Renal Sympathetic Denervation and Renal Physiology

医学 去神经支配 交感神经系统 血压 肾血流 肾交感神经失神经 反射 肾功能 内科学 传出的 高血压的病理生理学 内分泌学 自主神经系统 心脏病学 心率 抵抗性高血压 传入的
作者
Rigas Kalaitzidis,Despina Karasavvidou,Kostas C. Siamopoulos
出处
期刊:Current Clinical Pharmacology [Bentham Science]
卷期号:8 (3): 189-196 被引量:6
标识
DOI:10.2174/1574884711308030004
摘要

The sympathetic nervous system has a profound effect on the kidney’s ability to regulate blood pressure and, vice versa, the kidney has an important effect on the overall sympathetic tone. As a result, renal sympathetic nerves are crucial for initiation and the maintenance of systemic hypertension. It is fairly well established that efferent renal sympathetic nerve activity contributes significantly to homeostatic regulation of renal blood flow, glomerular filtration rate, renal tubular epithelial cell solute and water transport, and hormonal release. The afferent nerves from the kidney activate central sympathetic nervous system activity, participate in a reflex control system via reno-renal reflexes and are involved in cardiovascular regulation and pathogenesis of hypertension in CKD patients whose kidney ischemia also seems to play a key role. Sympathetic nerve modulation in hypertension had been considered as a therapeutic strategy long before the advent of modern pharmacological therapies. Renal sympathetic denervation with a percutaneous, catheter-based approach results in significant and sustained blood pressure reduction in patients with resistant hypertension. This procedure has also beneficial effects in multiple organs function. However, renal physiology and the long term observed benefits with the use of renal sympathetic denervation have not completely elucidated. Keywords: Hypertension, renal physiology, renal sympathetic denervation.
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