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膳食多酚对神经调节因子和途径的影响,这些因子和途径介导肥胖症中的食物摄入和能量调节。

Effects of dietary polyphenols on neuroregulatory factors and pathways that mediate food intake and energy regulation in obesity.

机构信息

Department of Pediatrics, University of Maryland School of Medicine, Baltimore, MD, USA.

出版信息

Mol Nutr Food Res. 2013 Jan;57(1):34-47. doi: 10.1002/mnfr.201200431. Epub 2012 Nov 2.

Abstract

Polyphenols are natural substances and are enriched in vegetables, fruits, grains, bark, tea, and wine. Some polyphenols have insulin-potentiating and anti-inflammatory effects, both of which are important in obesity. Dietary supplementation with polyphenolic compounds is associated with reduced diet-induced obesity and/or metabolic syndrome in animal and human studies. Insights into mechanisms that regulate food intake and satiety have led to an increased understanding of obesity but the pathogenesis underlying obesity is lacking. Food intake is subject to a complex regulation by the hypothalamus and other brain centers including the brain stem and the hippocampus. An intricate network of interacting feedback mechanisms that involve the aforementioned neural centers along with the stomach, gut, liver, thyroid, and adipose tissue in the periphery, influence the eventual outcome of food intake and satiety. Key peripheral signals, such as leptin, insulin, and ghrelin, have been linked to hypothalamic neuropeptide systems in energy regulation. This review will examine the neural centers important in food intake, the role of various neuropeptides, and the neurohormonal influence on food intake. The potential role of polyphenols in influencing the neuroregulatory factors, the neural signaling pathways and/or the peripheral feedback mechanisms that modulate food intake will also be examined.

摘要

多酚是天然物质,存在于蔬菜、水果、谷物、树皮、茶和酒中。一些多酚具有胰岛素增敏和抗炎作用,这两者在肥胖症中都很重要。动物和人类研究表明,多酚化合物的饮食补充与减少饮食诱导的肥胖和/或代谢综合征有关。对调节食物摄入和饱腹感的机制的深入了解导致了对肥胖症的认识增加,但肥胖症的发病机制尚不清楚。食物摄入受到下丘脑和其他大脑中枢(包括脑干和海马体)的复杂调节。一个由相互作用的反馈机制组成的复杂网络,涉及上述神经中枢以及胃、肠道、肝脏、甲状腺和脂肪组织,影响食物摄入和饱腹感的最终结果。关键的外周信号,如瘦素、胰岛素和胃饥饿素,已与能量调节中的下丘脑神经肽系统相关联。这篇综述将探讨在食物摄入中重要的神经中枢、各种神经肽的作用以及神经激素对食物摄入的影响。还将研究多酚在影响调节食物摄入的神经调节因子、神经信号通路和/或外周反馈机制方面的潜在作用。

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