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富含苹果和黑加仑多酚的饮料可降低健康男性和女性餐后碳水化合物餐的血糖、胰岛素和肠降血糖素反应。

Apple and blackcurrant polyphenol-rich drinks decrease postprandial glucose, insulin and incretin response to a high-carbohydrate meal in healthy men and women.

机构信息

Diabetes & Nutritional Sciences Division, Faculty of Life Sciences and Medicine, King's College London, Franklin-Wilkins Building, 150 Stamford Street, London, SE1 9NH, UK.

Diabetes & Nutritional Sciences Division, Faculty of Life Sciences and Medicine, King's College London, Franklin-Wilkins Building, 150 Stamford Street, London, SE1 9NH, UK.

出版信息

J Nutr Biochem. 2017 Nov;49:53-62. doi: 10.1016/j.jnutbio.2017.07.013. Epub 2017 Jul 27.

Abstract

Postprandial glycemic responses to meals are inhibited by polyphenol-rich plant foods. Combinations of polyphenols may be particularly effective through complementary mechanisms. A randomized, controlled, double-blinded cross-over trial was conducted in healthy volunteers to test the hypothesis that apple and blackcurrant polyphenol-rich drinks would reduce postprandial blood glucose concentrations. Secondary outcomes included insulin and glucose-dependent insulinotropic polypeptide (GIP) secretion. Twenty men (mean age 26 y, SD 8) and 5 postmenopausal women (mean age 57 y, SD 3) consumed a placebo drink (CON) and 2 polyphenol-rich drinks containing fruit extracts: either 1200 mg apple polyphenols (AE), or 600 mg apple polyphenols+600 mg blackcurrant anthocyanins (AE+BE), in random order with a starch and sucrose meal. Incremental areas under the curve (iAUC) for plasma glucose concentrations were lower following AE+BE over 0-30 and 0-120 min compared with CON; mean differences (95% CI) -32 mmol/L·min (-41, -22, P<.0005) and -52 mmol/L min (-94, -9, P<.05), respectively. AE significantly reduced iAUC 0-30 min (mean difference -26 mmol/L min, -35, -18, P<.0005) compared with CON, but the difference over 120 min was not significant. Postprandial insulin, C-peptide and GIP concentrations were significantly reduced relative to CON. A dose response inhibition of glucose transport was demonstrated in Caco-2 cells, including total and GLUT-mediated transport, and SGLT1-mediated glucose transport was strongly inhibited at all doses in Xenopus oocytes, following 10 min incubation with 0.125-4 mg apple polyphenols/ml. In conclusion, ingestion of apple and blackcurrant polyphenols decreased postprandial glycemia, which may be partly related to inhibition of intestinal glucose transport.

摘要

进食后血糖反应受到富含多酚的植物性食物的抑制。多酚的组合可能通过互补机制特别有效。在健康志愿者中进行了一项随机、对照、双盲交叉试验,以检验以下假设:富含苹果和黑加仑多酚的饮料可降低餐后血糖浓度。次要结果包括胰岛素和葡萄糖依赖性胰岛素释放多肽(GIP)的分泌。20 名男性(平均年龄 26 岁,标准差 8 岁)和 5 名绝经后女性(平均年龄 57 岁,标准差 3 岁)随机顺序摄入安慰剂饮料(CON)和 2 种含有水果提取物的富含多酚的饮料:1200mg 苹果多酚(AE)或 600mg 苹果多酚+600mg 黑加仑花色苷(AE+BE),与淀粉和蔗糖餐一起。与 CON 相比,AE+BE 后 0-30 和 0-120 分钟时血浆葡萄糖浓度的增量曲线下面积(iAUC)较低;平均差异(95%CI)-32mmol/L·min(-41,-22,P<.0005)和-52mmol/L·min(-94,-9,P<.05)。AE 与 CON 相比,0-30 分钟时 iAUC 显著降低(平均差异-26mmol/L·min,-35,-18,P<.0005),但 120 分钟时的差异无统计学意义。与 CON 相比,餐后胰岛素、C 肽和 GIP 浓度均显著降低。Caco-2 细胞中葡萄糖转运的剂量反应抑制作用得到证实,包括总转运和 GLUT 介导的转运,并且在 Xenopus oocytes 中,用 0.125-4mg 苹果多酚/ml 孵育 10 分钟后,SGLT1 介导的葡萄糖转运在所有剂量下均受到强烈抑制。总之,摄入苹果和黑加仑多酚可降低餐后血糖,这可能部分与抑制肠道葡萄糖转运有关。

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