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肠道微生物群-胆汁酸轴将慢性失眠与代谢性心血管疾病之间的正相关联系起来。

The gut microbiota-bile acid axis links the positive association between chronic insomnia and cardiometabolic diseases.

机构信息

Key Laboratory of Growth Regulation and Translational Research of Zhejiang Province, School of Life Sciences, Westlake University, Hangzhou, China.

Guangdong Provincial Key Laboratory of Food, Nutrition and Health; Department of Epidemiology, School of Public Health, Sun Yat-sen University, Guangzhou, China.

出版信息

Nat Commun. 2022 May 30;13(1):3002. doi: 10.1038/s41467-022-30712-x.

Abstract

Evidence from human cohorts indicates that chronic insomnia is associated with higher risk of cardiometabolic diseases (CMD), yet whether gut microbiota plays a role is unclear. Here, in a longitudinal cohort (n = 1809), we find that the gut microbiota-bile acid axis may link the positive association between chronic insomnia and CMD. Ruminococcaceae UCG-002 and Ruminococcaceae UCG-003 are the main genera mediating the positive association between chronic insomnia and CMD. These results are also observed in an independent cross-sectional cohort (n = 6122). The inverse associations between those gut microbial biomarkers and CMD are mediated by certain bile acids (isolithocholic acid, muro cholic acid and nor cholic acid). Habitual tea consumption is prospectively associated with the identified gut microbiota and bile acids in an opposite direction compared with chronic insomnia. Our work suggests that microbiota-bile acid axis may be a potential intervention target for reducing the impact of chronic insomnia on cardiometabolic health.

摘要

来自人类队列的证据表明,慢性失眠与代谢性心血管疾病(CMD)的风险增加有关,但肠道微生物群是否起作用尚不清楚。在这里,在一项纵向队列研究(n=1809)中,我们发现肠道微生物群-胆汁酸轴可能将慢性失眠与 CMD 之间的正相关联系起来。瘤胃球菌科 UCG-002 和瘤胃球菌科 UCG-003 是介导慢性失眠与 CMD 之间正相关的主要属。这些结果在另一个独立的横断面队列研究(n=6122)中也得到了观察。这些肠道微生物生物标志物与 CMD 之间的负相关关系是由某些胆汁酸(异石胆酸、鼠胆酸和去胆酸)介导的。习惯性饮茶与所确定的肠道微生物群和胆汁酸呈相反方向相关,与慢性失眠相比,前者可降低肠道微生物群和胆汁酸对心血管代谢健康的影响。我们的工作表明,微生物群-胆汁酸轴可能是减少慢性失眠对心血管代谢健康影响的潜在干预靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c39a/9151781/f3b114d7f86f/41467_2022_30712_Fig1_HTML.jpg

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