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[迷走神经对心脏功能的调控及对缺血心肌的迷走神经保护作用]

[Vagal control of cardiac functions and vagal protection of ischemic myocardium].

作者信息

Zang Wei-Jin, Sun Lei, Yu Xiao-Jiang, Lv Jun, Chen Li-Na, Liu Bing-Hang

机构信息

Division of Cardiovascular Physiology and Pharmacology, Department of Pharmacology, School of Medicine, Key Laboratory of Environment and Genes Related to Diseases, Ministry of Education, Xi'an Jiaotong University, Xi'an 710061, China.

出版信息

Sheng Li Xue Bao. 2008 Aug 25;60(4):443-52.

Abstract

The physiological activities of the cardiovascular system are under the control of autonomic nervous system (ANS). Recent researches have found that autonomic dysfunction, especially the withdrawal of vagal activity, was closely related to the etiology, course and prognosis of cardiovascular disease (CVD). Based on the current status and our achievements in this area, we discuss vagal regulation of different parts of the heart and the mechanism of vagal protection of myocardium. Using a force transducer and standard microelectrodes recording technology, we found that the vagus nerve transmitter--acetylcholine (ACh) had direct effects on ventricular myocytes in mammals: It inhibited the contractility and shortened the action potential duration of cardiac myocytes. We proved the existence of muscarinic receptors and vagal nerves innervation in ventricle with histochemical staining and molecular biological methods. Furthermore, ACh-activated potassium channel (KACh) was found in the ventricles of some animals by patch-clamp. Fade of the current (IK.ACh) to ACh in atrium was found in previous research, which was related to the muscarinic receptors and phosphorylation of G protein or potassium channel. However, the mechanism of the fade in ventricle needs to be further investigated. Combined with autonomic nervous evaluation methods (heart rate variability analysis) and relevant animal models, we studied the regulation of ANS during normal and morbid state, and proved the age-associated changes and compensatory effects of vagal control of hemodynamics after unilateral vagotomy. By increasing the vagal tension (ACh induced-preconditioning/postconditioning, aerobic exercise, beta receptor antagonist), we demonstrated protective effects of the vagus nerve on the ischemic myocardium and mechanism of the cholinergic anti-inflammatory effects on the inflammatory reaction induced by reperfusion injury. Evaluating cardiac autonomic nervous regulation and improving balance between sympathetic and vagal nerve will provide an important basis for the prevention and treatment of CVD.

摘要

心血管系统的生理活动受自主神经系统(ANS)的控制。最近的研究发现,自主神经功能障碍,尤其是迷走神经活动的减退,与心血管疾病(CVD)的病因、病程及预后密切相关。基于该领域的现状和我们取得的成果,我们讨论了迷走神经对心脏不同部位的调节以及迷走神经对心肌的保护机制。使用力传感器和标准微电极记录技术,我们发现迷走神经递质——乙酰胆碱(ACh)对哺乳动物心室肌细胞有直接作用:它抑制心肌收缩力并缩短心肌细胞的动作电位时程。我们用组织化学染色和分子生物学方法证明了心室中存在毒蕈碱受体和迷走神经支配。此外,通过膜片钳技术在一些动物的心室中发现了ACh激活的钾通道(KACh)。先前的研究发现心房中ACh引起的电流(IK.ACh)衰减与毒蕈碱受体以及G蛋白或钾通道的磷酸化有关。然而心室中电流衰减的机制仍需进一步研究。结合自主神经评估方法(心率变异性分析)和相关动物模型,我们研究了正常和病态状态下ANS的调节,并证明了单侧迷走神经切断术后迷走神经对血流动力学控制的年龄相关变化和代偿作用。通过增加迷走神经张力(ACh诱导预处理/后处理、有氧运动、β受体拮抗剂),我们证明了迷走神经对缺血心肌的保护作用以及胆碱能抗炎作用对再灌注损伤诱导的炎症反应的机制。评估心脏自主神经调节并改善交感神经和迷走神经之间的平衡将为CVD的防治提供重要依据。

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