据其组织化学标记,鉴定出4种主要神经元亚型:乙酰胆碱酯酶(ACHE)阳性、去甲肾上腺素能、神经肽酪氨酸免疫反应(NPY-I)和血管活性肠多肽免疫反应(VIP-I)。NPY-I神经元数量最多,去甲肾上腺素能神经元数量最少。化学编码的SIF细胞有四种亚型:含儿茶酚胺型、npyi型和对降钙素基因相关肽(CGRP-I)和胆囊收缩素八肽(CCK-8-I)免疫反应的SIF细胞。SIF细胞以单细胞形式存在于主神经元之间或主神经元附近,在神经节边缘或附近的神经干中以大簇形式存在。没有观察到SIF细胞上的突触接触,或者SIF细胞过程与神经元之间的突触接触。7种神经末梢染色:ache阳性、CGRP-I、CCK-8-I、VIP-I、P-I物质、脑啡肽- i和房钠素- i。神经末梢像神经周围丛一样包裹着神经元,形成类似突触的关系。这些结果表明,雌性大鼠颈旁神经节是一个复杂的神经系统。例如,神经节中存在几种化学编码的神经元、SIF细胞和终端。这些成分中的每一种都含有许多物质,其中一些被认为是神经递质,它们可以影响神经节或受神经节支配的效应器官的活动。
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Paracervical ganglia of the female rat: histochemistry and immunohistochemistry of neurons, SIF cells, and nerve terminals.

The paracervical ganglia of the female rat were studied to elucidate the variety of neural elements in the ganglia. Light and electron microscopy, histochemistry, and immunohistochemistry were employed to reveal subtypes of neurons; small, intensely fluorescent (SIF) cells; and nerve terminals and to examine the relationships between these elements. On the basis of their histochemical markers, four subtypes of principal neurons were identified: acetylcholinesterase (ACHE)-positive, noradrenergic, neuropeptide tyrosine-immunoreactive (NPY-I), and vasoactive intestinal polypeptide-immunoreactive (VIP-I). The NPY-I neurons appeared to be the most numerous and the noradrenergic the least common type of neuron. Four subtypes of chemically coded SIF cells were revealed: catecholamine-containing, NPY-I, and those immunoreactive for calcitonin-gene-related peptide (CGRP-I) and cholecystokinin-octapeptide (CCK-8-I). The SIF cells were present as single cells among and adjacent to principal neurons and as large clusters near the edges of the ganglia or in nearby nerve trunks. Synaptic contacts on SIF cells, or between SIF-cell processes and neurons, were not observed. Seven subtypes of nerve terminals were stained: ACHE-positive, CGRP-I, CCK-8-I, VIP-I, substance P-I, enkephalin-I, and atrial natriuretic factor-I. Nerve terminals enwrapped the neurons as perineuronal plexuses in synaptic-like relationships. These results demonstrate that the paracervical ganglia of the female rat are a complex system of neural elements. For example, several classes of chemically coded neurons, SIF cells, and terminals exist in the ganglia. Each of these components contains a number of substances, some of which are putative neurotransmitters, which could influence activity in the ganglia or in the effector organs innervated by the ganglia.

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