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[离体气道平滑肌的静息张力]

[Resting tonus of isolated airway smooth muscles].

作者信息

Kohno S, Ohata K

机构信息

Department of Pharmacology, Kyoto Pharmaceutical University, Japan.

出版信息

Nihon Yakurigaku Zasshi. 1993 Jul;102(1):1-10. doi: 10.1254/fpj.102.1.

Abstract

The regulation of airway caliber is important for supporting the physiological respiratory function and is considered to be mainly controlled by the central and peripheral nervous systems. In the present review, we discussed the resting tonus of the isolated airway smooth muscle of the guinea pig and compared it with that of the human; the former is similar to the latter because both are well-developed in the airway and well-responsive to a variety of mediators. The resting tonus of the isolated guinea pig trachea is largely decreased by indomethacin, a cyclooxygenase inhibitor, while that of the isolated human bronchus is increased following transient decrease by indomethacin. Furthermore, the human bronchus is markedly decreased by not only a selective peptide leukotriene antagonist, MCI-826, but also 5-lipoxygenase inhibitors, AA 861 and cirsiliol. These results indicate that contractile prostanoid(s) and peptide leukotrienes are possible mediators for the maintaining the resting tonus of the respective preparations. Both preparations still have a small but substantial part of the resting tonus resistant to these drugs, the mediator(s) responsible for which is not clarified yet. In short, arachidonate metabolites are major candidates for the resting tonus of either isolated guinea pig or human airway smooth muscle and may contribute to at least a part of the regulation of the airway caliber as autacoids in vivo.

摘要

气道管径的调节对于维持生理呼吸功能很重要,并且被认为主要受中枢和外周神经系统控制。在本综述中,我们讨论了豚鼠离体气道平滑肌的静息张力,并将其与人类的进行比较;前者与后者相似,因为两者在气道中都发育良好,并且对多种介质有良好反应。环氧化酶抑制剂吲哚美辛可使离体豚鼠气管的静息张力大幅降低,而吲哚美辛短暂降低离体人类支气管的静息张力后,其静息张力会升高。此外,人类支气管不仅会被选择性肽白三烯拮抗剂MCI - 826显著降低,还会被5 - 脂氧合酶抑制剂AA 861和水飞蓟宾显著降低。这些结果表明,收缩性前列腺素和肽白三烯可能是维持各自标本静息张力的介质。两种标本仍有一小部分但相当可观的静息张力对这些药物有抗性,负责这部分静息张力的介质尚未明确。简而言之,花生四烯酸代谢产物是离体豚鼠或人类气道平滑肌静息张力的主要候选介质,并且在体内作为自分泌物质可能至少部分参与气道管径的调节。

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