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一种不寻常的受体介导犬体内腺苷诱导的窦房结心动过缓。

An unusual receptor mediates adenosine-induced SA nodal bradycardia in dogs.

作者信息

Belloni F L, Belardinelli L, Halperin C, Hintze T H

机构信息

Department of Physiology, New York Medical College, Valhalla 10595.

出版信息

Am J Physiol. 1989 Jun;256(6 Pt 2):H1553-64. doi: 10.1152/ajpheart.1989.256.6.H1553.

Abstract

To characterize the receptor mediating the negative chronotropic effect of adenosine in dogs, experiments were performed on conscious dogs with chronically implanted cardiovascular instrumentation. Autonomic blockade was used to eliminate any reflex influences on heart rate. Intravenous bolus injections of various adenosine analogues caused dose-dependent, aminophylline-blockable reductions in heart rate with a potency order of 5'-(N-ethylcarboxyamido)-adenosine (NECA)-78:2-chloroadenosine-17:adenosine-1. Dipyridamole enhanced the potency of adenosine to equal that of 2-chloroadenosine. Moderately selective A1-receptor agonists N6-(L-2-phenylisopropyl)-adenosine (R-PIA) and N6-cyclohexyladenosine and an A2-selective agonist 2-phenylaminoadenosine (200 nmol/kg) had no negative chronotropic effect in the conscious dog. Adenosine and its analogues, including R-PIA, caused coronary vasodilatation at smaller doses than were required to slow the heart rate. The selective A1-adenosine receptor blocker xanthine amine congener (XAC) antagonized the negative chronotropic action of adenosine but did so nonselectively, as the coronary vasodilative and negative chronotropic actions of adenosine were antagonized equally well. The spontaneous contraction rate of isolated perfused dog right atrial preparations, which included the sinoatrial node, was reduced by intrasinoatrial node artery infusions of adenosine analogues with a potency ratio of NECA-100:adenosine-15:N6-cyclopentyladenosine-2.3:R-PIA-1. We conclude that the adenosine receptor mediating the negative chronotropic action of adenosine in the dog does not display the pharmacological characteristics of either typical A1- or A2-adenosine receptors. Instead, either a novel adenosine receptor or an A1-receptor with unusual agonist and antagonist binding properties appears to exist in the dog's sinoatrial node.

摘要

为了明确介导腺苷对犬负性变时作用的受体,我们对植入了长期心血管监测仪器的清醒犬进行了实验。采用自主神经阻断以消除对心率的任何反射性影响。静脉推注各种腺苷类似物可引起剂量依赖性、氨茶碱可阻断的心率降低,其效力顺序为5'-(N - 乙基甲酰胺基)-腺苷(NECA)-78:2 - 氯腺苷-17:腺苷-1。双嘧达莫增强了腺苷的效力,使其与2 - 氯腺苷相当。中度选择性A1受体激动剂N6-(L - 2 - 苯异丙基)-腺苷(R - PIA)和N6 - 环己基腺苷以及A2选择性激动剂2 - 苯氨基腺苷(200 nmol/kg)在清醒犬中没有负性变时作用。腺苷及其类似物,包括R - PIA,在引起心率减慢所需剂量以下即可引起冠状血管舒张。选择性A1腺苷受体阻滞剂黄嘌呤胺同类物(XAC)拮抗腺苷的负性变时作用,但无选择性,因为腺苷的冠状血管舒张和负性变时作用被同等程度地拮抗。包含窦房结的离体灌注犬右心房标本的自发收缩速率,通过在窦房结内动脉输注腺苷类似物而降低,其效力比为NECA - 100:腺苷-15:N6 - 环戊基腺苷-2.3:R - PIA - 1。我们得出结论,介导犬体内腺苷负性变时作用的腺苷受体不具有典型A1或A2腺苷受体的药理学特征。相反,犬的窦房结中似乎存在一种新型腺苷受体或具有异常激动剂和拮抗剂结合特性的A1受体。

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