Osborn John W, Foss Jason D
Department of Integrative Biology and Physiology, Medical School, University of Minnesota, Minneapolis, Minnesota, USA.
Compr Physiol. 2017 Mar 16;7(2):263-320. doi: 10.1002/cphy.c150047.
The objective of this review is to provide an in-depth evaluation of how renal nerves regulate renal and cardiovascular function with a focus on long-term control of arterial pressure. We begin by reviewing the anatomy of renal nerves and then briefly discuss how the activity of renal nerves affects renal function. Current methods for measurement and quantification of efferent renal-nerve activity (ERNA) in animals and humans are discussed. Acute regulation of ERNA by classical neural reflexes as well and hormonal inputs to the brain is reviewed. The role of renal nerves in long-term control of arterial pressure in normotensive and hypertensive animals (and humans) is then reviewed with a focus on studies utilizing continuous long-term monitoring of arterial pressure. This includes a review of the effect of renal-nerve ablation on long-term control of arterial pressure in experimental animals as well as humans with drug-resistant hypertension. The extent to which changes in arterial pressure are due to ablation of renal afferent or efferent nerves are reviewed. We conclude by discussing the importance of renal nerves, relative to sympathetic activity to other vascular beds, in long-term control of arterial pressure and hypertension and propose directions for future research in this field. © 2017 American Physiological Society. Compr Physiol 7:263-320, 2017.
本综述的目的是深入评估肾神经如何调节肾脏和心血管功能,重点是动脉血压的长期控制。我们首先回顾肾神经的解剖结构,然后简要讨论肾神经活动如何影响肾功能。文中还讨论了目前测量和量化动物及人类肾传出神经活动(ERNA)的方法。我们回顾了经典神经反射以及大脑的激素输入对ERNA的急性调节作用。随后,我们回顾了肾神经在正常血压和高血压动物(及人类)动脉血压长期控制中的作用,重点是利用动脉血压连续长期监测的研究。这包括回顾肾神经消融对实验动物以及耐药性高血压患者动脉血压长期控制的影响。文中还探讨了动脉血压变化在多大程度上归因于肾传入或传出神经的消融。我们在结论部分讨论了肾神经相对于其他血管床交感神经活动在动脉血压和高血压长期控制中的重要性,并提出了该领域未来研究的方向。© 2017美国生理学会。《综合生理学》7:263 - 320, 2017。