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大鼠肺神经上皮小体中的上皮内迷走感觉神经末梢表达P2X(3)受体。

Intraepithelial vagal sensory nerve terminals in rat pulmonary neuroepithelial bodies express P2X(3) receptors.

作者信息

Brouns I, Adriaensen D, Burnstock G, Timmermans J P

机构信息

Laboratory of Cell Biology and Histology, University of Antwerp, Antwerp, Belgium.

出版信息

Am J Respir Cell Mol Biol. 2000 Jul;23(1):52-61. doi: 10.1165/ajrcmb.23.1.3936.

Abstract

The neurotransmitters/modulators involved in the interaction between pulmonary neuroepithelial bodies (NEBs) and the vagal sensory component of their innervation have not yet been elucidated. Because P2X(3) purinoreceptors are known to be strongly expressed in peripheral sensory neurons, the aim of the present study was to examine the localization of nerve endings expressing P2X(3) purinoreceptors in the rat lung in general and those contacting pulmonary NEBs in particular. Most striking were intraepithelial arborizations of P2X(3) purinoceptor-immunoreactive (IR) nerve terminals, which in all cases appeared to ramify between calcitonin gene-related peptide (CGRP)- or calbindin D28k (CB)-labeled NEB cells. However, not all NEBs received nerve endings expressing P2X(3) receptors. Using CGRP and CB staining as markers for two different sensory components of the innervation of NEBs, it was revealed that P2X(3) receptor and CB immunoreactivity were colocalized, whereas CGRP-IR fibers clearly formed a different population. The disappearance of characteristic P2X(3) receptor-positive nerve fibers in contact with NEBs after infranodosal vagal crush and colocalization of tracer and P2X(3) receptor immunoreactivity in vagal nodose neuronal cell bodies in retrograde tracing experiments further supports our hypothesis that the P2X(3) receptor-IR nerve fibers contacting NEBs have their origin in the vagal sensory nodose ganglia. Combination of quinacrine accumulation in NEBs, suggestive of the presence of high concentrations of adenosine triphosphate (ATP) in their secretory vesicles, and P2X(3) receptor staining showed that the branching intraepithelial P2X(3) receptor-IR nerve terminals in rat lungs were exclusively associated with quinacrine-stained NEBs. We conclude that ATP might act as a neurotransmitter/neuromodulator in the vagal sensory innervation of NEBs via a P2X(3) receptor-mediated pathway. Further studies are necessary to determine whether the P2X(3) receptor-expressing neurons, specifically innervating NEBs in the rat lung, belong to a population of P2X(3) receptor-IR nociceptive vagal nodose neurons.

摘要

参与肺神经上皮小体(NEBs)与其神经支配的迷走神经感觉成分之间相互作用的神经递质/调质尚未阐明。由于已知P2X(3)嘌呤受体在外周感觉神经元中强烈表达,本研究的目的是总体上检查大鼠肺中表达P2X(3)嘌呤受体的神经末梢的定位,特别是那些与肺NEBs接触的神经末梢的定位。最引人注目的是P2X(3)嘌呤受体免疫反应性(IR)神经末梢的上皮内分支,在所有情况下,这些分支似乎在降钙素基因相关肽(CGRP)或钙结合蛋白D28k(CB)标记的NEB细胞之间分支。然而,并非所有NEBs都接受表达P2X(3)受体的神经末梢。使用CGRP和CB染色作为NEBs神经支配的两种不同感觉成分的标记,发现P2X(3)受体和CB免疫反应性共定位,而CGRP-IR纤维明显形成不同的群体。结状下迷走神经挤压后与NEBs接触的特征性P2X(3)受体阳性神经纤维消失,以及逆行追踪实验中示踪剂与P2X(3)受体免疫反应性在迷走神经结状神经元细胞体中的共定位,进一步支持了我们的假设,即与NEBs接触的P2X(3)受体-IR神经纤维起源于迷走神经感觉结状神经节。NEBs中奎纳克林的积累提示其分泌小泡中存在高浓度的三磷酸腺苷(ATP),P2X(3)受体染色的结合表明,大鼠肺中分支的上皮内P2X(3)受体-IR神经末梢仅与奎纳克林染色的NEBs相关。我们得出结论,ATP可能通过P2X(3)受体介导的途径在NEBs的迷走神经感觉神经支配中作为神经递质/神经调质起作用。有必要进行进一步研究以确定在大鼠肺中特异性支配NEBs的表达P2X(3)受体的神经元是否属于表达P2X(3)受体-IR的伤害性迷走神经结状神经元群体。

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