慢性心力衰竭交感神经兴奋的新机制。

Heart failure monitor Pub Date : 2002-01-01
Irving H Zucker, Rainer U Pliquett
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摘要

慢性心力衰竭(CHF)与各种调节激素的产生和分泌增加有关,这些激素最初是有益的,但当长期升高时就会变得有害。在CHF状态下发生的神经体液兴奋部分是由异常的抑制性心血管反射介导的,如动脉压力反射和心肺反射。此外,两种交感兴奋性反射已被证明在CHF中增强:动脉化学反射和心脏交感传入反射。虽然这些反射可能在CHF状态的交感神经兴奋中发挥作用,但在CHF中,各种激素的升高对交感神经流出有重要的中枢调节作用,并已被证明具有神经效应。这些包括血管紧张素II (Ang II)、一氧化氮(NO)和内皮素-1。事实上,实验动物数据表明,在调节交感神经流出的能力中,Ang II和NO之间存在着核心的互惠关系。这些物质也可能参与运动训练在CHF状态下的有益作用。运动训练降低交感神经活动和血浆Ang II,增强动脉压力反射功能。本文就心力衰竭时交感神经流出的神经激素和反射调节作一综述。虽然异常的反射调节可能预示着不良的结果,但新的治疗选择可能会从对CHF反射调节的更好理解中出现。
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Novel mechanisms of sympatho-excitation in chronic heart failure.

Chronic heart failure (CHF) is associated with an increase in the production and secretion of various regulatory hormones that are initially beneficial, but become deleterious when elevated for prolonged periods. The neurohumoral excitation that occurs in the CHF state is mediated, in part, by abnormal inhibitory cardiovascular reflexes, such as the arterial baroreflex and the cardiopulmonary reflex. In addition, two sympatho-excitatory reflexes have been shown to be enhanced in CHF: the arterial chemoreflex and the cardiac sympathetic afferent reflex. While these reflexes may play a role in the sympatho-excitation of the CHF state, there is an important central modulation of sympathetic outflow by a variety of hormones that are elevated in CHF and have been shown to have neural effects. These include angiotensin II (Ang II), nitric oxide (NO), and endothelin-1. In fact, experimental animal data suggest that a central reciprocal relationship exists between Ang II and NO in their ability to modulate sympathetic outflow. These substances may also participate in the beneficial effects of exercise training in the CHF state. Exercise training lowers sympathetic nerve activity and plasma Ang II, and enhances arterial baroreflex function. This review emphasizes the neurohormonal and reflex regulation of sympathetic outflow in heart failure. While abnormal reflex regulation may predict a poor outcome, new treatment options may emerge from a better understanding of reflex regulation in CHF.

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