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Plasma and Urinary (Poly)phenolic Profiles after 4-Week Red Raspberry (

机译:4周红覆盆子后的血浆和尿(Poly)酚醛谱(

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摘要

Red raspberries (RRB) are high in anthocyanin- and ellagitannin- type (poly)phenols. This study aimed to investigate the effect of 4-week RRB supplementation on (poly)phenolic metabolism in adults with prediabetes and insulin-resistance (PreDM-IR); and whether adding fructo-oligosaccharides (FOS), prebiotics, would augment the microbial metabolites of RRB (poly)phenols. In a randomized crossover clinical trial, subjects (n = 35: PreDM-IR, n = 25; healthy Reference group, n = 10) consumed 1 cup RRB (fresh weight equivalence) per day and RRB with 8 g FOS per day each for 4 weeks in random order separated by 4-week washout. Plasma and urinary (poly)phenolic metabolites were characterized after (0–24 h) consuming a RRB-based test drink (2 cups RRB) at baseline/week 0 and again after 4-week supplementations. A total of 123 (poly)phenolic metabolites were quantified. After 4-week RRB supplementation, several metabolite groups were significantly increased (p < 0.05), including urolithins, phenyl-γ-valerolactones, and phenolic acids. Supplementing FOS with RRB for 4 weeks enhanced benzoic acid derivatives compared to the baseline (p < 0.05). Specific effects of supplementation by metabolic status indicated 4-week RRB supplementation significantly increased microbial metabolites that were lower in PreDM-IR group. Our results suggest alterations in the capacity of PreDM-IR group to metabolize and render bioavailable raspberry-derived (poly)phenols when consumed regularly.
机译:红覆盆子(RRB)在花青素和壳蛋白蛋白类型(聚)酚含量高。本研究旨在探讨4周RRB补充对(PERTM-IR)(PREDM-IR)的(PERIPM-IR)对成年人酚醛代谢的影响;无论是添加果糖 - 寡糖(FOS),益生元素会增加RRB(聚)酚的微生物代谢物。在随机交叉临床试验中,受试者(n = 35:predm-Ir,n = 25;健康参考组,n = 10)每天消耗1杯RRB(鲜重量等当量),每天每天8克FOS为RRB随机订单4周,分隔4周的冲洗。以(0-24小时)在基线/第0周的基于RRB的试验饮料(2杯RRB)和4周后再次进行了血浆和尿)酚醛化代谢物。量化了总共123(聚)酚醛代谢物。在4周RRB补充后,几种代谢物基团显着增加(P <0.05),包括尿石,苯基-γ-戊酰胺和酚酸。与基线相比,补充具有RRB的FOS增强苯甲酸衍生物(P <0.05)。通过代谢状态补充的特异性效果表明4周的RRB补充剂显着增加了预先在预测粒度较低的微生物代谢物。我们的结果表明,在定期消费时,预测-R组在代谢和呈现生物可利用的覆盆子衍生(Poly)酚醛化的能力的改变。

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