Guirro Maria, Gual-Grau Andreu, Gibert-Ramos Albert, Alcaide-Hidalgo Juan Maria, Canela Núria, Arola Lluís, Mayneris-Perxachs Jordi
Eurecat, Centre Tecnològic de Catalunya, Technological Unit of Omics Sciences, 43204 Reus, Spain.
Nutrigenomics Research Group, Department of Biochemistry and Biotechnology, Universitat Rovira i Virgili. Marcel.lí Domingo, 1, 43007 Tarragona, Spain.
Antioxidants (Basel). 2020 Jan 16;9(1):79. doi: 10.3390/antiox9010079.
Metabolic syndrome (MetS) is a global epidemic concern. Polyphenols are proposed as good candidates for its prevention, although their mechanisms are not fully understood. The gut microbiota seems to play a key role in polyphenol beneficial effects. Here, we assessed the effects of the citrus polyphenol hesperidin combining an untargeted metabolomics approach, which has an inherent potential to elucidate the host-microbiome interplay, with extensive anthropometric and biochemical characterizations and integrating metabolomics results with our previous 16S rRNA bacterial sequencing data. The rats were fed either a standard or an obesogenic cafeteria diet (CAF) for 17 weeks. After nine weeks, rats were supplemented with vehicle; low- (H1), or high- (H2) hesperidin doses. CAF animals developed MetS features. Hesperidin supplementation in CAF rats decreased the total cholesterol, LDL-C, and free fatty acids. The highest hesperidin dose also ameliorated blood pressure, insulin sensitivity, and decreased markers of arterial stiffness and inflammation. Metabolomics revealed an improvement of the lipidomic profile, decreases in circulating amino acids, and lower excretions of inflammation- and oxidative stress-related metabolites. increases in the CAF-H2 group paralleled higher excretions of microbial-derived metabolites. Overall, our results provide detailed insights into the molecular effects of hesperidin on MetS and suggest that it is a promising prebiotic for the treatment of MetS and related conditions.
代谢综合征(MetS)是一个全球普遍关注的问题。尽管多酚预防代谢综合征的机制尚未完全明确,但多酚被认为是预防代谢综合征的理想候选物。肠道微生物群似乎在多酚的有益作用中发挥关键作用。在此,我们结合非靶向代谢组学方法评估了柑橘多酚橙皮苷的作用,该方法具有阐明宿主-微生物组相互作用的内在潜力,并进行了广泛的人体测量和生化特征分析,还将代谢组学结果与我们之前的16S rRNA细菌测序数据相结合。将大鼠分别喂食标准饮食或致肥胖的自助餐厅饮食(CAF)17周。9周后,给大鼠补充载体、低剂量(H1)或高剂量(H2)的橙皮苷。CAF喂养的动物出现了代谢综合征特征。给CAF大鼠补充橙皮苷可降低总胆固醇、低密度脂蛋白胆固醇和游离脂肪酸。最高剂量的橙皮苷还改善了血压、胰岛素敏感性,并降低了动脉僵硬度和炎症标志物。代谢组学显示脂质组学特征得到改善,循环氨基酸减少,与炎症和氧化应激相关的代谢物排泄减少。CAF-H2组微生物衍生代谢物排泄增加。总体而言,我们的结果详细揭示了橙皮苷对代谢综合征的分子作用,并表明它是治疗代谢综合征及相关病症的一种有前景的益生元。