Circulating bile acids as a link between the gut microbiota and cardiovascular health: impact of prebiotics, probiotics and polyphenol-rich foods.

IF 5.1 2区 医学 Q1 NUTRITION & DIETETICS
Nutrition Research Reviews Pub Date : 2022-12-01 Epub Date: 2021-04-30 DOI:10.1017/S0954422421000081
Rose-Anna G Pushpass, Shouq Alzoufairi, Kim G Jackson, Julie A Lovegrove
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引用次数: 35

Abstract

Beneficial effects of probiotic, prebiotic and polyphenol-rich interventions on fasting lipid profiles have been reported, with changes in the gut microbiota composition believed to play an important role in lipid regulation. Primary bile acids, which are involved in the digestion of fats and cholesterol metabolism, can be converted by the gut microbiota to secondary bile acids, some species of which are less well reabsorbed and consequently may be excreted in the stool. This can lead to increased hepatic bile acid neo-synthesis, resulting in a net loss of circulating low-density lipoprotein. Bile acids may therefore provide a link between the gut microbiota and cardiovascular health. This narrative review presents an overview of bile acid metabolism and the role of probiotics, prebiotics and polyphenol-rich foods in modulating circulating cardiovascular disease (CVD) risk markers and bile acids. Although findings from human studies are inconsistent, there is growing evidence for associations between these dietary components and improved lipid CVD risk markers, attributed to modulation of the gut microbiota and bile acid metabolism. These include increased bile acid neo-synthesis, due to bile sequestering action, bile salt metabolising activity and effects of short-chain fatty acids generated through bacterial fermentation of fibres. Animal studies have demonstrated effects on the FXR/FGF-15 axis and hepatic genes involved in bile acid synthesis (CYP7A1) and cholesterol synthesis (SREBP and HMGR). Further human studies are needed to determine the relationship between diet and bile acid metabolism and whether circulating bile acids can be utilised as a potential CVD risk biomarker.

循环胆汁酸作为肠道微生物群和心血管健康之间的联系:益生元、益生菌和富含多酚的食物的影响
益生菌、益生元和富含多酚的干预措施对空腹脂质谱的有益影响已被报道,肠道微生物群组成的变化被认为在脂质调节中起重要作用。初级胆汁酸参与脂肪的消化和胆固醇代谢,可被肠道菌群转化为次级胆汁酸,其中一些种类的胆汁酸重吸收较差,因此可能随粪便排出。这可能导致肝胆汁酸新合成增加,导致循环低密度脂蛋白的净损失。因此,胆汁酸可能在肠道微生物群和心血管健康之间提供了联系。本文综述了胆汁酸代谢以及益生菌、益生元和富含多酚的食物在调节循环心血管疾病(CVD)风险标志物和胆汁酸中的作用。尽管人类研究的结果不一致,但越来越多的证据表明,这些饮食成分与改善脂质心血管疾病风险标志物之间存在关联,这归因于肠道微生物群和胆汁酸代谢的调节。这些包括由于胆汁隔离作用而增加的胆汁酸新合成,胆汁盐代谢活性和细菌发酵纤维产生的短链脂肪酸的影响。动物研究已证实对FXR/FGF-15轴和参与胆汁酸合成(CYP7A1)和胆固醇合成(SREBP和HMGR)的肝脏基因有影响。需要进一步的人体研究来确定饮食和胆汁酸代谢之间的关系,以及循环胆汁酸是否可以用作潜在的心血管疾病风险生物标志物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Nutrition Research Reviews
Nutrition Research Reviews 医学-营养学
CiteScore
16.10
自引率
1.80%
发文量
30
期刊介绍: Nutrition Research Reviews offers a comprehensive overview of nutritional science today. By distilling the latest research and linking it to established practice, the journal consistently delivers the widest range of in-depth articles in the field of nutritional science. It presents up-to-date, critical reviews of key topics in nutrition science advancing new concepts and hypotheses that encourage the exchange of fundamental ideas on nutritional well-being in both humans and animals.
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