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心肌缺血期间心脏交感传入神经介导的反射:腺苷的作用

Reflexes mediated by cardiac sympathetic afferents during myocardial ischaemia: role of adenosine.

作者信息

Thames M D, Dibner-Dunlap M E, Minisi A J, Kinugawa T

机构信息

Department of Medicine, Case Western Reserve University, Cleveland, Ohio, USA.

出版信息

Clin Exp Pharmacol Physiol. 1996 Aug;23(8):709-14. doi: 10.1111/j.1440-1681.1996.tb01763.x.

Abstract
  1. Myocardial ischaemia and infarction activate vagal and sympathetic sensory endings in the ischaemic myocardium, resulting in powerful reflex effects. The vagal afferents are either mechano- or chemosensitive, whereas sympathetic afferents may be mechano-, chemosensitive or both. 2. Activation of vagal afferents results in sympathoinhibitory, cardioinhibitory, vasodepressor responses. Cardiac sympathetic afferents activated during myocardial ischaemia mediate sympathoexcitatory, vasoconstrictor cardioaccelerator responses. 3. The focus of the present review is on the activation of sympathetic afferents by myocardial ischaemia and on the resulting reflex responses that they mediate. 4. These endings are more likely to be activated as the degree of ischaemia progresses from subendocardial towards transmural. They are evenly distributed between the anterior and inferoposterior wall. Although it has been suggested that these endings are activated by bradykinin, recent evidence indicates that they are activated by adenosine released from the ischaemic myocardium. Results from our laboratory indicate that this effect is due to the activation of adenosine A1, but not adenosine A2 receptors. 5. Activation of ventricular vagal and sympathetic afferent fibres during myocardial ischaemia in humans is responsible for the autonomic changes observed and, in the case of the sympathetic afferents, for the sensation of angina pectoris.
摘要
  1. 心肌缺血和梗死会激活缺血心肌中的迷走神经和交感神经感觉末梢,从而产生强大的反射效应。迷走神经传入纤维对机械刺激或化学刺激敏感,而交感神经传入纤维可能对机械刺激、化学刺激敏感或两者皆敏感。2. 迷走神经传入纤维的激活会导致交感抑制、心脏抑制、血管减压反应。心肌缺血期间激活的心脏交感神经传入纤维介导交感兴奋、血管收缩、心脏加速反应。3. 本综述的重点是心肌缺血对交感神经传入纤维的激活以及由此介导的反射反应。4. 随着缺血程度从心内膜下向透壁发展,这些末梢更有可能被激活。它们在前壁和下后壁之间均匀分布。尽管有人认为这些末梢是由缓激肽激活的,但最近的证据表明它们是由缺血心肌释放的腺苷激活的。我们实验室的结果表明,这种效应是由于腺苷A1受体而非腺苷A2受体的激活。5. 人类心肌缺血期间心室迷走神经和交感神经传入纤维的激活是观察到的自主神经变化的原因,就交感神经传入纤维而言,也是心绞痛感觉的原因。

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