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Pea Fiber and Wheat Bran Fiber Show Distinct Metabolic Profiles in Rats as Investigated by a 1H NMR-Based Metabolomic Approach

机译:通过基于1 H NMR的代谢组学方法研究豌豆纤维和小麦麸皮纤维在大鼠中显示出不同的代谢谱

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摘要

This study aimed to examine the effect of pea fiber (PF) and wheat bran fiber (WF) supplementation in rat metabolism. Rats were assigned randomly to one of three dietary groups and were given a basal diet containing 15% PF, 15% WF, or no supplemental fiber. Urine and plasma samples were analyzed by NMR-based metabolomics. PF significantly increased the plasma levels of 3-hydroxybutyrate, and myo-inositol as well as the urine levels of alanine, hydroxyphenylacetate, phenylacetyglycine, and α-ketoglutarate. However, PF significantly decreased the plasma levels of isoleucine, leucine, lactate, and pyruvate as well as the urine levels of allantoin, bile acids, and trigonelline. WF significantly increased the plasma levels of acetone, isobutyrate, lactate, myo-inositol, and lipids as well as the urine levels of alanine, lactate, dimethylglycine, N-methylniconamide, and α-ketoglutarate. However, WF significantly decreased the plasma levels of amino acids, and glucose as well as the urine levels of acetate, allantoin, citrate, creatine, hippurate, hydroxyphenylacetate, and trigonelline. Results suggest that PF and WF exposure can promote antioxidant activity and can exhibit common systemic metabolic changes, including lipid metabolism, energy metabolism, glycogenolysis and glycolysis metabolism, protein biosynthesis, and gut microbiota metabolism. PF can also decrease bile acid metabolism. These findings indicate that different fiber diet may cause differences in the biofluid profile in rats.
机译:这项研究旨在检查豌豆纤维(PF)和麦麸纤维(WF)在大鼠代谢中的作用。将大鼠随机分为三个饮食组之一,并给予基础饮食,该基础饮食包含15%PF,15%WF或不含补充纤维。通过基于NMR的代谢组学分析尿液和血浆样品。 PF显着增加了3-羟基丁酸和肌醇的血浆水平,以及尿液中的丙氨酸,羟基苯乙酸根,苯基乙酰甘氨酸和α-酮戊二酸的水平。但是,PF显着降低了异亮氨酸,亮氨酸,乳酸盐和丙酮酸的血浆水平,以及尿囊素,胆汁酸和松果碱的尿液水平。 WF显着提高了血浆中丙酮,异丁酸盐,乳酸盐,肌醇和脂质的水平,以及尿液中丙氨酸,乳酸盐,二甲基甘氨酸,N-甲基烟酰胺和α-酮戊二酸的水平。但是,WF显着降低了血浆中的氨基酸,葡萄糖水平以及尿液中的乙酸盐,尿囊素,柠檬酸盐,肌酸,马尿酸盐,羟基苯乙酸盐和曲果奈林的尿水平。结果表明,PF和WF的暴露可以促进抗氧化活性,并且可以表现出常见的全身性代谢变化,包括脂质代谢,能量代谢,糖原分解和糖酵解代谢,蛋白质生物合成和肠道菌群代谢。 PF还可以减少胆汁酸的代谢。这些发现表明,不同的纤维饮食可能会导致大鼠体内生物流体的差异。

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