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猕猴桃中的膳食纤维和有机酸通过延缓吸收同等地抑制血糖反应——平行分析 C-乙酸盐摄取的随机交叉人体试验。

Dietary Fibre and Organic Acids in Kiwifruit Suppress Glycaemic Response Equally by Delaying Absorption-A Randomised Crossover Human Trial with Parallel Analysis of C-Acetate Uptake.

机构信息

The New Zealand Institute for Plant and Food Research Limited, Private Bag 11600, Palmerston North 4442, New Zealand.

Riddet Institute, University Avenue, Fitzherbert, Palmerston North 4474, New Zealand.

出版信息

Nutrients. 2022 Aug 3;14(15):3189. doi: 10.3390/nu14153189.

Abstract

Non-sugar components of kiwifruit reduce the amplitude of the glycaemic response to co-consumed cereal starch. We determined the relative contribution of different non-sugar kiwifruit components to this anti-glycaemic effect. Healthy participants (n = 9) ingested equal carbohydrate meals containing 20 g starch as wheat biscuit (WB, 30 g), and the sugar equivalent of two kiwifruit (KFsug, 20.4 g), either intrinsic or added as glucose, fructose and sucrose (2:2:1). The meals were WB+KFsug (control, no non-sugar kiwifruit components), WB + whole kiwifruit pulp (WB+KF), WB + neutralised kiwifruit pulp (WB+KFneut), WB + low-fibre kiwifruit juice (WB+KFjuice) and WB+KFsug + kiwifruit organic acids (WB+KFsug+OA). All meals were spiked with 100 mg sodium [1-13C] acetate to measure intestinal absorption. Each participant ingested all meals in random order. Blood glucose and breath 13CO2 were measured at ingestion and at 15 min intervals up to 180 min. Compared with WB+KFsug, whole kiwifruit pulp (WB+KF) almost halved glycaemic response amplitude (p < 0.001), reduced incremental area under the blood glucose response curve (iAUC) at 30 min (peak) by 50% (p < 0.001), and averted late postprandial hypoglycaemia. All other treatments suppressed response amplitude half as much as whole kiwifruit and averted acute hypoglycaemia, with little effect on iAUC. Effects on 13CO2 exhalation paralleled effects on blood glucose (R2 = 0.97). Dietary fibre and organic acids contributed equally to the anti-glycaemic effect of kiwifruit by reducing intestinal absorption rate. Kiwifruit flesh effectively attenuates glycaemic response in carbohydrate exchange, as it contains fructose, dietary fibre and organic acids.

摘要

奇异果的非糖成分可降低与所摄入谷物淀粉共同消化时的血糖反应幅度。我们确定了不同奇异果非糖成分对这种抗血糖作用的相对贡献。健康参与者(n=9)摄入含有 20 克淀粉的相等碳水化合物餐,餐中包含 20.4 克糖当量的小麦饼干(WB,30 克)和两种奇异果(KFsug,20.4 克),奇异果的糖要么是内在的,要么是添加的葡萄糖、果糖和蔗糖(2:2:1)。这些餐食是 WB+KFsug(对照,无奇异果非糖成分)、WB+全奇异果肉(WB+KF)、WB+中和奇异果肉(WB+KFneut)、WB+低纤维奇异果汁(WB+KFjuice)和 WB+KFsug+奇异果有机酸(WB+KFsug+OA)。所有餐食都添加了 100 毫克钠 [1-13C] 乙酸以测量肠道吸收。每位参与者以随机顺序摄入所有餐食。在摄入时和 15 分钟间隔时测量血糖和呼气 13CO2,直到 180 分钟。与 WB+KFsug 相比,全奇异果肉(WB+KF)几乎将血糖反应幅度减半(p<0.001),在 30 分钟(峰值)时将血糖反应曲线下增量面积(iAUC)降低 50%(p<0.001),并避免了餐后低血糖。所有其他处理都将反应幅度抑制到奇异果的一半,避免了急性低血糖,对 iAUC 的影响很小。呼气 13CO2 的作用与血糖的作用平行(R2=0.97)。膳食纤维和有机酸通过降低肠道吸收率对奇异果的降血糖作用贡献相等。奇异果肉有效地减轻了碳水化合物交换中的血糖反应,因为它含有果糖、膳食纤维和有机酸。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f73e/9370659/3e333623b936/nutrients-14-03189-g0A1.jpg

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