Adriaensen D, Scheuermann D W, Gajda M, Brouns I, Timmermans J P
Laboratory of Cell Biology and Histology, University of Antwerp - RUCA, Belgium.
Ital J Anat Embryol. 2001;106(2 Suppl 1):395-403.
Pulmonary neuroepithelial bodies (NEBs) are innervated organoid groups of neuroendocrine cells, present in the epithelial lining of intrapulmonary airways of man and all air-breathing vertebrates studied so far. NEBs receive a vagal nodose sensory innervation that is considered by other authors as their main, if not their only innervation, although apparently not needed for the normal development and maintenance of NEBs. In the present study of NEBs in the developing rat lung (gestational day 16 - adult), immunoreactivity (IR) for calcitonin gene-related peptide (CGRP; a marker for NEBs), protein gene product 9.5 (PGP9.5; a marker for NEBs and neuronal elements), calbindin D28k (CB; a calcium binding protein), and for the growth-associated protein 43 (GAP-43; a marker for growing or remodelling nerve fibers) was combined with vagal denervation experiments. GAP-43 and CB IR revealed that the vagal sensory innervation of airways precedes the prenatal development of NEBs by several generations of branching. Unlike several other nerve fiber populations innervating NEBs, the vagal sensory component apparently does not express GAP-43 IR in mature lungs. GAP-43 labelling, however, did reveal newly ingrowing intraepithelial vagal sensory fibers, specifically reinnervating NEBs in adult rats 2 weeks following a cervical vagal crush. In conclusion, details of the innervation of pulmonary NEBs were disclosed that had been invisible so far, shedding new light on its complexity and probable involvement in the normal development and functional maintenance of NEBs throughout life.
肺神经上皮小体(NEBs)是神经内分泌细胞的神经支配类器官群,存在于人类以及迄今所研究的所有呼吸空气的脊椎动物的肺内气道上皮中。NEBs接受迷走神经结状感觉神经支配,其他作者认为这是其主要的神经支配,即便不是唯一的神经支配,尽管这显然并非NEBs正常发育和维持所必需。在本项对发育中大鼠肺(妊娠第16天至成年)的NEBs研究中,将降钙素基因相关肽(CGRP;NEBs的标志物)、蛋白基因产物9.5(PGP9.5;NEBs和神经元成分的标志物)、钙结合蛋白D28k(CB)以及生长相关蛋白43(GAP - 43;生长或重塑神经纤维的标志物)的免疫反应性(IR)与迷走神经切断实验相结合。GAP - 43和CB免疫反应性显示,气道的迷走感觉神经支配比NEBs的产前发育早几代分支。与其他支配NEBs的几种神经纤维群体不同,迷走感觉成分在成熟肺中显然不表达GAP - 43免疫反应性。然而,GAP - 43标记确实揭示了新长入上皮的迷走感觉纤维,特别是在成年大鼠颈部迷走神经挤压后2周重新支配NEBs。总之,本研究揭示了迄今为止一直未被发现的肺NEBs神经支配细节,为其复杂性以及在NEBs一生的正常发育和功能维持中的可能作用提供了新的线索。