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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Metabolism of antioxidant and chemopreventive ellagitannins from strawberries, raspberries, walnuts, and oak-aged wine in humans: identification of biomarkers and individual variability
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Metabolism of antioxidant and chemopreventive ellagitannins from strawberries, raspberries, walnuts, and oak-aged wine in humans: identification of biomarkers and individual variability

机译:草莓,覆盆子,核桃和橡木陈酿葡萄酒中抗氧化剂和化学预防性鞣花单宁的代谢:生物标记物的鉴定和个体变异性

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Ellagitannins (ETs) are dietary polyphenols, containing ellagic acid (EA) subunits, with antioxidant and cancer chemopreventive activities that might contribute to health benefits in humans. However, little is known about their metabolic fate. We investigate here the metabolism of different dietary ETs and EA derivatives in humans. Forty healthy volunteers were distributed in four groups. Each group consumed, in a single dose, a different ET-containing foodstuff, i.e., strawberries (250 g), red raspberries (225 g), walnuts (35 g), and oak-aged red wine (300 mL). After the intake, five urine fractions (F) were collected at 8 (F1), 16 (F2), 32 (F3), 40 (F4), and 56 (F5) h. Neither ETs nor EA were detected in urine after LC-MS/MS analysis. However, the microbial metabolite 3,8-dihydroxy-6H-dibenzo[b,d]pyran-6-one (urolithin B) conjugated with glucuronic acid was detected along the fractions F3-F5 in all of the subjects, independently of the consumed foodstuff. The mean percentage of metabolite excretion ranged from 2.8 (strawberries) to 16.6% (walnuts) regarding the ingested ETs. Considerable interindividual differences were noted, identifying "high and low metabolite excreters" in each group, which supported the involvement of the colonic microflora in ET metabolism. These results indicate that urolithin B (a previously described antiangiogenic and hyaluronidase inhibitor compound) is a biomarker of human exposure to dietary ETs and may be useful in intervention studies with ET-containing products. The antioxidant and anticarcinogenic effects of dietary ETs and EA should be considered in the gastrointestinal tract whereas the study of potential systemic activities should be focused on the bioavailable urolithin B derivatives.
机译:鞣花单宁(ETs)是膳食多酚,含有鞣花酸(EA)亚基,具有抗氧化剂和抗癌化学作用,可能对人类健康有益。然而,对其代谢命运知之甚少。我们在这里研究人类不同饮食中ET和EA衍生物的代谢。四十名健康志愿者分为四组。每组一次食用不同的含ET的食物,即草莓(250 g),红树莓(225 g),核桃(35 g)和橡木陈酿的红酒(300 mL)。摄入后,分别在8(F1),16(F2),32(F3),40(F4)和56(F5)h收集五个尿液分数(F)。 LC-MS / MS分析后,尿液中均未检测到ET和EA。然而,在所有受试者中,沿着馏分F3-F5检测到与葡萄糖醛酸共轭的微生物代谢物3,8-二羟基-6H-二苯并[b,d]吡喃-6-一(尿石素B),与所消耗的物质无关食品。就摄入的ET而言,代谢产物排泄的平均百分比范围从2.8(草莓)到16.6%(核桃)。注意到个体之间的巨大差异,在每组中识别出“高代谢物和低代谢物排泄物”,这支持了结肠菌群参与ET代谢。这些结果表明,尿石素B(先前描述的抗血管生成和透明质酸酶抑制剂化合物)是人类暴露于饮食ET的生物标志物,可用于含ET产品的干预研究。在胃肠道中应考虑膳食ET和EA的抗氧化和抗癌作用,而对潜在全身活性的研究应集中在可生物利用的尿石素B衍生物上。

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