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去除内皮对大鼠离体肠系膜动脉和股动脉中神经元释放的5-羟色胺和去甲肾上腺素的血管收缩反应的影响。

Effect of endothelium removal on the vasoconstrictor response to neuronally released 5-hydroxytryptamine and noradrenaline in the rat isolated mesenteric and femoral arteries.

作者信息

Urabe M, Kawasaki H, Takasaki K

机构信息

Department of Pharmacology, Miyazaki Medical College, Japan.

出版信息

Br J Pharmacol. 1991 Jan;102(1):85-90. doi: 10.1111/j.1476-5381.1991.tb12136.x.

Abstract
  1. The role of the vascular endothelium in the vasoconstrictor response to transmural nerve stimulation (TNS) was studied in isolated ring segments of rat mesenteric and femoral arteries. 2. In both types of artery, TNS (1 to 16 Hz) produced frequency-dependent vasoconstriction, which was abolished by 100 nM tetrodotoxin, 10 microM guanethidine or 10 nM prazosin, indicating that the response was mediated by endogenous noradrenaline (NA) released from noradrenergic nerves. NA-mediated vasoconstriction in response to TNS was significantly potentiated by removal of the endothelium. 3. In the presence of 10 nM prazosin, the reduced vasoconstriction in response to TNS was restored by incubation with 10 microM 5-hydroxytryptamine (5-HT) for 20 min. Restoration of the response to TNS was markedly attenuated by treatment with 10 nM ketanserin, 100 nM tetrodotoxin, or 10 microM guanethidine, indicating that the restored response was mediated by 5-HT released from noradrenergic nerves. Vasoconstriction mediated by 5-HT in response to TNS was not modified by removal of the endothelium. 4. In both types of artery with intact endothelium, treatment with 3 microM methylene blue potentiated the NA-mediated contractile response to TNS, but did not potentiate the 5-HT-mediated response to TNS. 5. In both types of artery, the contractile responses to exogenous NA and 5-HT were potentiated by removal of the endothelium. 6. These results suggest that endothelial cells regulate neurogenic vasoconstriction by releasing endothelium-derived relaxing factor. Furthermore, it appears likely that the response to neuronally released 5-HT is not affected by the endothelium.
摘要
  1. 在大鼠肠系膜动脉和股动脉的离体环段中研究了血管内皮在对跨壁神经刺激(TNS)的血管收缩反应中的作用。2. 在这两种类型的动脉中,TNS(1至16赫兹)产生频率依赖性血管收缩,100纳摩尔河豚毒素、10微摩尔胍乙啶或10纳摩尔哌唑嗪可消除这种收缩,这表明该反应是由去甲肾上腺素能神经释放的内源性去甲肾上腺素(NA)介导的。去除内皮后,对TNS的NA介导的血管收缩明显增强。3. 在存在10纳摩尔哌唑嗪的情况下,用10微摩尔5-羟色胺(5-HT)孵育20分钟可恢复对TNS的血管收缩减弱。用10纳摩尔酮色林、百纳摩尔河豚毒素或10微摩尔胍乙啶处理可显著减弱对TNS反应的恢复,这表明恢复的反应是由去甲肾上腺素能神经释放的5-HT介导的。去除内皮不会改变5-HT介导的对TNS的血管收缩。4. 在两种内皮完整的动脉中,用3微摩尔亚甲蓝处理可增强NA介导的对TNS的收缩反应,但不会增强5-HT介导的对TNS的反应。5. 在两种类型的动脉中,去除内皮可增强对外源性NA和5-HT的收缩反应。6. 这些结果表明,内皮细胞通过释放内皮衍生的舒张因子来调节神经源性血管收缩。此外,对神经元释放的5-HT的反应似乎不受内皮的影响。

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