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血管紧张素 - 褪黑素轴

The Angiotensin-melatonin axis.

作者信息

Campos Luciana A, Cipolla-Neto Jose, Amaral Fernanda G, Michelini Lisete C, Bader Michael, Baltatu Ovidiu C

机构信息

Center of Innovation, Technology and Education-(CITE), Camilo Castelo Branco University (UNICASTELO), São José dos Campos Technology Park, Presidente Dutra Road Km 138, 12247-004 São José dos Campos, SP, Brazil.

出版信息

Int J Hypertens. 2013;2013:521783. doi: 10.1155/2013/521783. Epub 2013 Jan 8.

Abstract

Accumulating evidence indicates that various biological and neuroendocrine circadian rhythms may be disrupted in cardiovascular and metabolic disorders. These circadian alterations may contribute to the progression of disease. Our studies direct to an important role of angiotensin II and melatonin in the modulation of circadian rhythms. The brain renin-angiotensin system (RAS) may modulate melatonin synthesis, a hormone with well-established roles in regulating circadian rhythms. Angiotensin production in the central nervous system may not only influence hypertension but also appears to affect the circadian rhythm of blood pressure. Drugs acting on RAS have been proven effective in the treatment of cardiovascular and metabolic disorders including hypertension and diabetes mellitus (DM). On the other hand, since melatonin is capable of ameliorating metabolic abnormalities in DM and insulin resistance, the beneficial effects of RAS blockade could be improved through combined RAS blocker and melatonin therapy. Contemporary research is evidencing the existence of specific clock genes forming central and peripheral clocks governing circadian rhythms. Further research on the interaction between these two neurohormones and the clock genes governing circadian clocks may progress our understanding on the pathophysiology of disease with possible impact on chronotherapeutic strategies.

摘要

越来越多的证据表明,在心血管和代谢紊乱中,各种生物和神经内分泌昼夜节律可能会被打乱。这些昼夜节律的改变可能会促进疾病的发展。我们的研究表明血管紧张素II和褪黑素在调节昼夜节律中起重要作用。脑肾素-血管紧张素系统(RAS)可能调节褪黑素的合成,褪黑素是一种在调节昼夜节律方面具有公认作用的激素。中枢神经系统中血管紧张素的产生不仅可能影响高血压,而且似乎还会影响血压的昼夜节律。作用于RAS的药物已被证明在治疗包括高血压和糖尿病(DM)在内的心血管和代谢紊乱方面有效。另一方面,由于褪黑素能够改善DM中的代谢异常和胰岛素抵抗,通过联合使用RAS阻滞剂和褪黑素疗法,可以提高RAS阻断的有益效果。当代研究证明存在特定的时钟基因,这些基因形成控制昼夜节律的中枢和外周时钟。进一步研究这两种神经激素与控制昼夜节律的时钟基因之间的相互作用,可能会增进我们对疾病病理生理学的理解,并可能对时间治疗策略产生影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d51/3556444/caed07de7c76/IJHT2013-521783.001.jpg

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