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Muscarinic receptors mediate negative and positive inotropic effects in mammalian ventricular myocardium: differentiation by agonists.

机译:毒蕈碱受体介导哺乳动物心室心肌的负性和正性正性肌力作用:激动剂的分化。

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摘要

The concentration-dependence of the negative and positive inotropic effect of choline esters and of oxotremorine was studied in isometrically contracting papillary muscles of the guinea-pig. The preparations were obtained from reserpine-pretreated animals and were electrically driven at a frequency of 0.2 Hz. In the presence of the phosphodiesterase inhibitor 3-isobutyl-1-methyl xanthine (IBMX, 100 mumol l-1), choline esters and oxotremorine produced concentration-dependent negative inotropic effects. Oxotremorine exhibited the highest negative inotropic potency (with a half-maximal effective concentration, EC50, of 20 nmol l-1) followed by carbachol (139 nmol l-1), methacholine (490 nmol l-1), acetylcholine in the presence of 10 mumol l-1 physostigmine (1.36 mumol l-1) and bethanechol (10 mumol l-1). Atropine was a competitive antagonist of the negative inotropic effects. Carbachol and oxotremorine decreased Vmax, overshoot and duration of slow Ca2+-dependent action potentials which had been elicited in the presence of 100 mumol l-1 IBMX. Choline esters produced a concentration-dependent positive inotropic effect. With an EC50 of 32 mumol l-1, carbachol was the most potent compound, followed by methacholine (35 mumol l-1), acetylcholine in the presence of 10 mumol l-1 physostigmine (46 mumol l-1) and bethanechol (142 mumol l-1). Compared to carbachol and methacholine which increased force by 100% of control, the increase induced by acetylcholine and bethanechol was only 64 and 58%, respectively. Atropine shifted the concentration-effect curves of all choline esters to higher concentrations. Choline esters caused intracellular Na+ activity to increase in the quiescent papillary muscle. This effect was reversed by atropine. Oxotremorine produced a small concentration-dependent positive inotropic effect (about 30% of the maximal effect of carbachol) which was resistant to atropine. Oxotremorine was a potent inhibitor of the positive inotropic effect of choline esters, and did not cause an increase in intracellular Na+ activity in the quiescent papillary muscle. The results show that muscarinic receptors of the ventricular myocardium mediate two inotropic effects, which are opposite in direction and differ in their concentration-dependence by a factor of 100. Although agonists differentiate between both inotropic effects, it is unknown whether the receptors involved represent receptor states or separate receptor subpopulations. The negative inotropic effect of choline esters and of oxotremorine can be best explained by adenylate cyclase inhibition.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:在豚鼠的等长收缩乳头肌中研究了胆碱酯和氧代苯丙胺的负性和正性肌力作用的浓度依赖性。该制剂获自利血平预处理的动物,并以0.2 Hz的频率电驱动。在磷酸二酯酶抑制剂3-异丁基-1-甲基黄嘌呤(IBMX,100μmol-1)的存在下,胆碱酯和氧代苯丁胺产生浓度依赖性的负性变力作用。 Oxotremorine表现出最高的负性肌力作用(最大半有效浓度EC50为20 nmol l-1),其次为在存在以下条件下的卡巴胆碱(139 nmol l-1),乙酰甲胆碱(490 nmol l-1),乙酰胆碱。 10μmol-1毒扁豆碱(1.36μmol-1)和苯乙二酚(10μmol-1)。阿托品是负性肌力作用的竞争性拮抗剂。 Carbachol和oxotremorine降低了Vmax,过冲和缓慢的Ca2 +依赖性动作电位的持续时间,这是在存在100 mumol 1-1 IBMX的情况下引起的。胆碱酯产生浓度依赖性的正性肌力作用。 EC50为32μmoll-1,卡巴胆碱是最有效的化合物,其次是甲胆碱(35μmoll-1),在存在10μmoll-1毒扁豆碱(46μmoll-1)和乙酰苯胺(142)时的乙酰胆碱。 mumol l-1)。相比于胆碱和乙酰甲胆碱,它们的作用力增加了100%,而乙酰胆碱和苯乙二酚所引起的增加分别仅为64%和58%。阿托品将所有胆碱酯的浓度-效应曲线移至更高的浓度。胆碱酯导致细胞内的Na +活性在静止的乳头肌中增加。阿托品逆转了这种作用。 Oxotremorine产生小的浓度依赖性正性肌力作用(约为卡巴胆碱最大作用的30%),对阿托品具有抗性。 Oxotremorine是胆碱酯类正性肌力作用的有效抑制剂,并且不会引起静态乳头肌细胞内Na +活性的增加。结果表明,心室心肌的毒蕈碱受体介导两种正性肌力作用,它们的方向相反,并且浓度依赖性相差100倍。尽管激动剂区分两种正性肌力作用,但尚不清楚所涉及的受体是否代表受体状态或单独的受体亚群。胆碱酯和oxotremorine的负性肌力作用可以通过抑制腺苷酸环化酶得到最好的解释。(摘要截短为400字)

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