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Isolation and hypoglycemic effects of water extracts from mulberry leaves in Northeast China

机译:东北桑叶水提取物的分离和降血糖作用

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Diabetes is the main chronic disease that greatly affects human life. Up to now, many measures have been taken to cope with the disease, among which natural products with hypoglycemic effects have aroused great interest. The objective of this study was to evaluate the hypoglycemic effects ofMorus abla L. cv. longsang 1leaf-derived water extractin vitroandin vivo. These leaves were firstly subjected to water extraction, and the obtained products were further isolated for polysaccharides, flavonoids and alkaloids. The alpha-glucosidase activity and anti-protein glycosylation activity of the aqueous extracts were examinedin vitro. Hyperglycemic mouse models were used to evaluate the hypoglycemic effects of the aqueous extract by blood biochemical parameters, intestinal microbiota, and pathological changes to the kidneys. The results showed that the main hypoglycemic components in the aqueous extracts were flavonoids and alkaloids and their inhibition rates against alpha-glucosidase activity were 86.12 +/- 1.79% and 87.29 +/- 1.32%, respectively. High-dose mulberry leaf water extracts can reduce the blood glucose of diabetic mice by 28.17% and improve glucose tolerance by 19.02%. Furthermore, mulberry leaf water extracts could reduce the serum free fatty acid (FFA), tumor necrosis factor-alpha (TNF-alpha), insulin and glycated serum protein content, while alleviating kidney damage and improving intestinal microbiota. These results indicated that the synergistic effects among the different components of mulberry leaves might explain their alleviating effects on diabetic syndrome and thus provide a simple, convenient way to obtain the hypoglycemic components from mulberry leaves.
机译:糖尿病是极大地影响人类生活的主要慢性病。到目前为止,已经采取了许多措施来应对这种疾病,其中天然产物具有低血糖效应引起了极大的兴趣。本研究的目的是评估morus abla l. cv的低血糖作用。龙山1叶衍生的水萃取液vitroandin体内。将这些叶子首先进行水萃取,并将所得产物进一步分离多糖,黄酮类化合物和生物碱。含水提取物的α-葡糖苷酶活性和抗蛋白质糖基化活性被检查体外。高血糖小鼠模型用于评估血液生化参数,肠道微生物的水提取物的低血糖作用,肠道微生物群和肾脏的病理变化。结果表明,含水提取物中的主要降血糖组分是黄酮类化合物,并且它们的生物碱分别对α-葡糖苷酶活性的抑制率分别为86.12 +/- 1.79%和87.29 +/- 1.32%。高剂量桑叶水提取物可以将糖尿病小鼠的血糖降低28.17%,并通过19.02%提高葡萄糖耐量。此外,桑叶水提取物可以减少血清游离脂肪酸(FFA),肿瘤坏死因子 - α(TNF-α),胰岛素和糖化血清蛋白质含量,同时缓解肾脏损伤和改善肠道微生物。这些结果表明,桑叶的不同组分之间的协同效应可以解释它们对糖尿病综合征的缓解作用,从而提供一种简单,方便的方法来获得来自桑叶的低血糖组分。

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    《Food & Function 》 |2020年第4期| 共14页
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  • 正文语种 eng
  • 中图分类 食品工业 ;
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