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运动后鼻血管收缩及反应性降低:神经肽Y可能与之有关。

Post-exercise nasal vasoconstriction and hyporeactivity: possible involvement of neuropeptide Y.

作者信息

Lacroix J S, Correia F, Fathi M, Grouzmann E

机构信息

Department of Otorhinolaryngology, University Hospital, Geneva, Switzerland.

出版信息

Acta Otolaryngol. 1997 Jul;117(4):609-13. doi: 10.3109/00016489709113446.

Abstract

Neuropeptide Y (NPY) is co-localized with noradrenaline (NA) in perivascular sympathetic nerve and is a vasoconstrictor. Pre-treatment with exogenous NPY markedly reduced nasal airway obstruction and rhinorrhea induced by the irritant capsaicin in control subjects. The aim of the present experiments was to study the time course variations of plasma concentrations of NA and NPY during and after intense exercise in 17 healthy volunteers. In parallel, changes in nasal airway resistance (NAR) were recorded. Nasal obstruction and rhinorrhea induced by capsaicin were compared after 30 min of rest and after 30 min of exercise. Both subjective and objective NAR were significantly reduced (p < 0.05) for over 15 min after the end of exercise. Plasma levels of NPY remained increased for more than 15 min after exercise whereas NA returned to basal values within less than 10 min. The increases of NAR and mucus production evoked by capsaicin were markedly attenuated for 30 min after exercise (p < 0.05). Variations of plasma NPY concentrations over time correlated better with post-exercise nasal vasoconstriction and hyporeactivity to capsaicin than NA. These observations suggest that endogenous NPY could be involved in the prolonged post-exercise nasal vasoconstriction and acts as a modulator of nasal airways reactivity.

摘要

神经肽Y(NPY)与去甲肾上腺素(NA)共同存在于血管周围交感神经中,是一种血管收缩剂。在对照组受试者中,外源性NPY预处理可显著减轻由刺激性辣椒素引起的鼻气道阻塞和鼻漏。本实验的目的是研究17名健康志愿者在剧烈运动期间及运动后血浆中NA和NPY浓度随时间的变化。同时,记录鼻气道阻力(NAR)的变化。比较休息30分钟后和运动30分钟后辣椒素引起的鼻阻塞和鼻漏情况。运动结束后,主观和客观NAR均显著降低(p<0.05),持续超过15分钟。运动后NPY的血浆水平在15分钟以上持续升高,而NA在不到10分钟内恢复到基础值。运动后30分钟内辣椒素引起的NAR增加和黏液分泌明显减弱(p<0.05)。与NA相比,血浆NPY浓度随时间的变化与运动后鼻血管收缩和对辣椒素的反应性降低的相关性更好。这些观察结果表明,内源性NPY可能参与运动后长时间的鼻血管收缩,并作为鼻气道反应性的调节剂。

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