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过氧化氢诱导的离体大鼠气道收缩反应增强

Hydrogen peroxide-induced potentiation of contractile responses in isolated rat airways.

作者信息

Szarek J L, Schmidt N L

机构信息

Department of Pharmacology, Marshall University School of Medicine, Huntington, West Virginia 25755-9310.

出版信息

Am J Physiol. 1990 Apr;258(4 Pt 1):L232-7. doi: 10.1152/ajplung.1990.258.4.L232.

Abstract

We hypothesized that metabolites of O2 may play a role in the development of airway hyperreactivity and undertook this study to examine the effects of one of these metabolites, hydrogen peroxide (H2O2), on electrical field stimulation-induced contractile responses of isolated rat intrapulmonary bronchi. Exposure to H2O2 (1 mM) elicited a transient contractile response with a peak response equivalent to 18.1 +/- 2.0% of the reference contraction obtained to electrical stimulation. The H2O2-induced contraction was attenuated by pretreatment of tissues with indomethacin and superoxide dismutase, but abolished by catalase and mianserin. Subsequent to H2O2 exposure, electrical field stimulation-induced contractile responses were potentiated (P less than 0.0001), whereas acetylcholine-induced contractions were not. The potentiating effects of H2O2 were inhibited by catalase and mianserin. Addition of 5-hydroxytryptamine (5-HT) to the bath similarly potentiated contractions to electrical stimulation (P less than 0.0001). Together, these results are consistent with a role for 5-HT in H2O2-induced contraction and the subsequent potentiation of airway smooth muscle contraction elicited by cholinergic nerve activation. Thus endogenous metabolites of O2 may be important in modulating airway smooth muscle tone.

摘要

我们推测,氧的代谢产物可能在气道高反应性的发展中起作用,并开展了本研究以检测其中一种代谢产物过氧化氢(H2O2)对电场刺激诱导的离体大鼠肺内支气管收缩反应的影响。暴露于H2O2(1 mM)引起短暂的收缩反应,其峰值反应相当于电刺激所获得的对照收缩的18.1±2.0%。吲哚美辛和超氧化物歧化酶预处理组织可减弱H2O2诱导的收缩,但过氧化氢酶和米安色林可消除该收缩。暴露于H2O2后,电场刺激诱导的收缩反应增强(P<0.0001),而乙酰胆碱诱导的收缩则未增强。过氧化氢酶和米安色林可抑制H2O2的增强作用。向浴槽中添加5-羟色胺(5-HT)同样增强了对电刺激的收缩反应(P<0.0001)。总之,这些结果与5-HT在H2O2诱导的收缩以及随后胆碱能神经激活引起的气道平滑肌收缩增强中所起的作用一致。因此,氧的内源性代谢产物可能在调节气道平滑肌张力方面很重要。

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