Gut microbes metabolize strawberry phytochemicals and mediate their beneficial effects on vascular inflammation

代谢物 生物 肠道菌群 马尿酸 失调 毛螺菌科 微生物群 次生代谢物 药理学 食品科学 生物化学 厚壁菌 16S核糖体RNA 生物信息学 基因 尿
作者
Chrissa Petersen,Adhini Kuppuswamy Satheesh Babu,Ceres Mattos Della Lúcia,Henry A. Paz,Lisard Iglesias‐Carres,Ying Zhong,Thunder Jalili,J. David Symons,Kartik Shankar,Andrew P. Neilson,Umesh D. Wankhade,Pon Velayutham Anandh Babu
出处
期刊:Gut microbes [Landes Bioscience]
卷期号:17 (1): 2446375-2446375 被引量:5
标识
DOI:10.1080/19490976.2024.2446375
摘要

Evidence suggests that a healthy gut microbiome is essential for metabolizing dietary phytochemicals. However, the microbiome's role in metabolite production and the influence of gut dysbiosis on this process remain unclear. Further, studies on the relationship among gut microbes, metabolites, and biological activities of phytochemicals are limited. We addressed this knowledge gap using strawberry phytochemicals as a model. C57BL/6J mice were fed a standard diet [C]; strawberry-supplemented diet (~2 human servings) [CS]; strawberry-supplemented diet and treated with antibiotics (to deplete gut microbes) [CSA]; high-fat diet (HFD) [HF]; strawberry-supplemented HFD [HS]; and strawberry-supplemented HFD and treated with antibiotics [HSA] for 12 weeks. First, antibiotic treatment suppressed the production of selected metabolites (CSA vs. CS), and p-coumaric acid was identified as a strawberry-derived microbial metabolite. Second, HFD-induced dysbiosis negatively affected metabolite production (HS vs. HF), and hippuric acid was identified as a microbial metabolite in HFD conditions. Third, dietary strawberries improved HFD-induced vascular inflammation (HS vs. HF). However, antibiotic treatment reduced metabolite production and abolished the vascular effects of strawberries (HSA vs. HS), indicating the importance of gut microbes in mediating the vascular benefits of strawberries via metabolites. Fourth, strawberry supplementation decreased Coprobacillus that was positively associated with vascular inflammation, whereas it increased Lachnospiraceae that was negatively associated with vascular inflammation and positively associated with hippuric acid. Fifth, hippuric acid was negatively associated with vascular inflammation. Our study fills in some pieces of the giant puzzle regarding the influence of gut microbes on the biological activities of phytochemicals. HFD-induced gut dysbiosis negatively impacts metabolite production and a strong association exists among gut microbes, strawberry-derived microbial metabolites, and the vascular benefits of dietary strawberries. Further, our study provides significant proof of concept to warrant future research on the use of strawberries as a nutritional strategy to prevent vascular complications.
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