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首页> 外文期刊>Frontiers in Microbiology >Hypocholesterolemic and Prebiotic Effects of a Whole-Grain Oat-Based Granola Breakfast Cereal in a Cardio-Metabolic “At Risk” Population
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Hypocholesterolemic and Prebiotic Effects of a Whole-Grain Oat-Based Granola Breakfast Cereal in a Cardio-Metabolic “At Risk” Population

机译:一颗全麦燕麦型麦片早餐谷物在心脏代谢“危险”人口中的脱胆固醇和益生元效果

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Meta-analyses of randomized controlled trials (RTC) have confirmed the hypocholesterolaemic effect of oats and oat based fibers. However, the mechanisms by which oats or oat fractions lower cholesterol is not totally clear. Recognizing the important role of the gut microbiome in metabolism and metabolic disease risk, we examined the impact of whole grain oat Granola (WGO) on the human gut microbiota and cardio-metabolic risk factors using a randomized crossover dietary intervention in at risk individuals (ClinicalTrials.gov Identifier: NCT01925365). We randomized 32 individuals at risk of developing cardio-metabolic disease by virtue of mild hypercholesterolaemia or glucose intolerance, into two groups consuming either 45 g of WGO or non-whole grain (NWG) breakfast cereals daily for two 6-week intervention periods separated by a 4-week wash out period in a randomized, controlled, crossover, double-blinded design. Confirming the cholesterol lowering effect of WGO, we observed a significant time by treatment interaction, for total cholesterol (TC) ( P = 0.0001) and LDL-cholesterol (LDL-C) ( P = 0.02) compared to NWG. A significant time by treatment interaction was also observed for the relative abundance of fecal bifidobacteria ( P = 0.0001), lactobacilli ( P = 0.001) and total bacterial count ( P = 0.008), which were all elevated after consumption of WGO. Daily consumption of WGO resulted in a prebiotic effect on the human gut microbiota composition and significant reductions in TC and LDL-C concentrations. Prebiotic modulation of the human gut microbiota may thus constitute a previously unrecognized mechanism contributing to the hypocholesterolaemic effects of whole grain oat Granola.
机译:随机对照试验(RTC)的荟萃分析证实了燕麦和燕麦纤维的次粒细胞效应。然而,燕麦或燕麦馏分下胆固醇的机制并不完全清楚。认识到肠道微生物组在代谢和代谢疾病风险中的重要作用,我们在风险个体的随机交叉膳食干预中检查了全麦燕麦格兰多拉(WGO)对人体肠道微生物的影响和心脏代谢风险因素(临床治疗.gov标识符:nct01925365)。我们随机凭借轻微的高胆固醇血症或葡萄糖不耐受,将32名患有心血交疾病发育的风险,分为两组占用45克WGO或非全谷物(NWG)早餐谷物,每天为25克的干预期在随机,受控,交叉,双盲设计中为4周洗涤期。确认WGO的胆固醇降低效果,我们通过治疗相互作用观察到的显着时间,总胆固醇(TC)(P = 0.0001)和LDL-胆固醇(LDL-C)(P = 0.02)与NWG相比。对于粪便双歧杆菌(P = 0.0001),乳杆菌(P = 0.001)和总细菌计数(P = 0.008),也观察到通过治疗相互作用的显着时间(p = 0.008),其全部升高。 WGO的日常消费导致对人体肠道微生物群组合物的益生元效应,并占TC和LDL-C浓度的显着降低。因此,人体肠道微生物的益生元调节可以构成先前未被识别的机制,有助于全谷物燕麦格兰诺拉麦片的次粒子溶解作用。

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