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Chemosensory Functions for Pulmonary Neuroendocrine Cells

受体 刺激 降钙素基因相关肽 神经肽 血清素 生物 呼吸上皮 上皮 5-羟色胺受体 嗅上皮 分泌物 细胞生物学 呼吸系统 免疫学 神经科学 内分泌学 医学 内科学 解剖 生物化学 遗传学
作者
Xiaoling Gu,Philip H. Karp,Steven L. Brody,Richard A. Pierce,Michael J. Welsh,Michael J. Holtzman,Yehuda Ben-Shahar
出处
期刊:American Journal of Respiratory Cell and Molecular Biology [American Thoracic Society]
卷期号:50 (3): 637-646 被引量:104
标识
DOI:10.1165/rcmb.2013-0199oc
摘要

The mammalian airways are sensitive to inhaled stimuli, and airway diseases are characterized by hypersensitivity to volatile stimuli, such as perfumes, industrial solvents, and others. However, the identity and function of the cells in the airway that can sense volatile chemicals remain uncertain, particularly in humans. Here, we show that solitary pulmonary neuroendocrine cells (PNECs), which are morphologically distinct and physiologically undefined, might serve as chemosensory cells in human airways. This conclusion is based on our finding that some human PNECs expressed members of the olfactory receptor (OR) family in vivo and in primary cell culture, and are anatomically positioned in the airway epithelium to respond to inhaled volatile chemicals. Furthermore, apical exposure of primary-culture human airway epithelial cells to volatile chemicals decreased levels of serotonin in PNECs, and the led to the release of the neuropeptide calcitonin gene-related peptide (CGRP) to the basal medium. These data suggest that volatile stimulation of PNECs can lead to the secretion of factors that are capable of stimulating the corresponding receptors in the lung epithelium. We also found that the distribution of serotonin and neuropeptide receptors may change in chronic obstructive pulmonary disease, suggesting that increased PNEC-dependent chemoresponsiveness might contribute to the altered sensitivity to volatile stimuli in this disease. Together, these data indicate that human airway epithelia harbor specialized cells that respond to volatile chemical stimuli, and may help to explain clinical observations of odorant-induced airway reactions.
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