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D-阿洛酮糖喂养对雄性Wistar大鼠肝脏代谢组学图谱的影响。

Effect of D-allulose feeding on the hepatic metabolomics profile in male Wistar rats.

作者信息

Kanasaki Akane, Niibo Misato, Iida Tetsuo

机构信息

Research and Development, Matsutani Chemical Industry Co., Ltd, 5-3 Kita-Itami, Itami City, Hyogo 664-8508, Japan.

出版信息

Food Funct. 2021 May 11;12(9):3931-3938. doi: 10.1039/d0fo03024d.

Abstract

The rare sugar d-allulose is a C-3 epimer of d-fructose and is known to have several health benefits such as anti-obesity and anti-diabetic effects through the alteration of enzymatic and genetic expressions in each organ. Most of the ingested d-allulose is absorbed in the small intestine and then rapidly excreted in the urine. As d-allulose was reported to be present in the liver before it is excreted, d-allulose may modulate some hepatic metabolites including glucose and lipid metabolism. Therefore, we investigated the hepatic metabolomics profile in rats after feeding d-allulose to study the overall alteration of hepatic metabolism. Wistar rats were fed an AIN-93G diet with/without 3% d-allulose for 4 weeks. Their liver samples were then collected and subjected to metabolomics analysis using CE-TOFMS and LC-TOFMS. The results showed that d-allulose induced significant increases in 42 metabolites and significant decreases in 21 metabolites. In particular, we found at the substance levels that d-allulose regulated metabolites involved in the metabolic pathways of fatty acid β-oxidation, cholesterol, and bile acid. In addition, this study newly showed the possibility that d-allulose alters glucuronic acid/xylulose pathways. In the future, we need more detailed research on the metabolomics profile of other organs related to these pathways for a comprehensive understanding of d-allulose functions.

摘要

稀有糖D-阿洛酮糖是D-果糖的C-3差向异构体,已知具有多种健康益处,例如通过改变各器官中的酶表达和基因表达产生抗肥胖和抗糖尿病作用。摄入的大部分D-阿洛酮糖在小肠中被吸收,然后迅速经尿液排出。由于据报道D-阿洛酮糖在排泄前存在于肝脏中,它可能会调节一些肝脏代谢物,包括葡萄糖和脂质代谢。因此,我们研究了给大鼠喂食D-阿洛酮糖后其肝脏的代谢组学特征,以研究肝脏代谢的整体变化。将Wistar大鼠喂食含/不含3%D-阿洛酮糖的AIN-93G饮食4周。然后收集它们的肝脏样本,使用CE-TOFMS和LC-TOFMS进行代谢组学分析。结果表明,D-阿洛酮糖使42种代谢物显著增加,21种代谢物显著减少。特别是,我们在物质水平上发现D-阿洛酮糖调节参与脂肪酸β-氧化、胆固醇和胆汁酸代谢途径的代谢物。此外,本研究首次表明D-阿洛酮糖改变葡萄糖醛酸/木酮糖途径的可能性。未来,我们需要对与这些途径相关的其他器官的代谢组学特征进行更详细的研究,以全面了解D-阿洛酮糖的功能。

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