Establishment of diabetic zebrafish model and evaluation of hypoglycemic activity of antarctic krill enzymatic hydrolysates
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(1. College of Biology and Food Engineering, Guangdong University of Education, Guangzhou, Guangdong 510303, China; 2. College of Food Science and Technology, Guangdong Ocean University, Zhanjiang, Guangdong 524088, China; 3. Laboratory of Biological Psychiatry, St. Petersburg State University, St. Petersburg 191036, Russia)

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    Abstract:

    Diabetic zebrafish model was established quickly by combination of 20 g/L glucose solution immersing and 10% cholesterol feeding for 20 days. The model established was used to evaluate the in vivo hypoglycemic activity of 3 000~100 Da AKEH. The effects of it on physicochemical indexes such as DPP-IV activity, glucose, triglyceride, cholesterol and expression levels of relative gene such as Insa, Glucagon and Pck1 of diabetic zebrafish were investigated. The results showed that the physicochemical index and blood glucose related gene expression level of the 1.35 g/L and 2.7 g/L concentrations were not significant difference. 3 000~100 Da AKEH of 5.4 g/L could be reduced the level of physicochemical index, significantly inhibited DPP-IV activity, the expression level of Glucagon and Pck1 gene and improved Insa expression level. Therefore, 3 000~100 Da AKEH has certain hypoglycemic effects.

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吉薇,章超桦,ALLANVKalueff,等.糖尿病斑马鱼模型的建立与南极磷虾酶解物降血糖活性评价[J].食品与机械英文版,2019,(6):24-29.

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  • Received:October 09,2018
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  • Online: November 25,2022
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