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乙酰胆碱、A23187和缓激肽在豚鼠离体灌注心脏中的血管舒张作用与前列环素无关。

Vasodilator actions of acetylcholine, A23187 and bradykinin in the guinea-pig isolated perfused heart are independent of prostacyclin.

作者信息

Stewart A G, Piper P J

机构信息

Department of Pharmacology, Royal College of Surgeons of England, London.

出版信息

Br J Pharmacol. 1988 Oct;95(2):379-84. doi: 10.1111/j.1476-5381.1988.tb11656.x.

Abstract
  1. The involvement of prostacyclin (PGI2) in the vasodilator responses to acetylcholine (ACh), A23187 and bradykinin (Bk) has been investigated in guinea-pig, isolated, Krebs-perfused hearts. 2. ACh (0.01-10 nmol), A23187 (0.1-1.0 nmol) and Bk (0.3-10 pmol) each elicited dose-related and shortlasting (approximately 2 min) reductions in perfusion pressure. Larger maximal responses were obtained in preparations with coronary vascular tone elevated by platelet-activating factor (100 pmol) than in preparations at basal perfusion pressure. 3. Bk and A23187 elicited dose-related increases in the generation of PGI2 as measured by its chemically-stable breakdown product, 6-oxo-PGF1 alpha. Indomethacin (2.8 microM) prevented both basal and the stimulated generation of 6-oxo-PGF1 alpha, whereas the magnitudes of the vasodilator responses were unaffected. 4. Attempts to identify the release of vasodilator materials by on-line superfusion bioassay of cardiac effluent were unsuccessful, indicating a possible role for a labile vasodilator such as endothelium-dependent relaxing factor (EDRF). In addition, the inhibitors of EDRF action/production, mepacrine (3 microM) or diethylcarbamazine (300 microM), attenuated vasodilator responses to ACh without altering those to the endothelium-independent vasodilator, verapamil (1 nmol). 5. Haemoglobin (10 microM) reduced vasodilator responses to ACh, Bk and verapamil and abolished those induced by A23187. Inhibition of the endothelium-independent vasodilator, verapamil, was significantly less than that for the other compounds. 6. The present data indicate the existence of an indomethacin-resistant vasodilator mechanism in the coronary microcirculation in response to ACh, A23187 and Bk. EDRF is a candidate for mediating these responses; however, a direct vasodilator action of these substances cannot be excluded.
摘要
  1. 研究了前列环素(PGI2)在豚鼠离体Krebs灌注心脏中对乙酰胆碱(ACh)、A23187和缓激肽(Bk)的血管舒张反应中的作用。2. ACh(0.01 - 10 nmol)、A23187(0.1 - 1.0 nmol)和Bk(0.3 - 10 pmol)均引起灌注压的剂量相关且短暂(约2分钟)的降低。与基础灌注压下的标本相比,用血小板活化因子(100 pmol)升高冠状动脉血管张力的标本获得了更大的最大反应。3. 如通过其化学稳定的分解产物6 - 氧代 - PGF1α所测,Bk和A23187引起PGI2生成的剂量相关增加。吲哚美辛(2.8 microM)可阻止基础和刺激状态下6 - 氧代 - PGF1α的生成,而血管舒张反应的幅度未受影响。4. 通过对心脏流出物进行在线超灌流生物测定来鉴定血管舒张物质的释放未成功,这表明一种不稳定的血管舒张剂如内皮依赖性舒张因子(EDRF)可能起作用。此外,EDRF作用/产生的抑制剂美帕林(3 microM)或二乙氨基甲嗪(300 microM)减弱了对ACh的血管舒张反应,而未改变对非内皮依赖性血管舒张剂维拉帕米(1 nmol)的反应。5. 血红蛋白(10 microM)降低了对ACh、Bk和维拉帕米的血管舒张反应,并消除了由A23187诱导的反应。对非内皮依赖性血管舒张剂维拉帕米的抑制作用明显小于对其他化合物的抑制作用。6. 目前的数据表明,在冠状动脉微循环中存在一种对吲哚美辛耐药的血管舒张机制,以响应ACh、A23187和Bk。EDRF是介导这些反应的一个候选者;然而,不能排除这些物质的直接血管舒张作用。

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