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生活方式与代谢综合征:内源性大麻素组的贡献。

Lifestyle and Metabolic Syndrome: Contribution of the Endocannabinoidome.

机构信息

École de nutrition, Université Laval, Québec, QC G1V 0A6, Canada.

Institut sur la nutrition et les aliments fonctionnels, Université Laval, Québec, QC G1V 0A6, Canada.

出版信息

Nutrients. 2019 Aug 20;11(8):1956. doi: 10.3390/nu11081956.

Abstract

Lifestyle is a well-known environmental factor that plays a major role in facilitating the development of metabolic syndrome or eventually exacerbating its consequences. Various lifestyle factors, especially changes in dietary habits, extreme temperatures, unusual light-dark cycles, substance abuse, and other stressful factors, are also established modifiers of the endocannabinoid system and its extended version, the endocannabinoidome. The endocannabinoidome is a complex lipid signaling system composed of a plethora (>100) of fatty acid-derived mediators and their receptors and anabolic and catabolic enzymes (>50 proteins) which are deeply involved in the control of energy metabolism and its pathological deviations. A strong link between the endocannabinoidome and another major player in metabolism and dysmetabolism, the gut microbiome, is also emerging. Here, we review several examples of how lifestyle modifications (westernized diets, lack or presence of certain nutritional factors, physical exercise, and the use of cannabis) can modulate the propensity to develop metabolic syndrome by modifying the crosstalk between the endocannabinoidome and the gut microbiome and, hence, how lifestyle interventions can provide new therapies against cardiometabolic risk by ensuring correct functioning of both these systems.

摘要

生活方式是一个众所周知的环境因素,它在促进代谢综合征的发展或最终加剧其后果方面起着主要作用。各种生活方式因素,特别是饮食习惯的改变、极端温度、不寻常的明暗周期、物质滥用和其他压力因素,也是内源性大麻素系统及其扩展版本内源性大麻素组的既定修饰剂。内源性大麻素组是一个由大量(>100)脂肪酸衍生介质及其受体和合成代谢和分解代谢酶(>50 种蛋白质)组成的复杂脂质信号系统,它们深度参与能量代谢及其病理偏差的控制。内源性大麻素组与代谢和代谢障碍的另一个主要参与者——肠道微生物组之间也存在着紧密的联系。在这里,我们回顾了几种生活方式改变(西方化饮食、缺乏或存在某些营养因素、体育锻炼和使用大麻)如何通过调节内源性大麻素组和肠道微生物组之间的串扰来调节代谢综合征发生倾向的例子,以及生活方式干预如何通过确保这两个系统的正确功能提供针对心脏代谢风险的新疗法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9389/6722643/e7f2df39c4c2/nutrients-11-01956-g001.jpg

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