p物质诱导兔气道平滑肌收缩的机制。

D T Tanaka, M M Grunstein
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引用次数: 121

摘要

研究了P物质(SP)对离体兔气管平滑肌(TSM)段的收缩作用。非累积性SP使TSM张力呈剂量依赖性增加。SP的平均(+/- SE)峰等距张力(Tmax)为甲胆碱对相应Tmax响应的35.7(+/- 6.2%)。SP产生50% Tmax (ED50)的激动剂剂量明显较低,平均为1.8 (+/- 0.4)X 10(-7) M,而甲胆碱为1.7 (+/- 0.32)X 10(-6) M。六甲铵(10(-4)M)阻断副交感神经节和河河鱼毒素(1微克/ml)阻断神经传递对SP的TSM反应没有影响。另一方面,ED50剂量SP对TSM的收缩作用,与胆碱酯酶抑制剂新斯的明(10(-6)M)预处理相比,1)增加了平均(+/- SE) 470(+/- 110%);2)胆碱能拮抗剂阿托品(10(-4)M)平均(+/- SE) 35(+/- 15%)的抑制作用;和3)也被平均(+ / - SE) 45(+ / - 11%)与hemicholinium-3抑制乙酰胆碱合成后(10 (4)M)。5 -羟色胺拮抗剂,α1-adrenergic,与组胺受体结合与SP TSM收缩没有影响。相比之下,SP拮抗剂,D-Pro2, D-Trp7, 9-SP,明显抑制TSM收缩SP。我们的发现表明兔子TSM敏感SP及其收缩部分由外围胆碱能行动,可能与气道神经肌肉连接处乙酰胆碱的加速释放有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanisms of substance P-induced contraction of rabbit airway smooth muscle.

The contractile effects of substance P (SP) were studied in isolated rabbit tracheal smooth muscle (TSM) segments in vitro. Noncumulative administration of SP produced dose-dependent increases in TSM tension. The mean (+/- SE) peak isometric tension (Tmax) with SP was 35.7 (+/- 6.2%) of the corresponding Tmax response to methacholine. The dose of agonist producing 50% of Tmax (ED50) was significantly lower for SP, averaging 1.8 (+/- 0.4) X 10(-7) M, vs. 1.7 (+/- 0.32) X 10(-6) M for methacholine. Blockade of both parasympathetic ganglia with hexamethonium (10(-4) M) and neural transmission with tetrodotoxin (1 microgram/ml) had no effect on the TSM response to SP. On the other hand, TSM contraction to an ED50 dose of SP was 1) augmented by a mean (+/- SE) of 470 (+/- 110%) following pretreatment with the cholinesterase inhibitor, neostigmine (10(-6) M);2) inhibited by a mean (+/- SE) of 35 (+/- 15%) with the cholinergic antagonist, atropine (10(-4) M); and 3) also inhibited by a mean (+/- SE) of 45 (+/- 11%) following inhibition of acetylcholine synthesis with hemicholinium-3 (10(-4) M). Antagonists to 5-hydroxytryptamine, alpha 1-adrenergic, and histamine receptor binding had no effect on TSM contraction with SP. In contrast, the SP antagonist, D-Pro2,D-Trp7,9-SP, markedly inhibited TSM contraction to SP. Our findings indicate that rabbit TSM is sensitive to SP and its contraction is in part mediated by a peripheral cholinergic action, likely involving the accelerated release of acetylcholine at the airway neuromuscular junction.

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