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用过氧化物酶细胞化学方法研究大鼠硬腭切牙乳头的感觉神经末梢。

Sensory nerve endings of the incisive papilla of rat hard palate studied by peroxidase cytochemical methods.

作者信息

Chan K Y, Byers M R

出版信息

J Comp Neurol. 1985 Apr 8;234(2):192-200. doi: 10.1002/cne.902340206.

Abstract

This study utilized peroxidase cytochemical methods to survey and analyze the distribution, morphology, and functional relationship of the various components of sensory nerve endings in a focal region of the anterior hard palate (incisive papilla) of the rat. The studies included an anatomical survey of this relatively unknown oral structure, confirmation of the trigeminal origin (labeled by retrograde axonal transport of WGA-HRP injected into the incisive papilla) of the sensory nerve endings, and a complete analysis of the distribution of these nerve endings (labeled by anterograde axonal transport of HRP or WGA-HRP injected into the trigeminal ganglion). Three methods of fixation and two methods of cytochemical reaction were used for selection of an optimal technique for these studies. The results showed distinct patterns of peroxidase-labeled sensory nerve endings at three regions of the incisive papilla: a) dome region (ventral), where labeled nerve endings formed three parallel channels in association with three surface ridges; b) chemosensory corpuscle enriched region (medial to incisive canal), where 82% of the 30-40 chemosensory corpuscles were labeled; and c) lateral labium (lateral to incisive canal), where labeled nerve endings formed a circumscribed network guarding the orifice of incisive canal. The discrete organization of multiple sensory nerve endings in the incisive papilla of the rat may provide an easily accessible model system for various studies in sensory physiology.

摘要

本研究采用过氧化物酶细胞化学方法,对大鼠硬腭前部(切牙乳头)局部区域感觉神经末梢各成分的分布、形态及功能关系进行了观察和分析。研究内容包括对这一相对未知的口腔结构进行解剖学观察,通过向切牙乳头注射WGA-HRP进行逆行轴突运输标记来证实感觉神经末梢的三叉神经起源,以及对通过向三叉神经节注射HRP或WGA-HRP进行顺行轴突运输标记的这些神经末梢的分布进行全面分析。为这些研究选择最佳技术时使用了三种固定方法和两种细胞化学反应方法。结果显示,在切牙乳头的三个区域有明显的过氧化物酶标记的感觉神经末梢模式:a)圆顶区域(腹侧),标记的神经末梢与三条表面嵴相关形成三条平行通道;b)化学感觉小体富集区域(切牙管内侧),30 - 40个化学感觉小体中有82%被标记;c)外侧唇(切牙管外侧),标记的神经末梢形成一个环绕网络,守护着切牙管开口。大鼠切牙乳头中多个感觉神经末梢的离散组织可能为感觉生理学的各种研究提供一个易于获取的模型系统。

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