Johnson T S, Young J B, Landsberg L
J Appl Physiol Respir Environ Exerc Physiol. 1981 Sep;51(3):614-20. doi: 10.1152/jappl.1981.51.3.614.
The lung contains sympathetic efferent nerves, but their participation in conditions associated with sympathetic nervous system activation is unknown. To assess sympathetic activity in lung during cold exposure and hypoxia, the measurement of radiolabeled norepinephrine (NE) turnover was carried out in this organ. In preliminary studies this technique, which measures in vivo the activity of sympathetic nerves in an individually innervated organ, was validated for use as a measure of sympathetic activity in rat lung. NE turnover was then measured in unanesthetized rats during cold (4 degrees C, 24 h) and hypobaric hypoxic (PB = 380 Torr, 7 days) exposure. Cold exposure increased calculated NE turnover rate in lung by 63% from 4.2 +/- 1.4 to 6.8 +/- 1.6 ng NE.organ-1.h-1 (95% confidence limits). Chronic hypobaric hypoxia increased NE turnover rate in lung by 114% from 4.0 +/- 1.8 to 8.6 +/- 2.4 NE.organ-1.h-1. Thus NE turnover techniques are applicable to rat lung and demonstrate increased sympathetic activity during cold exposure and chronic hypoxia.
肺中含有交感传出神经,但其是否参与与交感神经系统激活相关的病症尚不清楚。为了评估冷暴露和低氧期间肺中的交感神经活动,对该器官进行了放射性标记去甲肾上腺素(NE)周转率的测量。在初步研究中,该技术(在体内测量单个神经支配器官中交感神经的活性)被验证可用于测量大鼠肺中的交感神经活动。然后在未麻醉的大鼠冷暴露(4℃,24小时)和低压低氧(PB = 380托,7天)暴露期间测量NE周转率。冷暴露使肺中计算出的NE周转率从4.2±1.4增加到6.8±1.6 ng NE·器官-1·小时-1(95%置信区间),增加了63%。慢性低压低氧使肺中NE周转率从4.0±1.8增加到8.6±2.4 NE·器官-1·小时-1,增加了114%。因此,NE周转率技术适用于大鼠肺,并证明在冷暴露和慢性低氧期间交感神经活动增加。