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气道中的感觉受体:平滑肌相关气道受体的神经化学编码及肺神经上皮小体的神经支配

Sensory receptors in the airways: neurochemical coding of smooth muscle-associated airway receptors and pulmonary neuroepithelial body innervation.

作者信息

Brouns Inge, De Proost Ian, Pintelon Isabel, Timmermans Jean-Pierre, Adriaensen Dirk

机构信息

Laboratory of Cell Biology and Histology, University of Antwerp, Groenenborgerlaan 171, B-2020 Antwerp, Belgium.

出版信息

Auton Neurosci. 2006 Jun 30;126-127:307-19. doi: 10.1016/j.autneu.2006.02.006. Epub 2006 Apr 5.

Abstract

Mainly due to the lack of conclusive morphological data, correlation between functionally and morphologically defined lung receptors has so far been unsatisfactory. In the present study, multiple immunocytochemical stainings with a panel of markers for (mechanso)sensory nerve fibres were performed in order to visualise putative receptor terminals in rat intrapulmonary airways. We first focussed on determining the location, morphology and neurochemical coding of subepithelial receptor-like structures that have been sporadically reported in the wall of large diameter airways. Immunostaining with antibodies against Na+/K+-ATPase alpha3, vesicular glutamate transporter 1 (VGLUT1) and VGLUT2 revealed branching laminar subepithelial receptor endings associated with airway smooth muscle. The latter nerve terminals appeared to further express calbindin D28k (CB), and the ATP receptor P2X3, but were calcitonin gene-related peptide (CGRP)-negative. The nerve fibres that give rise to these terminals were shown to be myelinated and have a vagal sensory origin. Because of the close association between the laminar terminals of this receptor-like structures and airway smooth muscle, we will further refer to these clearly morphologically identifiable sensory end organs as 'smooth muscle-associated airway receptors (SMARs)'. Secondly, we further explored the sensory innervation of pulmonary neuroepithelial bodies (NEBs). NEBs are intraepithelial groups of neuroendocrine cells, contacted by several nerve fibre populations, at least three of which are sensory. The spinal sensory innervation of NEBs expresses CGRP and substance P, contacts NEBs at their basal pole, and is capsaicin-sensitive. The intraepithelial vagal sensory innervation of NEBs, on the other hand, appears to be myelinated and could be labelled by antibodies against VGLUT1, VGLUT2, CB and P2X3 receptors. Na+/K+-ATPase alpha3 immunostaining additionally labelled part of the vagal sensory innervation of rat pulmonary NEBs. The neurochemical coding and receptor-like appearance of SMARs and of the complex vagal sensory innervation of NEBs appeared to be almost identical and reminiscent of mechanosensors. Both SMARs and vagal nodose nerve terminals in NEBs therefore likely represent the morphological counterparts of subgroups of the extensive population of physiologically characterised myelinated vagal airway receptors, the majority of which are mechanosensitive. Electrophysiological data based on 'local' stimuli should be interpreted with caution, because of the regular close apposition of SMARs and NEBs and the very similar characteristics of their nerve terminals.

摘要

主要由于缺乏确凿的形态学数据,功能上和形态学上定义的肺受体之间的相关性迄今为止并不理想。在本研究中,使用一组针对(机械)感觉神经纤维的标记物进行了多次免疫细胞化学染色,以可视化大鼠肺内气道中假定的受体终末。我们首先专注于确定在大直径气道壁中偶尔报道的上皮下受体样结构的位置、形态和神经化学编码。用抗Na+/K+-ATP酶α3、囊泡谷氨酸转运体1(VGLUT1)和VGLUT2的抗体进行免疫染色,揭示了与气道平滑肌相关的分支层状上皮下受体终末。后者的神经终末似乎进一步表达钙结合蛋白D28k(CB)和ATP受体P2X3,但降钙素基因相关肽(CGRP)呈阴性。产生这些终末的神经纤维显示为有髓鞘的,并且起源于迷走感觉神经。由于这种受体样结构的层状终末与气道平滑肌之间的紧密关联,我们将进一步把这些在形态上清晰可辨的感觉终末器官称为“平滑肌相关气道受体(SMARs)”。其次,我们进一步探究了肺神经上皮体(NEBs)的感觉神经支配。NEBs是神经内分泌细胞的上皮内群体,与多个神经纤维群体接触,其中至少有三个是感觉性的。NEBs的脊髓感觉神经支配表达CGRP和P物质,在其基极接触NEBs,并且对辣椒素敏感。另一方面,NEBs的上皮内迷走感觉神经支配似乎是有髓鞘的,并且可以用抗VGLUT1、VGLUT2、CB和P2X3受体的抗体标记。Na+/K+-ATP酶α3免疫染色还标记了大鼠肺NEBs的部分迷走感觉神经支配。SMARs以及NEBs复杂的迷走感觉神经支配的神经化学编码和受体样外观似乎几乎相同,让人联想到机械感受器。因此,SMARs和NEBs中的迷走结节神经终末可能代表了大量生理特征明确的有髓鞘迷走气道受体亚群的形态学对应物,其中大多数是机械敏感的。基于“局部”刺激的电生理数据应谨慎解释,因为SMARs和NEBs经常紧密相邻,且它们的神经终末特征非常相似。

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