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依诺昔酮和异丁基甲基黄嘌呤对离体血液灌注犬乳头肌收缩张力和环核苷酸水平的影响。

Effects of enoximone and isobutylmethylxanthine on contractile tension and cyclic nucleotide levels in isolated blood-perfused dog papillary muscle.

作者信息

Hsieh C P, Kariya T, Dage R C, Ruberg S J

出版信息

J Cardiovasc Pharmacol. 1987 Feb;9(2):230-6. doi: 10.1097/00005344-198702000-00017.

Abstract

The effects of enoximone (MDL 17,043) and 3-isobutyl-1-methylxanthine (IBMX) on developed tension, blood flow, and cyclic nucleotide levels were investigated in the isolated blood-perfused dog papillary muscle preparation. Intraarterial infusion of each agent, over 15 s, in doses ranging from 0.001 to 3 mg, produced a dose-dependent positive inotropic effect accompanied by increases in rate of contraction, rate of relaxation, and blood flow. The dose-response relationships for enoximone were always less steep than those for IBMX. Enoximone did not enhance automaticity at any dose, whereas the higher doses of IBMX (0.3, 1, and 3 mg) enhanced automaticity and produced arrhythmic preparations. Both agents produced increases in cyclic AMP during the peak positive inotropic effect (45 s); however, only IBMX produced an increase in cyclic GMP. The increase in cyclic AMP produced by enoximone lagged behind tension development by at least 15 s, whereas the increases in cyclic nucleotides produced by IBMX occurred concurrently with the development of the positive inotropic effect. The evaluation in cyclic AMP produced by enoximone is consistent with the reported property of this agent to inhibit specifically and selectively the particulate high-affinity cyclic AMP phosphodiesterase from dog heart, and supports a cyclic AMP-dependent mechanism of positive inotropism for enoximone.

摘要

在离体血液灌注的犬乳头肌标本中,研究了依诺昔酮(MDL 17,043)和3-异丁基-1-甲基黄嘌呤(IBMX)对已产生的张力、血流量和环核苷酸水平的影响。在15秒内动脉内输注每种药物,剂量范围为0.001至3毫克,产生剂量依赖性正性肌力作用,同时收缩速率、舒张速率和血流量增加。依诺昔酮的剂量反应关系总是比IBMX的更平缓。依诺昔酮在任何剂量下均未增强自律性,而较高剂量的IBMX(0.3、1和3毫克)增强了自律性并产生心律失常的标本。在正性肌力作用峰值(45秒)期间,两种药物均使环磷酸腺苷(cAMP)增加;然而,只有IBMX使环磷酸鸟苷(cGMP)增加。依诺昔酮产生的cAMP增加至少比张力发展滞后15秒,而IBMX产生的环核苷酸增加与正性肌力作用的发展同时发生。依诺昔酮产生的cAMP变化与该药物特异性和选择性抑制犬心脏微粒体高亲和力cAMP磷酸二酯酶的报道特性一致,并支持依诺昔酮正性肌力作用的cAMP依赖性机制。

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