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心血管和代谢疾病中血管紧张素 - 交感神经系统的相互作用

Angiotensin-sympathetic system interactions in cardiovascular and metabolic disease.

作者信息

Mancia Giuseppe, Dell'Oro Raffaella, Quarti-Trevano Fosca, Scopelliti Francesco, Grassi Guido

机构信息

Clinica Medica, Dipartimento Universitario di Medicina Clinica, Prevenzione e Biotecnologie Sanitarie, Ospedale S. Gerardo dei Tintori (Monza), Università Milano Bicocca, Milan, Italy.

出版信息

J Hypertens Suppl. 2006 Mar;24(1):S51-6. doi: 10.1097/01.hjh.0000220407.84363.fb.

Abstract

BACKGROUND

Blood pressure, as well as blood volume homeostasis, depends to a large extent on humoral influences stemming from the renin-angiotensin axis and the sympathetic nervous system. Evidence has been provided that a large part of this homeostatic modulation is effected by the complex interactions between the two systems.

OBJECTIVES

The present review will focus on three major issues. First it will examine the physiological and pathophysiological relevance of angiotensin-sympathetic crosstalk discussing possible sites, mechanisms and effects of the interaction. It will then address the clinical relevance of these inter-relationships by reviewing data collected in cardiovascular and non-cardiovascular diseases. Finally, the influences of angiotensin II on adrenergic function will be examined as possible targets of cardiovascular drug treatment.

CONCLUSIONS

By interrupting the influences of angiotensin II on sympathetic function, therapeutic interventions aimed at blocking the renin-angiotensin system exert favourable effects on the haemodynamic, metabolic and renal profile. This has important implications for the treatment of hypertension, congestive heart failure, renal insufficiency and metabolic syndrome.

摘要

背景

血压以及血容量稳态在很大程度上取决于肾素 - 血管紧张素轴和交感神经系统产生的体液影响。已有证据表明,这种稳态调节的很大一部分是由这两个系统之间的复杂相互作用实现的。

目的

本综述将聚焦三个主要问题。首先,将探讨血管紧张素 - 交感神经相互作用的生理和病理生理相关性,讨论相互作用的可能部位、机制和影响。然后,通过回顾心血管疾病和非心血管疾病中收集的数据,阐述这些相互关系的临床相关性。最后,将研究血管紧张素 II 对肾上腺素能功能的影响,作为心血管药物治疗的可能靶点。

结论

通过阻断血管紧张素 II 对交感神经功能的影响,旨在阻断肾素 - 血管紧张素系统的治疗干预对血流动力学、代谢和肾脏状况产生有益影响。这对高血压、充血性心力衰竭、肾功能不全和代谢综合征的治疗具有重要意义。

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