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Alteration of Gut Bacteria and Metabolomes after Glucaro-1,4-lactone Treatment Contributes to the Prevention of Hypercholesterolemia

机译:Glucaro-1,4-内酯处理后肠道细菌和代谢组的改变有助于预防高胆固醇血症

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摘要

D-Glucaro-1,4-lactone (1,4-GL) has been shown to have a hypocholesterolemic effect in rats and human subjects. However, little information is known concerning the alteration of metabolome associated with the effect. Here, we show that 1,4-GL delays the development of hypercholesterolemia with the coadministration of a high-fat, high-cholesterol diet (HFHC) in rats. Metabonomic results based on proton nuclear magnetic resonance indicate that urinary trimethylamine N-oxide, trimethylamine, lactate, acetate, formate, and creatinine are significantly altered after 1,4-GL and HFHC treatments. Colonic flora test results reveal that the quantity of Bifidobacterium and Lactobacillus in the intestines respectively increase by about 1.7- and 4.2-fold in rats treated with 1,4-GL compared with those in the control group. Rats that were coadministered with HFHC and 1,4-GL exhibit normal levels of lactate and acetate in serum and display urinary excretions of lactate and acetate that are 2 to 3 times higher compared with those treated with HFHC alone. The results imply that the increased probiotic quantities and urinary excretion of breakdown products of fat/cholesterol after 1,4-GL treatment contribute to the prevention of hypercholesterolemia. Our study offers insights into the model of action for 1,4-GL in preventing hypercholesterolemia.
机译:已显示D-葡萄糖醛-1,4-内酯(1,4-GL)在大鼠和人类受试者中具有降胆固醇作用。然而,关于与该作用相关的代谢组改变的信息知之甚少。在这里,我们显示1,4-GL通过与高脂肪,高胆固醇饮食(HFHC)共同给药而延迟高胆固醇血症的发展。基于质子核磁共振的代谢组学结果表明,在1,4-GL和HFHC处理后,尿中的三甲胺N-氧化物,三甲胺,乳酸盐,乙酸盐,甲酸和肌酐显着改变。结肠菌群测试结果显示,与对照组相比,用1,4-GL处理的大鼠肠中双歧杆菌和乳杆菌的数量分别增加了约1.7和4.2倍。与HFHC和1,4-GL共同给药的大鼠血清中的乳酸和乙酸盐水平正常,并且乳酸和乙酸盐的尿排泄量比单独HFHC处理的高2至3倍。结果表明,在1,4-GL处理后,增加的益生菌数量和脂肪/胆固醇分解产物的尿排泄有助于预防高胆固醇血症。我们的研究为1,4-GL预防高胆固醇血症的作用模型提供了见识。

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