Role of intrinsic airway neurons in ozone-induced airway hyperresponsiveness in ferret trachea. |
| |
Authors: | Z X Wu D F Maize B E Satterfield D G Frazer J S Fedan R D Dey |
| |
Affiliation: | Department of Anatomy, Robert C. Byrd Health Sciences Center, West Virginia University, Morgantown, West Virginia 26506, USA. |
| |
Abstract: | Exposure to ozone (O(3)) enhances airway responsiveness, which is mediated partly by the release of substance P (SP) from airway neurons. In this study, the role of intrinsic airway neurons in O(3)-induced airway responses was examined. Ferrets were exposed to 2 ppm O(3) or air for 1 h. Reactivity of isolated tracheal smooth muscle to cholinergic agonists was significantly increased after O(3) exposure, as were contractions to electrical field stimulation at 10 Hz. Pretreatment with CP-99994, a neurokinin type 1 receptor antagonist, partially abolished the O(3)-induced reactivity to cholinergic agonists and electrical field stimulation. The O(3)-enhanced airway responses were present in tracheal segments cultured for 24 h, a procedure shown to deplete sensory nerves while maintaining viability of intrinsic airway neurons, and all the enhanced smooth muscle responses were also diminished by CP-99994. Immunocytochemistry showed that the percentage of SP-containing neurons in longitudinal trunk and the percentage of neurons innervated by SP-positive nerve fibers in superficial muscular plexus were significantly increased at 1 h after exposure to O(3). These results suggest that enhanced SP levels in airway ganglia contribute to O(3)-induced airway hyperresponsiveness. |
| |
Keywords: | |
|
| 点击此处可从《Journal of applied physiology》浏览原始摘要信息 |
|
点击此处可从《Journal of applied physiology》下载全文 |
|