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首页> 外文期刊>Investigative ophthalmology & visual science >Neuropeptide Y-like immunoreactivity localizes to preganglionic axon terminals in the rhesus monkey ciliary ganglion.
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Neuropeptide Y-like immunoreactivity localizes to preganglionic axon terminals in the rhesus monkey ciliary ganglion.

机译:神经肽Y样免疫反应性位于恒河猴睫状神经节的神经节前轴突末端。

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PURPOSE: To characterize neuropeptide distribution in the ciliary ganglion of rhesus monkeys (Macaca mulatta). METHODS: Cryostat tissue sections of fixed rhesus monkey ciliary, pterygopalatine, superior cervical, and trigeminal ganglia were incubated with antisera to neuropeptide Y (NPY), calcitonin gene-related peptide (CGRP), substance P (SP), vasoactive intestinal peptide (VIP), tyrosine hydroxylase (TH), and dopamine-beta-hydroxylase (DBH). Antibody binding was visualized by indirect immunofluorescence. RESULTS: NPY-like immunoreactive (LI) nerve terminals surrounded 80% of ciliary ganglion cells, but ciliary ganglion cell somata were unstained. NPY-LI cells were present in the superior cervical ganglion, in which almost all cells were TH- and DBH-LI, and in the pterygopalatine ganglion, in which almost all cells were VIP-LI. Because neither TH, DBH, nor VIP immunoreactivity was detected in nerves contacting ciliary ganglion cells, the NPY-LI input to ciliary neurons does not likely derive from the autonomic ganglia. The trigeminal ganglion, another potential source, had no NPY-LI neurons. CGRP- and SP-LI axons from the nasociliary nerve traversed the ciliary ganglion; a small number of varicose axons were distributed among ganglion cells and rarely surrounded cell somata. Most ciliary ganglion cells were TH-LI, but only a few were DBH-LI. CONCLUSIONS: Based on these patterns of peptide immunoreactivities, the NPY-LI nerve fibers investing ciliary ganglion cells in the rhesus monkey are most likely preganglionic axon terminals of mesencephalic parasympathetic neurons. Although the origin and function of these NPY-LI nerves remains to be established, the present finding adds to the remarkable diversity of neuropeptide immunoreactivity so far identified in preganglionic and postganglionic cells of the ciliary ganglion in different species of birds and mammals, including primates.
机译:目的:表征恒河猴(猕猴)睫状神经节中神经肽的分布。方法:将恒河猴睫状体,翼,上颈和三叉神经节的低温恒温器组织切片与抗血清Y肽,降钙素基因相关肽(CGRP),P物质(SP),血管活性肠肽(VIP)结合使用。 ),酪氨酸羟化酶(TH)和多巴胺-β-羟化酶(DBH)。通过间接免疫荧光观察抗体结合。结果:NPY样免疫反应(LI)神经末梢包围了80%的睫状神经节细胞,但睫状神经节细胞的体细胞未染色。 NPY-LI细胞存在于上颈神经节中,其中几乎所有细胞均为TH-和DBH-LI,而在翼龙神经节中则几乎所有细胞为VIP-LI。由于在接触睫状神经节细胞的神经中​​均未检测到TH,DBH或VIP免疫反应性,因此输入睫状神经元的NPY-LI不可能来源于植物神经节。三叉神经节是另一个潜在的来源,没有NPY-LI神经元。鼻睫状神经的CGRP-和SP-LI轴突横穿睫状神经节。少数曲张性轴突分布在神经节细胞之间,很少围绕细胞体细胞。多数睫状神经节细胞是TH-LI,但只有少数是DBH-LI。结论:基于这些肽免疫反应性的模式,在恒河猴中投资睫状神经节细胞的NPY-LI神经纤维很可能是中脑副交感神经元的神经节前轴突末端。尽管这些NPY-LI神经的起源和功能尚待确定,但本发现增加了迄今为止在鸟类和哺乳动物(包括灵长类)的不同种类的睫状神经节的神经节前和神经节后细胞中发现的神经肽免疫反应性的显着多样性。

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