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首页> 外文期刊>Journal of Food Science and Technology >Protective effects of dietary kaempferol glycoside components from unripe soybean (Edamame, Glycine max L. Merrill. 'Jindai') leaves and their serous metabolite on carbon tetrachloride-induced liver injury mice
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Protective effects of dietary kaempferol glycoside components from unripe soybean (Edamame, Glycine max L. Merrill. 'Jindai') leaves and their serous metabolite on carbon tetrachloride-induced liver injury mice

机译:膳食Kaempferol糖苷组分来自未成熟的大豆(eDamame,甘氨酸Max L. Merrill。'金达')叶片及其浆液代谢物对四氯化碳诱导的肝损伤小鼠

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摘要

The study investigated the protective effects of kaempferol galactoside (KG) components in mice, which were separated from Jindai soybean leaves (JDL) and mainly composed by two kaempferol galactosides. Further, KG-related metabolites in serum of mice were identified by Tof-MS. Results showed that both JDL and KG prevented the CCl4-induced increases in serum aspartate aminotransferase and serum alanine aminotransferase. Additionally, mice treated with KG had significantly decreased TBARS and TNF-alpha levels, compared to CCl4-treated mice. Serous analysis showed that kaempferol, glucuronidated kaempferol and methylated kaempferol with a glucuronic acid moiety were identified in the serum of mice fed unripe soybean leaves or kaempferol galactosides isolated from the leaves. The results indicated that kaempferol 3-O-galactoside connected to other glycosides via galactose might be hydrolyzed in the gastro-intestinal tract and/or epithelium cells to release kaempferol, followed by glucuronidation and/or methylation in the liver to contribute to a reduction in liver injury. The use of raw leaves containing kaempferol galactosides as food materials may contribute to a reduction in oxidation-related diseases.
机译:该研究研究了Kaempferol醇糖苷(KG)组分在小鼠中的保护作用,其与金达大豆叶(JDL)分离,主要由两种Kaempferol吡糖醇组成。此外,通过TOF-MS鉴定小鼠血清中的KG相关代谢物。结果表明,JDL和kg均防止了CCL4诱导的血清天冬氨酸氨基转移酶和血清丙氨酸氨基转移酶的增加。另外,与CCl4处理的小鼠相比,用kg处理的小鼠显着降低了TBAR和TNF-α水平。在喂食未成熟的大豆叶或从叶子中分离的小鼠血清中,鉴定了Kaempferolol,葡糖醛化的Kaempferol和甲基化的kaempferol和甲基化的kaempferol与葡萄糖醛酸部分的血清。结果表明,通过半乳糖连接到其他糖苷的Kaempferol 3-O-半乳糖苷可以在胃肠道和/或上皮细胞中水解,以释放Kaempferol,然后在肝脏中进行葡糖醛酸和/或甲基化,有助于减少肝伤。使用含有Kaempferol Galactosides作为食品材料的原料叶可能有助于氧化相关疾病的降低。

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