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Application of great burdock root polysaccharide in preparation of drug for treating non-alcoholic fatty liver disease

A non-alcoholic, fatty liver technology, applied in the field of medicine and health food

Pending Publication Date: 2020-05-01
博德生物技术(德州)有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In addition, the research on the activity of natural polysaccharides is a new hotspot in the prevention and treatment of NAFLD in recent years. Burdock (Arctium lappa L.), as a Compositae herb widely distributed in Asia and Europe, has been proven to have therapeutic effects on diabetes, Hypoglycemic, anti-inflammatory, etc. Existing studies have shown that burdock fruit and burdock tea have a positive effect on assisting in lowering blood fat and body weight. However, there is no information about extracting burdock root with a weight average molecular weight of 3000-5000Da from burdock root. Related reports of polysaccharides for the treatment of non-alcoholic fatty liver

Method used

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  • Application of great burdock root polysaccharide in preparation of drug for treating non-alcoholic fatty liver disease
  • Application of great burdock root polysaccharide in preparation of drug for treating non-alcoholic fatty liver disease
  • Application of great burdock root polysaccharide in preparation of drug for treating non-alcoholic fatty liver disease

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0029] Embodiment 1: the preparation of burdock root polysaccharide

[0030] The preparation method of burdock root polysaccharide comprises steps as follows:

[0031] (1) Select fresh burdock root, inactivate the enzyme in a boiling water bath for 5-10 minutes, peel the burdock root and cut it into thin slices, add deionized water at a material-to-liquid mass ratio of 1:10, set the extraction conditions to 80°C and 60 minutes, Leach for 3 times, combine the extracts and filter with a double-layer filter cloth, then use a Buchner funnel for suction filtration, centrifuge the filtrate at 7000r / min for 30min, and collect the supernatant;

[0032] (2) Place the supernatant obtained in step (1) in a rotary evaporator at 60°C to evaporate and concentrate to 1 / 2 of the original volume, and collect the concentrate; then add 4 times the volume of 95wt% Precipitate with ethanol overnight, centrifuge at 7000r / min for 30min, and retain the precipitate; dissolve the precipitate in deioni...

Embodiment 2

[0036] Example 2: Effects of burdock root polysaccharides on liver weight and liver index in HFD (high fat) induced non-alcoholic fatty liver (NAFLD) mice

[0037] experimental method:

[0038] Establishment of NAFLD mouse model:

[0039] Male Kunming mice, weighing 18±2g / only, were randomly divided into 5 groups, 10 in each group;

[0040] Blank control group: fed with normal feed and normal drinking water until the end of the experimental period;

[0041] HFD model group: fed with high-fat feed and ordinary drinking water until the end of the experimental period;

[0042] Low-dose burdock root polysaccharide group: fed with high-fat feed and ordinary drinking water, after 20 weeks of modeling, burdock root polysaccharide (100mg / kg / d) was administered orally for 8 weeks;

[0043]Burdock root polysaccharide medium-dose group: fed with high-fat feed and ordinary drinking water, after 20 weeks of modeling, burdock root polysaccharide (400mg / kg / d) was administered orally for 8...

Embodiment 3

[0049] Example 3: Effects of Burdock Root Polysaccharides on Liver Histomorphology in NAFLD Mice

[0050] Experimental method: 5 groups of mice after the experimental period in Example 2 were dissected, and the isolated liver tissue was fixed, dehydrated, transparent, dipped in wax, embedded, sectioned and stained, and the morphology of the liver tissue was observed under a microscope change and judge. The upper, middle, lower, left, and right fields of view were selected for each mouse liver tissue staining section to describe the degree of fatty degeneration and inflammatory response of the liver tissue.

[0051] The specific preparation and staining process is as follows:

[0052] Producer:

[0053] 1) Fixation: Soak the excised fresh liver tissue in paraformaldehyde and fix it for 24 hours;

[0054] 2) Dehydration: soak in 85% ethanol for 60 minutes; soak in 95% ethanol for 30 minutes, soak twice; soak in absolute ethanol for 10 minutes, soak three times;

[0055] 3) T...

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Abstract

The invention relates to application of great burdock root polysaccharide in preparation of a drug for treating non-alcoholic fatty liver disease (NAFLD). The great burdock root polysaccharide provided by the invention is prepared from great burdock roots, and is prepared by carrying out enzyme inactivation, extraction, filtration, suction filtration, centrifugation, ethanol precipitation, macroporous resin decolorization, trichloroacetic acid deproteinization and the like; and the great burdock root polysaccharide has an average molecular weight of 3000-5000 Da. According to the application of the great burdock root polysaccharide in the preparation of the drug for treating the NAFLD, NAFLD mouse models are established through induction by high fat diet (HFD), and are used for study on activity of the burdock root polysaccharide in NAFLD treatment; and it is found that the great burdock root polysaccharide is capable of significantly reducing liver weight and liver index so as to reduce accumulation of liver lipid, alleviate liver damage and regulate inflammatory factors so as to achieve positive therapeutic effects on the NAFLD.

Description

technical field [0001] The invention relates to the application of burdock root polysaccharide in preparing medicine for treating non-alcoholic fatty liver, and belongs to the technical field of medicine and health food. Background technique [0002] Nonalcoholic fatty liver disease (NAFLD) refers to a clinicopathological syndrome characterized by fatty degeneration and lipid deposition in hepatic cells, which is not caused by alcohol and other clear liver damage factors, and is often associated with obesity, insulin Resistance (IR), genetic susceptibility, mitochondrial and endoplasmic reticulum oxidative stress, etc. Due to the difference in the degree of steatosis and inflammation in liver tissue, simple fatty liver can develop into non-alcoholic steatohepatitis, and further develop into cirrhosis or even liver cancer. [0003] With the improvement of people's living standards, the incidence of NAFLD is also increasing year by year. Currently, the incidence rate in deve...

Claims

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Application Information

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IPC IPC(8): A61K31/715A61P1/16C08B37/00
CPCA61K31/715A61P1/16C08B37/0003A61K2236/331A61K2236/39A61K2236/53A61K2236/51
Inventor 王佳玥陈希瑞张华忠
Owner 博德生物技术(德州)有限公司
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