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低钾溶液诱导的收缩及高血压和正常血压大鼠血管平滑肌中的钾松弛

Contractions induced by potassium-free solution and potassium relaxation in vascular smooth muscle of hypertensive and normotensive rats.

作者信息

Arvola P, Pörsti I, Vuorinen P, Pekki A, Vapaatalo H

机构信息

Department of Biomedical Sciences, University of Tampere, Finland.

出版信息

Br J Pharmacol. 1992 May;106(1):157-65. doi: 10.1111/j.1476-5381.1992.tb14309.x.

Abstract
  1. Vascular contractions induced by K(+)-free solution and relaxation responses following the return of K+ to the organ bath were studied in mesenteric arterial rings from spontaneously hypertensive rats (SHR) and normotensive Wistar-Kyoto rats (WKY) with particular focus on the role of vascular adrenergic nerve-endings and endothelium. 2. In endothelium-denuded rings the omission of K+ from the incubation medium resulted in gradual contractions, the rate of which was slower in SHR than WKY. Nifedipine (1 microM) inhibited the contractions more effectively in SHR than WKY. 3. Adrenergic denervation in vitro with 6-hydroxydopamine reduced the contractions induced by the K(+)-free medium in endothelium-denuded rings. The remaining contractions after denervation were markedly greater in SHR than WKY. 4. The presence of intact vascular endothelium attenuated the K(+)-free contractions in both strains, the attenuation being smaller in SHR than WKY. NG-nitro-L-arginine methyl ester (L-NAME, 0.1 mM) and methylene blue (10 microM), but not indomethacin (10 microM), abolished the attenuating effect of endothelium on the K(+)-free contractions. L-Arginine (1 mM) reversed the effect of L-NAME in WKY but not in SHR. 5. The re-addition of K+ after full K(+)-free contractions dose-dependently relaxed the rings. The rate of this K(+)-induced relaxation was significantly slower in SHR than WKY at all K+ concentrations (0.1-5.9 mM) studied, whether the endothelium or functioning adrenergic nerve-endings were present or not. Ouabain (1 mM) totally inhibited the K+ relaxation in SHR but only partially in WKY.6. Vascular smooth muscle contractions induced by high concentrations of potassium were comparable between the strains. The EC50 for noradrenaline-induced contractions was lower in SHR than WKY, but the maximal forces did not differ significantly.7. In conclusion, the contractile response in K+-free solution more clearly differentiates vascular rings from SHR and WKY than the responses induced by the classical contractile agents noradrenaline and high concentrations of potassium. The depressant effect of the presence of intact endothelium on the K+-free contractions, which was smaller in SHR than WKY, is mediated via the endothelium-derived relaxing factor. Neurotransmitter release from vascular adrenergic nerve-endings participates less in the K+-free contractile response in SHR than WKY. Moreover, the contractile response is more dependent on calcium entry through nifedipine-sensitive calcium channels in SHR than WKY. The greater K+-free contractions of denervated endothelium-denuded rings and the reduced K+ relaxation rate in SHR when compared to WKY suggest increased cell membrane permeability and decreased activity of vascular Na+, K+-ATPase, respectively, in this type of genetic hypertension.
摘要
  1. 研究了自发性高血压大鼠(SHR)和正常血压的Wistar-Kyoto大鼠(WKY)肠系膜动脉环中无钾溶液诱导的血管收缩以及钾离子重新加入器官浴后的舒张反应,特别关注血管肾上腺素能神经末梢和内皮的作用。2. 在去内皮的血管环中,孵育培养基中钾离子的缺失导致逐渐收缩,SHR的收缩速率比WKY慢。硝苯地平(1微摩尔)在SHR中比在WKY中更有效地抑制收缩。3. 用6-羟基多巴胺进行体外肾上腺素能去神经支配可减少去内皮血管环中无钾培养基诱导的收缩。去神经支配后剩余的收缩在SHR中比在WKY中明显更大。4. 完整血管内皮的存在减弱了两种品系中无钾收缩,SHR中的减弱程度比WKY小。NG-硝基-L-精氨酸甲酯(L-NAME,0.1毫摩尔)和亚甲蓝(10微摩尔),但吲哚美辛(10微摩尔)不能消除内皮对无钾收缩的减弱作用。L-精氨酸(1毫摩尔)可逆转L-NAME对WKY的作用,但对SHR无效。5. 在完全无钾收缩后重新加入钾离子可使血管环剂量依赖性舒张。在所有研究的钾离子浓度(0.1 - 5.9毫摩尔)下,无论有无内皮或有功能的肾上腺素能神经末梢,SHR中这种钾离子诱导的舒张速率均明显比WKY慢。哇巴因(1毫摩尔)完全抑制SHR中的钾离子舒张,但仅部分抑制WKY中的。6. 高浓度钾诱导的血管平滑肌收缩在两种品系之间相当。去甲肾上腺素诱导收缩的半数有效浓度(EC50)在SHR中比在WKY中低,但最大力量无显著差异。7. 总之,与经典收缩剂去甲肾上腺素和高浓度钾诱导的反应相比,无钾溶液中的收缩反应更能清楚地区分SHR和WKY的血管环。完整内皮存在对无钾收缩的抑制作用在SHR中比在WKY中小,是通过内皮源性舒张因子介导的。血管肾上腺素能神经末梢释放的神经递质在SHR的无钾收缩反应中比在WKY中参与较少。此外,与WKY相比,SHR中的收缩反应更依赖于通过硝苯地平敏感钙通道的钙内流。与WKY相比,去神经支配的去内皮血管环中更大的无钾收缩以及SHR中降低的钾离子舒张速率分别表明在这种遗传性高血压中细胞膜通透性增加和血管钠钾ATP酶活性降低。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61e8/1907449/86829720bf1a/brjpharm00218-0167-a.jpg

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