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首页> 外文期刊>Journal of applied physiology >Evidence for a role of neuroepithelial bodies as complex airway sensors: comparison with smooth muscle-associated airway receptors
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Evidence for a role of neuroepithelial bodies as complex airway sensors: comparison with smooth muscle-associated airway receptors

机译:神经上皮机构作为复杂气道传感器的作用的证据:与平滑肌相关气道受体进行比较

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The epithelium of intrapulmonary airways in many species harbors diffusely spread innervated groups of neuroendocrine cells, called neuroepithelial bodies (NEBs). Data on the location, morphology, and chemical coding of NEBs in mammalian lungs are abundant, but none of the proposed functions has so far been fully established. Besides C-fiber afferents, slowly adapting stretch receptors, and rapidly adapting stretch receptors, recent reviews have added NEBs to the list of presumed sensory receptors in intrapulmonary airways. Physiologically, the innervation of NEBs, however, remains enigmatic. This short overview summarizes our present understanding of the chemical coding and exact location of the receptor end organs of myelinated vagal airway afferents in intrapulmonary airways. The profuse populations that selectively contact complex pulmonary NEB receptors are compared with the much smaller group of smooth muscle-associated airway receptors. The main objective of our contribution was to stimulate the idea that the different populations of myelinated vagal afferents that selectively innervate intraepithelial pulmonary NEBs may represent subpopulations of the extensive group of known electrophysiologically characterized myelinated vagal airway receptors. Future efforts should be directed toward finding out which airway receptor groups are selectively coupled to the complex NEB receptors.
机译:在许多物种的颅内气流的上皮岩会蔓延地扩散了被称为神经上皮体(NEBS)的神经内分泌细胞的支配基团。哺乳动物肺中NEBS的位置,形态和化学编码的数据丰富,但到目前为止,拟议的职能都没有完全建立。除C-纤维引入外,缓慢适应拉伸受体,近期评价迅速适应拉伸受体,近期评价将NEBS添加到片内气道中推定的感觉受体列表。然而,生理学上,NEB的支配仍然是神秘的。此简短概述总结了我们对植入式漫长气道中骨髓迷离气道传统的受体末端器官的化学编码和确切位置的理解。与较小的平滑肌相关气道受体进行比较,选择性地接触复杂肺结核受体的大量群体。我们的贡献的主要目标是刺激选择性地关节膀尖肺结结曲的肢体术迷肠传统的不同群体可以代表广泛的已知电生理学表征的髓迷你气道受体的亚群。应向未来的努力指导发现哪些气道受体基团与复合NEB受体选择性地结合。

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