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小麦纤维引起的餐后肽YY和胃饥饿素反应变化与饱腹感的急性改变无关。

Wheat-fibre-induced changes of postprandial peptide YY and ghrelin responses are not associated with acute alterations of satiety.

作者信息

Weickert Martin O, Spranger Joachim, Holst Jens J, Otto Bärbel, Koebnick Corinna, Möhlig Matthias, Pfeiffer Andreas F H

机构信息

Department of Endocrinology, Diabetes and Nutrition, Charité-University-Medicine Berlin, Campus Benjamin Franklin, Hindenburgdamm 30, 12200 Berlin, Germany.

出版信息

Br J Nutr. 2006 Nov;96(5):795-8. doi: 10.1017/bjn20061902.

DOI:10.1017/bjn20061902
PMID:17092365
Abstract

Weight gain and risk of type 2 diabetes are inversely associated with a high intake of insoluble cereal fibres. Because nutrient-induced changes of 'satiety hormones' from the gut may play a role in this process, we evaluated the effects of purified insoluble fibres on postprandial responses of plasma peptide YY (PYY), serum ghrelin and satiety as secondary outcome measures of a study investigating effects of cereal fibres on parameters of glucose metabolism. Fourteen healthy women were studied on six occasions in a randomized, single-blind, controlled crossover design. After 24 h run-in periods and 10 h overnight fasts, subjects ingested isoenergetic and macronutrient matched portions of control white bread or fibre-enriched bread (wheat-fibre or oat-fibre) at 08.15 hours. Gut hormones and hunger scores were measured for 300 min. Basal PYY and ghrelin concentrations were not different between the test meals (P>0.15). Postprandial responses of PYY and ghrelin were blunted after the intake of wheat-fibre (total area under the curve (AUC) PYY, 177.9 (SEM 8.1) (pmol/l) min; P=0.016; ghrelin 51.0 (SEM 2.5) (pmol/l) min; P=0.003), but not after oat-fibre (PYY 226.7 (SEM 25.7) (pmol/l) min; P>0.15; ghrelin 46.2 (SEM 1.6) (pmol/l) min; P=0.127), compared to control (PYY 247.5 (SEM 25.6) (pmol/l) min; ghrelin 42.5 (SEM 1.3) (pmol/l) min). Postprandial hunger scores were unaffected by the different test meals (P>0.15). Thus, oat- and wheat-fibre consumption result in different postprandial responses of PYY and ghrelin, but interestingly do not differ in satiety effects.

摘要

体重增加和2型糖尿病风险与高摄入不溶性谷物纤维呈负相关。由于肠道中营养物质诱导的“饱腹感激素”变化可能在此过程中起作用,我们评估了纯化的不溶性纤维对血浆肽YY(PYY)、血清胃饥饿素的餐后反应以及饱腹感的影响,作为一项研究谷物纤维对葡萄糖代谢参数影响的次要结局指标。14名健康女性在随机、单盲、对照交叉设计下接受了6次研究。经过24小时的导入期和10小时的夜间禁食后,受试者于08:15摄入等能量且宏量营养素匹配的对照白面包或富含纤维的面包(小麦纤维或燕麦纤维)。测量300分钟内的肠道激素和饥饿评分。测试餐之间的基础PYY和胃饥饿素浓度无差异(P>0.15)。与对照餐(PYY 247.5(标准误25.6)(pmol/l)分钟;胃饥饿素42.5(标准误1.3)(pmol/l)分钟)相比,摄入小麦纤维后PYY和胃饥饿素的餐后反应减弱(曲线下总面积(AUC)PYY,177.9(标准误8.1)(pmol/l)分钟;P=0.016;胃饥饿素51.0(标准误2.5)(pmol/l)分钟;P=0.003),但燕麦纤维后无此现象(PYY 226.7(标准误25.7)(pmol/l)分钟;P>0.15;胃饥饿素46.2(标准误1.6)(pmol/l)分钟;P=0.127)。餐后饥饿评分不受不同测试餐的影响(P>0.15)。因此,食用燕麦纤维和小麦纤维会导致PYY和胃饥饿素不同的餐后反应,但有趣的是饱腹感效应并无差异。

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