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绒鼠(Chinchilla laniger Molina)耳神经节的形态学和免疫组织化学特征

Morphology and immunohistochemical characteristics of the otic ganglion in the chinchilla (Chinchilla laniger Molina).

作者信息

Sienkiewicz Waldemar, Kuchinka Jacek, Dudek Agnieszka, Nowak Elżbieta, Kaleczyc Jerzy, Radzimirska Małgorzata, Szczurkowski Aleksander

机构信息

Department of Animal Anatomy, Faculty of Veterinary Medicine, University of Warmia and Mazury in Olsztyn, Olsztyn, Poland.

Department of Medical Biology, Institute of Biology, Jan Kochanowski University in Kielce, Kielce, Poland.

出版信息

Folia Histochem Cytobiol. 2023;61(1):17-25. doi: 10.5603/FHC.a2023.0001. Epub 2023 Jan 24.

Abstract

INTRODUCTION

The available literature provides relatively little information on the morphology of the autonomic head ganglia in rodents including their neurochemical codding.

MATERIAL AND METHODS

Morphological investigations of the otic ganglion of the chinchilla were performed using the modified acetylcholinesterase method. The cellular structure was investigated with histological techniques and neurochemical properties were studied with the double-labelling immunofluorescence method.

RESULTS

Macromorphological investigations allowed the otic ganglion to be identified as a compact, oval agglomeration of neurons and nerve fibers. Multidimensional cross-sections revealed densely arranged neuronal perikarya and two populations of nerve cells differing in size were distinguished. The large cells (40-50 μm) accounted for about 80% of the neurons in the cross-sections. Moreover, a small number of intraganglionic nerve fibers was observed. Immunohistochemical staining revealed that over 85% of the neuronal cell bodies in the otic ganglion contained immunoreactivity to VAChT or ChAT. VIP-immunoreactive perikarya comprised approximately 10% of the ganglionic cells. Double staining revealed the presence of VAChT+ and NOS+ neurons which amounted to about 45% of the nerve cells in the otic ganglion. NOS+ only perikarya comprised approx. 15% of all the neurons. Immunoreactivity to enkephalins, substance P, somatostatin, and galanin was expressed in single nerve cell bodies and nerve fibers except numerous substance P+ intraganglionic nerve fibers. Some of them were stained also for CGRP. Single neurons stained for tyroxine hydroxylase.

CONCLUSIONS

Our results, compared with findings in other rodent species suggest the existence of interspecies differences in the morphology, cellular structure, and immunohistochemical properties of the head autonomic ganglia in mammals.

摘要

引言

现有文献关于啮齿动物自主头部神经节的形态学,包括其神经化学编码的信息相对较少。

材料与方法

采用改良乙酰胆碱酯酶法对龙猫耳神经节进行形态学研究。用组织学技术研究细胞结构,并用双标记免疫荧光法研究神经化学特性。

结果

大体形态学研究表明,耳神经节是神经元和神经纤维紧密的椭圆形聚集。多维横截面显示神经元胞体排列密集,区分出两种大小不同的神经细胞群体。大细胞(40 - 50μm)约占横截面神经元的80%。此外,观察到少量神经节内神经纤维。免疫组织化学染色显示,耳神经节中超过85%的神经元细胞体对VAChT或ChAT有免疫反应性。VIP免疫反应性胞体约占神经节细胞的10%。双重染色显示存在VAChT +和NOS +神经元,约占耳神经节神经细胞的45%。仅NOS +胞体约占所有神经元的15%。除大量神经节内P物质+神经纤维外,脑啡肽、P物质、生长抑素和甘丙肽的免疫反应性在单个神经细胞体和神经纤维中表达。其中一些也被CGRP染色。单个神经元被酪氨酸羟化酶染色。

结论

与其他啮齿动物物种的研究结果相比,我们的结果表明哺乳动物头部自主神经节在形态、细胞结构和免疫组织化学特性方面存在种间差异。

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