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内皮素-1通过激活ETB受体增强小鼠气管中胆碱能神经介导的收缩作用。

Potentiation by endothelin-1 of cholinergic nerve-mediated contractions in mouse trachea via activation of ETB receptors.

作者信息

Henry P J, Goldie R G

机构信息

Department of Pharmacology, University of Western Australia, Nedlands.

出版信息

Br J Pharmacol. 1995 Feb;114(3):563-9. doi: 10.1111/j.1476-5381.1995.tb17176.x.

Abstract
  1. We have previously shown that endothelin-1-induced contraction of mouse isolated tracheal smooth muscle was mediated via both ETA and ETB receptors. In the current study, we have investigated endothelin-1-induced potentiation of cholinergic nerve-mediated contractions in mouse isolated trachea and have characterized pharmacologically the endothelin receptors mediating this response. 2. Electrical field stimulation (EFS; 70 V, 0.5 ms duration, 10s train, 0.1-60 Hz) of mouse isolated trachea caused frequency-dependent, monophasic contractions (magnitude of contraction of 60 Hz was 56 +/- 4% Cmax (n = 6), where Cmax is the contractile response to 10 microM carbachol). EFS-induced contractions were abolished by either 0.1 microM atropine or 3 microM tetrodotoxin, but were not affected by 1 microM hexamethonium, indicating that they were induced by stimulation of postganglionic cholinergic nerves. In contrast, contractions induced by exogenously applied acetylcholine were inhibited by atropine, but not by either tetrodotoxin or hexamethonium. 3. The ETB receptor-selective agonist, sarafotoxin S6c, caused marked concentration-dependent potentiation of EFS-induced contractions in mouse isolated tracheal segments. At 0.1 nM, sarafotoxin S6c exerted no direct contractile effect, but significantly increased a standard EFS-induced contraction of 20% Cmax by 8 +/- 2% Cmax (i.e. 1.4 fold, n = 5, P < 0.05). At higher concentrations, 10 nM sarafotoxin S6c induced a large, transient contraction (peak response of 74 +/- 2% Cmax at 10 min; 3 +/- 2% Cmax at 45 min) and enhanced the standard EFS-induced contraction by 30 +/- 4% Cmax (i.e. 2.5 fold, n = 5, P < 0.01). In contrast, 10 nM sarafotoxin S6c did not enhance contractile responses to exogenously applied acetylcholine(n = 6).4. Endothelin-1 also modulated EFS-induced contractions. At 0.1 nM, endothelin-1 exerted no direct contractile effect, but significantly increased the standard EFS-induced contraction of 20%Cmax, by 7 +/- 2%Cma, (i.e. 1.35 fold, n = 5, P<0.05). At 1 nM, endothelin-l induced a small, sustained contraction(16 +/- 3%Cmo) and increased the standard EFS-induced contraction by 19 +/- 2%Cmax (i.e. 1.95 fold,n = 5, P <0.01). Finally, 10 nM endothelin-1 induced a large, sustained contraction (98 +/- 8%Cma), but the EFS-induced contraction was significantly reduced from 20%Cmax to 6 +/- 4%Cmax (n = 6, P <0.05).In contrast, in the presence of 3 microM BQ-123 (ETA receptor-selective antagonist), 1O nM endothelin-1 induced a transient contraction mediated via ETB receptors (peak response of 59 +/- 10%Cmax at 10 min;8 +/- 2%Cmax at 45 min). Under these conditions, the standard EFS-induced contraction was increased by 26+/- l%Cmax (i.e. 2.3 fold, n = 6, P<0.01).5. The potentiation of EFS-induced contractions produced by 1 nM endothelin-1 was not mediated by ETA receptors, since 3 microM BQ-123 did not diminish this effect (n = 6). Furthermore, 1 nM endothelin-1 did not potentiate EFS-induced contractions in preparations in which the function of the ETB receptor effector system had been attenuated by desensitization (n = 6).6. In summary, endothelin-1 potentiates cholinergic nerve-mediated contractions in mouse isolated trachea, apparently by activating prejunctional ETB receptors. This neuronal pathway offers an additional mechanism through which endothelin-1 may elevate bronchomotor tone.
摘要
  1. 我们之前已经表明,内皮素-1诱导的小鼠离体气管平滑肌收缩是通过ETA和ETB受体介导的。在本研究中,我们研究了内皮素-1对小鼠离体气管中胆碱能神经介导的收缩的增强作用,并从药理学角度对介导该反应的内皮素受体进行了表征。2. 对小鼠离体气管进行电场刺激(EFS;70V,0.5ms持续时间,10s串刺激,0.1 - 60Hz)可引起频率依赖性的单相收缩(60Hz时的收缩幅度为56±4%Cmax(n = 6),其中Cmax是对10μM卡巴胆碱的收缩反应)。EFS诱导的收缩可被0.1μM阿托品或3μM河豚毒素消除,但不受1μM六甲铵的影响,这表明它们是由节后胆碱能神经的刺激所诱导的。相比之下,外源性应用乙酰胆碱诱导的收缩可被阿托品抑制,但不受河豚毒素或六甲铵的影响。3. ETB受体选择性激动剂,沙拉毒素S6c,在小鼠离体气管段中引起EFS诱导收缩的显著浓度依赖性增强。在0.1nM时,沙拉毒素S6c没有直接的收缩作用,但显著增加了标准的20%Cmax的EFS诱导收缩,增加了8±2%Cmax(即1.4倍,n = 5,P < 0.05)。在更高浓度下,10nM沙拉毒素S6c诱导了一个大的、短暂的收缩(10分钟时的峰值反应为74±2%Cmax;45分钟时为3±2%Cmax),并将标准的EFS诱导收缩增强了30±4%Cmax(即2.5倍,n = 5,P < 0.01)。相比之下,10nM沙拉毒素S6c没有增强对外源性应用乙酰胆碱的收缩反应(n = 6)。4. 内皮素-1也调节EFS诱导的收缩。在0.1nM时,内皮素-1没有直接的收缩作用,但显著增加了标准的20%Cmax的EFS诱导收缩,增加了7±2%Cmax(即1.35倍,n = 5,P < 0.05)。在1nM时,内皮素-1诱导了一个小的、持续的收缩(16±3%Cmax),并将标准的EFS诱导收缩增加了19±2%Cmax(即1.95倍,n = 5,P < 0.01)。最后,10nM内皮素-1诱导了一个大的、持续的收缩(98±8%Cmax),但EFS诱导的收缩从20%Cmax显著降低至6±4%Cmax(n = 6,P < 0.05)。相比之下,在存在3μM BQ - 123(ETA受体选择性拮抗剂)的情况下,10nM内皮素-1诱导了通过ETB受体介导的短暂收缩(10分钟时的峰值反应为59±10%Cmax;45分钟时为8±2%Cmax)。在这些条件下,标准的EFS诱导收缩增加了26±1%Cmax(即2.3倍,n = 6,P < 0.01)。5. 1nM内皮素-1产生的EFS诱导收缩的增强不是由ETA受体介导的,因为3μM BQ - 123并没有减弱这种作用(n = 6)。此外,在ETB受体效应系统功能因脱敏而减弱的制剂中,1nM内皮素-1并没有增强EFS诱导的收缩(n = 6)。6. 总之,内皮素-1明显通过激活节前ETB受体增强小鼠离体气管中胆碱能神经介导的收缩。这种神经途径提供了一种额外的机制,通过该机制内皮素-1可能升高支气管运动张力。

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