Long-term exposure to ozone alters peripheral and central catecholamine activity in rats

被引:31
作者
CottetEmard, JM
Dalmaz, Y
Pequignot, J
Peyrin, L
Pequignot, JM
机构
[1] Physiol. l'Environnement U. Mixte R., Ctr. Natl. de la Rech. Scientifique, Univ. Claude Bernard Lyon I
来源
PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY | 1997年 / 433卷 / 06期
关键词
brainstem noradrenergic cell groups; sympathetic nervous system; superior cervical ganglion; nucleus tractus solitarius; adrenal; locus ceruleus; HEART-RATE; SLEEP-WAKEFULNESS; ACUTE INHALATION; C-FIBERS; BRAIN; HYPOXIA; NOREPINEPHRINE; SPECIFICITY; RESPONSES; NEURONS;
D O I
10.1007/s004240050340
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
In addition to its noxious influence on lung airways, ozone inhalation can induce extrapulmonary neural dysfunctions the mechanisms of which are poorly understood. This study was intended to characterize the effects of long-term exposure to ozone (0.5 ppm, 5 days) on catecholamine activity in rat sympathetic efferents and brain areas of prime importance to adaptation to environmental stressors. Catecholamine activity was assessed by estimating the turnover rate of catecholamines and in vivo tyrosine hydroxylase activity in peripheral and central structures, i.e., heart, lungs, superior cervical ganglia, cerebral cortex, hypothalamus and striatum, A2 cell group within the nucleus tractus solitarius (NTS), and locus ceruleus (A6). Ozone inhibited norepinephrine turnover in heart (-48% of the control level) but not in lungs. Ozone failed to modify the tyrosine hydroxylase activity in superior cervical ganglia, and the catecholamine content in the adrenal glands. In the central nervous system, ozone inhibited tyrosine hydroxylase activity in noradrenergic brainstem cell groups, including the locus ceruleus (-62%) and the caudal A2 subset (-57%). Catecholamine turnover was decreased by ozone in the cortex (-49%) and striatum (-18%) but not in the hypothalamus. The data show that ozone can produce marked neural disturbances in structures involved in the integration of chemosensory inputs, arousal and motor control.
引用
收藏
页码:744 / 749
页数:6
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