首页> 美国卫生研究院文献>British Journal of Pharmacology and Chemotherapy >Species-related differences in inotropic effects of angiotensin II in mammalian ventricular muscle: receptors subtypes and phosphoinositide hydrolysis.
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Species-related differences in inotropic effects of angiotensin II in mammalian ventricular muscle: receptors subtypes and phosphoinositide hydrolysis.

机译:与物种相关的血管紧张素II在哺乳动物心室肌的正性变力作用方面的差异:受体亚型和磷酸肌醇水解。

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摘要

1. Experiments were carried out to clarify the mechanisms responsible for variations in the positive inotropic effect (PIE) of angiotensin II (AII) on ventricular muscles from various mammals. We examined the density of AII receptors, the relative proportions of receptor subtypes and the acceleration of the hydrolysis of phosphoinositide that was induced by AII, as well as the PIE of AII in ventricular muscles from the rabbit, dog, rat and ferret. 2. In the rabbit, AII (1 microM) in the presence of bupranolol (0.3 microM) and prazosin (0.1 microM) elicited a concentration-dependent PIE, which was antagonized by a selective AT1 subtype antagonist, losartan, but not by an AT2 antagonist, PD123319. AII did not have any inotropic effects in ventricular muscles from the dog, rat and ferret. 3. Specific high-affinity binding of [125I]-AII, with a similar Kd value in each case (1-2 nM), was observed with membrane fractions derived from ventricular muscle of all four species tested. 4. In the rabbit, losartan and PD123319 each displaced approximately 50% of [125I]-AII specific binding having high affinity for the receptors, and indicating that AT1 and AT2 subtypes were present in equal numbers. In the other species the AT1 subtype of receptors was predominant. 5. In all four species AII caused a concentration-dependent acceleration of the hydrolysis of phosphoinositide in ventricular slices that had been prelabelled with myo-[3H]-inositol. 6. The results indicate that the signal-transduction process distal to acceleration of the hydrolysis of phosphoinositide may be responsible for the wide range of species variations in the inotropic action of AII on mammalian ventricular myocardium.
机译:1.进行实验以阐明引起血管紧张素II(AII)对来自各种哺乳动物的心室肌的正性肌力作用(PIE)变化的机制。我们检查了AII受体的密度,受体亚型的相对比例以及AII诱导的磷酸肌醇水解的加速,以及兔,狗,大鼠和雪貂心室肌中AII的PIE。 2.在兔子中,AII(1 microM)在存在丁丙诺尔(0.3 microM)和哌唑嗪(0.1 microM)的情况下引发了浓度依赖性PIE,其被选择性AT1亚型拮抗剂洛沙坦拮抗,但不受AT2拮抗拮抗剂,PD123319。 AII对狗,大鼠和雪貂的心室肌无正性肌力作用。 3.观察到[125I] -AII的特异高亲和力结合,每种情况下Kd值均相似(1-2 nM),并且来自所有四种受试动物的心室肌的膜部分。 4.在兔子中,氯沙坦和PD123319各自置换了对受体具有高亲和力的[125I] -AII特异性结合的约50%,表明AT1和AT2亚型以相同数量存在。在其他物种中,受体的AT1亚型占主导。 5.在所有四个物种中,AII都会导致以肌醇[[3H]-肌醇预先标记的心室切片中磷酸肌醇水解的浓度依赖性加速。 6.结果表明,磷酸肌醇水解加速的信号转导过程可能是AII对哺乳动物心室心肌的变力作用中各种物种变化的原因。

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