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吸入性血栓素类似物(U46619)对犬体内肺阻力和气道高反应性的影响。

Effect of an inhaled thromboxane mimetic (U46619) on in vivo pulmonary resistance and airway hyperresponsiveness in dogs.

作者信息

Jones G L, Lane C, O'Byrne P M

机构信息

Department of Medicine, McMaster University, Hamilton, Ontario, Canada.

出版信息

J Physiol. 1992;453:59-67. doi: 10.1113/jphysiol.1992.sp019218.

Abstract
  1. We investigated the role of thromboxane A2 in the airway hyperresponsiveness that follows the inhalation of ozone in dogs by examining the responses to an inhaled thromboxane analogue (U46619). 2. Measurements of pulmonary resistance were made in anaesthetized dogs; the concentration of inhaled agonist causing an increase of 5 cmH2O l-1 s was calculated (provocative concentration). The effect of inhaled U46619 was studied on in vivo canine airway resistance, on airway responsiveness and on airways made hyperresponsive following the inhalation of ozone. 3. Inhaled thromboxane is a potent constrictor of the canine airway. The mean provocative concentration was 2.13 x 10(-4) M, compared to acetylcholine which was 3.23 x 10(-2) M. 4. Inhaled thromboxane did not result in the development of airway hyperresponsiveness to acetylcholine. Following U46619 inhalation the mean provocative concentration to acetylcholine was 3.92 x 10(-2) M. 5. Canine airway was not hyperresponsive to inhaled thromboxane following the inhalation of ozone. This was not due to an inhibition of acetylcholinesterase as the dogs were hyperresponsive to carbachol (a muscarinic agonist not degraded by endplate cholinesterase). 6. These experiments do not support a role for thromboxane in the development of airway hyperresponsiveness following the inhalation of ozone in dogs.
摘要
  1. 我们通过检测对吸入的血栓素类似物(U46619)的反应,研究了血栓素A2在犬吸入臭氧后气道高反应性中的作用。2. 在麻醉的犬身上测量肺阻力;计算引起肺阻力增加5 cmH2O·l-1·s的吸入激动剂浓度(激发浓度)。研究了吸入U46619对犬体内气道阻力、气道反应性以及吸入臭氧后产生高反应性的气道的影响。3. 吸入的血栓素是犬气道的强效收缩剂。平均激发浓度为2.13×10(-4) M,而乙酰胆碱的平均激发浓度为3.23×10(-2) M。4. 吸入血栓素并未导致对乙酰胆碱的气道高反应性的发展。吸入U46619后,对乙酰胆碱的平均激发浓度为3.92×10(-2) M。5. 犬吸入臭氧后,气道对吸入的血栓素无高反应性。这并非由于乙酰胆碱酯酶受到抑制,因为犬对卡巴胆碱(一种不受终板胆碱酯酶降解的毒蕈碱激动剂)有高反应性。6. 这些实验不支持血栓素在犬吸入臭氧后气道高反应性发展中的作用。

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