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抗性淀粉而非酶法改性糯玉米可延缓Zucker糖尿病肥胖大鼠糖尿病的发展。

Resistant Starch but Not Enzymatically Modified Waxy Maize Delays Development of Diabetes in Zucker Diabetic Fatty Rats.

作者信息

Hedemann Mette Skou, Hermansen Kjeld, Pedersen Sven, Bach Knudsen Knud Erik

机构信息

Department of Animal Science, Faculty of Science and Technology, Aarhus University, Tjele, Denmark;

Department of Endocrinology and Internal Medicine, Aarhus University Hospital, Aarhus, Denmark; and.

出版信息

J Nutr. 2017 May;147(5):825-834. doi: 10.3945/jn.116.243899. Epub 2017 Mar 15.

Abstract

The incidence of type 2 diabetes (T2D) is increasing worldwide, and nutritional management of circulating glucose may be a strategic tool in the prevention of T2D. We studied whether enzymatically modified waxy maize with an increased degree of branching delayed the onset of diabetes in male Zucker diabetic fatty (ZDF) rats. Forty-eight male ZDF rats, aged 5 wk, were divided into 4 groups and fed experimental diets for 9 wk that contained 52.95% starch: gelatinized corn starch (S), glucidex (GLU), resistant starch (RS), or enzymatically modified starch (EMS). Blood glucose after feed deprivation was assessed every second week; blood samples taken at run-in and at the end of the experiment were analyzed for glycated hemoglobin (HbA1c) and plasma glucose, insulin, and lipids. During weeks 2 and 8, urine was collected for metabolomic analysis. Based on blood glucose concentrations in feed-deprived rats, none of the groups developed diabetes. However, in week 9, plasma glucose after feed deprivation was significantly lower in rats fed the S and RS diets (13.5 mmol/L) than in rats fed the GLU and EMS diets (17.0-18.9 mmol/L), and rats fed RS had lower HbA1c (4.9%) than rats fed the S, GLU, and EMS (5.6-6.1%) diets. The homeostasis model assessment of insulin resistance was significantly lower in rats fed RS than in rats fed the other diets (185 compared with 311-360), indicating that rats fed the S, GLU, and EMS diets were diabetic, and a 100% higher urine excretion during week 8 in rats fed the GLU and EMS diets than that of rats fed S and RS showed that they were diabetic. Urinary nontargeted metabolomics revealed that the diabetic state of rats fed S, GLU, and EMS diets influenced microbial metabolism, as well as amino acid, lipid, and vitamin metabolism. EMS did not delay the onset of diabetes in ZDF rats, whereas rats fed RS showed no signs of diabetes.

摘要

2型糖尿病(T2D)在全球范围内的发病率正在上升,循环葡萄糖的营养管理可能是预防T2D的一种战略工具。我们研究了支链度增加的酶法改性糯玉米是否能延缓雄性Zucker糖尿病脂肪(ZDF)大鼠糖尿病的发病。将48只5周龄的雄性ZDF大鼠分为4组,喂养9周的实验性日粮,日粮中含有52.95%的淀粉:糊化玉米淀粉(S)、葡糖糊精(GLU)、抗性淀粉(RS)或酶法改性淀粉(EMS)。每隔一周评估禁食后的血糖;对在预实验期和实验结束时采集的血样进行糖化血红蛋白(HbA1c)、血浆葡萄糖、胰岛素和脂质分析。在第2周和第8周期间,收集尿液进行代谢组学分析。根据禁食大鼠的血糖浓度,没有一组出现糖尿病。然而,在第9周,禁食后喂食S和RS日粮的大鼠的血浆葡萄糖(13.5 mmol/L)显著低于喂食GLU和EMS日粮的大鼠(17.0 - 18.9 mmol/L),喂食RS的大鼠的HbA1c(4.9%)低于喂食S、GLU和EMS日粮的大鼠(5.6 - 6.1%)。喂食RS的大鼠的胰岛素抵抗稳态模型评估值显著低于喂食其他日粮的大鼠(185,而其他组为311 - 360),这表明喂食S、GLU和EMS日粮的大鼠患有糖尿病,并且喂食GLU和EMS日粮的大鼠在第8周的尿排泄量比喂食S和RS日粮的大鼠高100%,这表明它们患有糖尿病。尿液非靶向代谢组学表明,喂食S、GLU和EMS日粮的大鼠的糖尿病状态影响微生物代谢以及氨基酸、脂质和维生素代谢。EMS并未延缓ZDF大鼠糖尿病的发病,而喂食RS的大鼠未出现糖尿病迹象。

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