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非胆碱能性气道收缩的非迷走神经成分中的氧自由基。

Oxygen radicals in the nonvagal component of noncholinergic airway constriction.

作者信息

Zhang H Q, Tai H H, Lai Y L

机构信息

Division of Pharmacology and Experimental Therapeutics, College of Pharmacy, University of Kentucky, Lexington 40536, USA.

出版信息

Respir Physiol. 1996 Jul;104(2-3):213-20. doi: 10.1016/0034-5687(96)00004-7.

Abstract

To test the hypothesis that oxygen radicals play an important role in the nonvagal component of the noncholinergic bronchoconstriction in vivo, 37 guinea pigs weighing 329 +/- 8 g were randomly divided into five groups: group 1, vagotomy; group 2, vagotomy + CAT (catalase); group 3, vagotomy + SOD (superoxide dismutase); group 4, vagotomy + PBN (alpha-phenyl-N-tert-butyl nitrone); and group 5, capsaicin pretreatment. CAT, SOD, and PBN are antioxidants. Each animal was anesthetized, paralyzed, artificially ventilated, and pretreated with atropine and phenoxybenzamine. Immediately after acute capsaicin challenge, animals in group 1 exhibited decreases in maximal expiratory flow, dynamic respiratory compliance, and total lung capacity, as well as an increase in functional residual capacity, indicating noncholinergic airway constriction. The bronchoconstriction was significantly ameliorated by SOD and PBN, and it was almost abolished by capsaicin pretreatment. Thirty minutes after acute capsaicin challenge, there was a significant decrease in airway NEP activity and an increase in lung substance P level in group 1 but not in other groups. These results indicate that nonvagal component of noncholinergic bronchoconstriction is partially modulated by oxygen radicals.

摘要

为了验证氧自由基在体内非胆碱能支气管收缩的非迷走神经成分中起重要作用这一假说,将37只体重为329±8克的豚鼠随机分为五组:第1组,迷走神经切断术;第2组,迷走神经切断术+CAT(过氧化氢酶);第3组,迷走神经切断术+SOD(超氧化物歧化酶);第4组,迷走神经切断术+PBN(α-苯基-N-叔丁基硝酮);第5组,辣椒素预处理。CAT、SOD和PBN均为抗氧化剂。每只动物均经麻醉、麻痹、人工通气,并预先用阿托品和酚苄明处理。急性辣椒素激发后,第1组动物立即出现最大呼气流速、动态呼吸顺应性和肺总量降低,以及功能残气量增加,提示非胆碱能气道收缩。SOD和PBN可显著改善支气管收缩,辣椒素预处理几乎可消除支气管收缩。急性辣椒素激发后30分钟,第1组气道NEP活性显著降低,肺P物质水平升高,而其他组未出现此现象。这些结果表明,非胆碱能支气管收缩的非迷走神经成分部分受氧自由基调节。

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