Mitchell R W, Kroeger E A, Kepron W, Stephens N L
Department of Physiology, Faculty of Medicine, University of Manitoba, Winnipig, Canada.
J Pharmacol Exp Ther. 1987 Dec;243(3):907-14.
Previous studies from our laboratory showed an atropine-sensitive component in the hyperresponsiveness of ragweed-sensitized canine tracheal smooth muscle (TSM) in vitro to histamine and potassium. The present studies were undertaken to elucidate the nature of the parasympathetic element in this hyperresponsiveness. TSM strips were dissected from ragweed-sensitized and littermate control dogs and their isometric force generation was measured in vitro. Mechanical responses of sensitized TSM were characterized by hyperreactivity (upward shift of the dose-response relationship) to acetylcholine (ACh), atropine-sensitive spontaneous base line activity and prolonged isometric force plateaus. Control TSM did not contract spontaneously and basal tone was maintained passively. However, eserine could produce spontaneous base-line activity and prolonged isometric force plateau in control TSM that mimicked that observed naturally in sensitized TSM. Sensitized TSM was supersensitive (leftward shift of the dose-response relationship) to ACh and electrical field stimulation, and showed a significant leftward shift of the threshold dose to carbamylcholine (carbachol). However, sensitized and control TSMs were equally reactive to carbachol at doses of 10(-8) M and greater. Also, ACh dose-response curves of sensitized and control TSMs in the presence of the cholinesterase inhibitor eserine (10(-8) M) showed no significant differences in sensitivity or reactivity. These results were consistent with a role for local parasympathetic mechanisms such as altered ACh release and/or breakdown in the hyperresponsiveness of ragweed-sensitized canine TSM.
我们实验室之前的研究表明,豚草致敏犬气管平滑肌(TSM)在体外对组胺和钾的高反应性中存在阿托品敏感成分。本研究旨在阐明这种高反应性中副交感神经成分的性质。从豚草致敏犬和同窝对照犬身上分离出TSM条带,并在体外测量其等长力的产生。致敏TSM的机械反应表现为对乙酰胆碱(ACh)的高反应性(剂量反应关系向上移位)、阿托品敏感的自发基线活动以及延长的等长力平台期。对照TSM不自发收缩,基础张力被动维持。然而,毒扁豆碱可在对照TSM中产生自发基线活动和延长的等长力平台期,这与在致敏TSM中自然观察到的情况相似。致敏TSM对ACh和电场刺激超敏感(剂量反应关系向左移位),对氨甲酰胆碱(卡巴胆碱)的阈剂量有显著左移。然而,在10^(-8)M及更高剂量下,致敏TSM和对照TSM对卡巴胆碱的反应性相同。此外,在胆碱酯酶抑制剂毒扁豆碱(10^(-8)M)存在的情况下,致敏TSM和对照TSM的ACh剂量反应曲线在敏感性或反应性方面无显著差异。这些结果与局部副交感神经机制(如ACh释放和/或分解改变)在豚草致敏犬TSM高反应性中的作用一致。