P2 receptors in the central and peripheral nervous systems modulating sympathetic vasomotor tone

Vera Ralevic
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引用次数: 38

Abstract

Arterial pressure depends on the level of activity of sympathetic vasoconstrictor outflow to blood vessels. This activity is generated in the central nervous system, and involves inputs from a variety of brain regions projecting to sympathetic preganglionic neurones. Of especial interest are a group of neurones in the rostral ventrolateral medulla (RVLM), as they have been demonstrated to have a fundamental role in reflex regulation of the cardiovascular system, and in generation of tonic drive to sympathetic outflow. Sympathetic outflow to blood vessels is additionally modulated at sympathetic ganglia, and at the peripheral terminals of sympathetic nerves. This review considers the role of P2 purine receptors in this neural pathway. Ionotropic P2X receptors are expressed in the RVLM, in sympathetic ganglia, and at the sympathetic neuromuscular junction, and mediate fast excitatory neurotransmission, indicating a general role for ATP as a regulator of sympathetic vasomotor tone. P2Y receptors couple to G proteins and mediate slower signalling to ATP; they have been reported to inhibit prejunctionally neurotransmission at the peripheral terminals of sympathetic nerves, but little is known about their possible role in the central nervous system and in sympathetic ganglia.

中枢和外周神经系统中的P2受体调节交感血管舒缩张力
动脉压取决于向血管流出的交感血管收缩剂的活动水平。这种活动在中枢神经系统中产生,并涉及从各种大脑区域投射到交感神经节前神经元的输入。特别令人感兴趣的是一组位于延髓吻侧腹外侧(RVLM)的神经元,因为它们已被证明在心血管系统的反射调节和交感神经流出的强直驱动的产生中具有基本作用。交感神经向血管的流出在交感神经节和交感神经末梢处被额外调节。本文综述了P2嘌呤受体在这一神经通路中的作用。嗜电性P2X受体在RVLM、交感神经节和交感神经肌肉交界处表达,并介导快速兴奋性神经传递,表明ATP作为交感血管舒张性张力的调节剂的一般作用。P2Y受体与G蛋白偶联并介导较慢的ATP信号传导;据报道,它们可以抑制交感神经末梢的神经传递,但对它们在中枢神经系统和交感神经节中的可能作用知之甚少。
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