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催产素在心血管调节中的作用。

The role of oxytocin in cardiovascular regulation.

作者信息

Gutkowska J, Jankowski M, Antunes-Rodrigues J

机构信息

Laboratory of Cardiovascular Biochemistry, Department of Medicine, Faculty of Medicine, University of Montreal, CHUM Research Centre, Montreal, Quebec, Canada.

Departamento de Fisiologia, Faculdade de Medicina de Ribeirao Preto, Universidade de Sao Paulo, Ribeirao Preto, SP, Brasil.

出版信息

Braz J Med Biol Res. 2014 Feb;47(3):206-14. doi: 10.1590/1414-431X20133309. Epub 2014 Mar 18.

Abstract

Studies of body volume expansion have indicated that lesions of the anteroventral third ventricle and median eminence block the release of atrial natriuretic peptide (ANP) into the circulation. Detailed analysis of the lesions showed that activation of oxytocin (OT)-ergic neurons is responsible for ANP release, and it has become clear that activation of neuronal circuitry elicits OT secretion into the circulation, activating atrial OT receptors and ANP release from the heart. Subsequently, we have uncovered the entire functional OT system in the rat and the human heart. An abundance of OT has been observed in the early development of the fetal heart, and the capacity of OT to generate cardiomyocytes (CMs) has been demonstrated in various types of stem cells. OT treatment of mesenchymal stem cells stimulates paracrine factors beneficial for cardioprotection. Cardiovascular actions of OT include: i) lowering blood pressure, ii) negative inotropic and chronotropic effects, iii) parasympathetic neuromodulation, iv) vasodilatation, v) anti-inflammatory activity, vi) antioxidant activity, and vii) metabolic effects. OT actions are mediated by nitric oxide and ANP. The beneficial actions of OT may include the increase in glucose uptake by CMs and stem cells, reduction in CM hypertrophy, oxidative stress, and mitochondrial protection of several cell types. In experimentally induced myocardial infarction in rats, continuous in vivo OT delivery improves cardiac healing and cardiac work, reduces inflammation, and stimulates angiogenesis. Because OT plays anti-inflammatory and cardioprotective roles and improves vascular and metabolic functions, it demonstrates potential for therapeutic use in various pathologic conditions.

摘要

对身体容积扩张的研究表明,前腹侧第三脑室和正中隆起的损伤会阻止心房利钠肽(ANP)释放进入循环系统。对这些损伤的详细分析显示,催产素(OT)能神经元的激活是ANP释放的原因,并且已经明确神经元回路的激活会引发OT分泌进入循环系统,激活心房OT受体并促使心脏释放ANP。随后,我们在大鼠和人类心脏中发现了完整的功能性OT系统。在胎儿心脏的早期发育过程中观察到大量的OT,并且OT在各种类型干细胞中产生心肌细胞(CM)的能力也已得到证实。用OT处理间充质干细胞会刺激有利于心脏保护的旁分泌因子。OT的心血管作用包括:i)降低血压,ii)负性肌力和变时作用,iii)副交感神经调节,iv)血管舒张,v)抗炎活性,vi)抗氧化活性,以及vii)代谢作用。OT的作用由一氧化氮和ANP介导。OT的有益作用可能包括增加CM和干细胞对葡萄糖的摄取、减少CM肥大、氧化应激以及对几种细胞类型的线粒体保护。在实验诱导的大鼠心肌梗死中,持续的体内OT递送可改善心脏愈合和心脏功能,减轻炎症并刺激血管生成。由于OT具有抗炎和心脏保护作用,并能改善血管和代谢功能,因此它在各种病理状况下具有治疗应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/029b/3982941/cf3ce936ed97/1414-431X-bjmbr-47-03-00206-gf001.jpg

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