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达唑氧苯对大鼠肠系膜血管收缩机制的抑制作用。

Inhibition of vasoconstrictor mechanisms by dazoxiben in the rat mesenteric vasculature.

作者信息

Li D M, De Garis R M, Dusting G J

出版信息

Eur J Pharmacol. 1985 Apr 16;110(3):351-6. doi: 10.1016/0014-2999(85)90563-1.

Abstract

Sympathetic neurotransmission can be modulated by prostaglandins in a number of tissues, but it is not known whether thromboxane A2 also influences neurotransmission. In this study, vasoconstrictor responses to electrical stimulation of the sympathetic nerves and to injection of noradrenaline were examined in the blood perfused mesentery of the rat in situ. The thromboxane synthetase inhibitor dazoxiben, infused into the perfusion circuit at 10-100 mumol/l, significantly inhibited constrictor responses to nerve stimulation and to injected noradrenaline and vasopressin. The cyclo-oxygenase inhibitor indomethacin (28 mumol/kg intravenously) had no effect on responses to nerve stimulation or noradrenaline, but pretreatment with indomethacin abolished the inhibitory effect of dazoxiben on vasoconstrictor responses. The thromboxane-mimetic (U46619, 10 nmol/l) slightly reduced responses to nerve stimulation (but not to noradrenaline), whereas prostacyclin (3-10 nmol/l) and PGE2 (3 nmol/l) markedly reduced responses both to nerve stimulation and to injections of noradrenaline. These prostanoids did not alter perfusion pressure at these concentrations. The data suggest that the inhibitory effect of dazoxiben on sympathetic neurotransmission is unlikely to be due directly to inhibition of thromboxane synthesis. Inhibition might result from diversion of endoperoxide metabolism to endogenous prostanoids that, in turn, inhibit activation of vasoconstrictor mechanisms.

摘要

交感神经传递可在多种组织中受到前列腺素的调节,但血栓素A2是否也影响神经传递尚不清楚。在本研究中,在大鼠原位血液灌注的肠系膜中,检测了对交感神经电刺激以及注射去甲肾上腺素的血管收缩反应。将血栓素合成酶抑制剂达唑氧苯以10 - 100 μmol/L的浓度注入灌注回路,可显著抑制对神经刺激以及注射去甲肾上腺素和血管加压素的收缩反应。环氧化酶抑制剂吲哚美辛(静脉注射28 μmol/kg)对神经刺激或去甲肾上腺素的反应没有影响,但用吲哚美辛预处理可消除达唑氧苯对血管收缩反应的抑制作用。血栓素类似物(U46619,10 nmol/L)略微降低了对神经刺激的反应(但对去甲肾上腺素无影响),而前列环素(3 - 10 nmol/L)和前列腺素E2(3 nmol/L)显著降低了对神经刺激以及注射去甲肾上腺素的反应。这些前列腺素在这些浓度下不会改变灌注压力。数据表明,达唑氧苯对交感神经传递的抑制作用不太可能直接归因于对血栓素合成的抑制。抑制可能是由于内过氧化物代谢转向内源性前列腺素,进而抑制血管收缩机制的激活所致。

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