Adriaensen Dirk, Brouns Inge, Van Genechten Jeroen, Timmermans Jean-Pierre
Department of Biomedical Sciences, University of Antwerp-RUCA, Antwerp, Belgium.
Anat Rec A Discov Mol Cell Evol Biol. 2003 Jan;270(1):25-40. doi: 10.1002/ar.a.10007.
Innervated groups of neuroendocrine cells, called neuroepithelial bodies (NEBs), are diffusely spread in the epithelium of intrapulmonary airways in many species. Our present understanding of the morphology of NEBs in mammalian lungs is comprehensive, but none of the proposed functional hypotheses have been proven conclusively. In recent reviews on airway innervation, NEBs have been added to the list of presumed physiological lung receptors. Microscopic data on the innervation of NEBs, however, have given rise to conflicting interpretations. Using neuronal tracing, denervation, and immunostaining, we recently demonstrated that the innervation of NEBs is much more complex than the almost unique vagal nodose sensory innervation suggested by other authors. The aim of the present work is to summarize our present understanding about the origin and chemical coding of the profuse nerve terminals that selectively contact pulmonary NEBs. A thorough knowledge of the complex interactions between the neuroendocrine cells and at least five different nerve fiber populations is essential for defining the position(s) of NEBs among the many pulmonary receptors characterized by lung physiologists.
在许多物种中,被称为神经上皮小体(NEBs)的神经内分泌细胞群分散分布于肺内气道的上皮中。我们目前对哺乳动物肺部神经上皮小体形态的理解较为全面,但所提出的功能假说均未得到确凿证实。在近期有关气道神经支配的综述中,神经上皮小体已被列入假定的生理性肺受体名单。然而,关于神经上皮小体神经支配的微观数据却引发了相互矛盾的解释。通过神经元追踪、去神经支配和免疫染色,我们最近证明,神经上皮小体的神经支配比其他作者所提出的几乎唯一的迷走神经节感觉神经支配要复杂得多。本研究的目的是总结我们目前对选择性接触肺部神经上皮小体的丰富神经末梢的起源和化学编码的理解。深入了解神经内分泌细胞与至少五种不同神经纤维群体之间的复杂相互作用,对于确定神经上皮小体在肺生理学家所描述的众多肺受体中的位置至关重要。