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神经元型一氧化氮合酶衍生的一氧化氮对肾血流量和血管张力的调节作用。

Modulation of renal blood flow and vascular tone by neuronal nitric oxide synthase-derived nitric oxide.

作者信息

Toda Noboru, Okamura Tomio

机构信息

Department of Pharmacology, Shiga University of Medical Science, Otsu, Japan. n.toda.toyama-bldg @ orion.ocn.ne.jp

出版信息

J Vasc Res. 2011;48(1):1-10. doi: 10.1159/000317395. Epub 2010 Jul 6.

Abstract

Nitric oxide (NO) formed via neuronal nitric oxide synthase (nNOS) in renal vasculature and tissues and in the brain plays an important role in controlling renal hemodynamics, renal function, and systemic blood pressure. Activation of parasympathetic nitrergic nerves innervating renal vasculature contributes to vasodilatation in renal arteries and pre- and postglomerular arterioles, an increase in renal blood flow, and a decrease in vascular resistance. NO released from autonomic nitrergic nerves interferes with the release of norepinephrine from adrenergic nerve terminals or the amine actions on smooth muscle. The pre- or postjunctional mechanisms of NO actions participate in vasodilatation through a diminution of sympathetic vasoconstrictor influence. On the other hand, NO from neurons in the brain acts on the paraventricular nucleus of the hypothalamus and the rostral ventrolateral medulla and inhibits the central sympathetic nerve activity to the kidney, leading to renal vasodilatation and increased renal blood flow. The present article summarizes information concerning the renal blood flow and vascular tone through nNOS-derived NO produced in peripheral autonomic nerves and the brain. The nNOS-derived NO-cyclic GMP pathway would be an important target for the treatment of renal circulatory dysfunction and chronic kidney disease.

摘要

通过肾血管系统和组织以及大脑中的神经元型一氧化氮合酶(nNOS)生成的一氧化氮(NO)在控制肾血流动力学、肾功能和全身血压方面发挥着重要作用。支配肾血管系统的副交感神经能神经的激活有助于肾动脉以及肾小球前和肾小球后小动脉的血管舒张,肾血流量增加,血管阻力降低。自主神经能神经释放的NO会干扰去甲肾上腺素从肾上腺素能神经末梢的释放或其对平滑肌的胺类作用。NO作用的节前或节后机制通过减弱交感缩血管影响参与血管舒张。另一方面,来自大脑神经元的NO作用于下丘脑室旁核和延髓头端腹外侧,抑制对肾脏的中枢交感神经活动,导致肾血管舒张和肾血流量增加。本文总结了有关外周自主神经和大脑中产生的nNOS衍生的NO对肾血流量和血管张力的影响的信息。nNOS衍生的NO-环鸟苷酸途径可能是治疗肾循环功能障碍和慢性肾脏病的重要靶点。

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