ReferenceID 2862

Skimmin Improves Insulin Resistance via Regulating the Metabolism of Glucose: In Vitro and In Vivo Models

Front Pharmacol

Skimmin is the major pharmacologically active component present in Hydrangea paniculata, in the traditional Chinese medicine as an anti-inflammatory agent, and its anti-inflammation and anti-diabetic effect has had been

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Record Fields

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Reference Id
2862
Evidence Id
19452
Core Evidence Id
19452
Source Reference Id
5726
Herb2 Reference Id
HBREF006523
Subject Paper Key
HBIN044181_32425786
Pubmed Id
32425786
Doi
10.3389/fphar.2020.00540
Paper Title
Skimmin Improves Insulin Resistance via Regulating the Metabolism of Glucose: In Vitro and In Vivo Models
Paper Abstract
Skimmin is the major pharmacologically active component present in Hydrangea paniculata, in the traditional Chinese medicine as an anti-inflammatory agent, and its anti-inflammation and anti-diabetic effect has had been studied in previous studies. The metabolism of glucose plays an important role in the pathophysiology of diabetes. Therefore, it was identified as an important target for improving diabetic. Herein, we found that skimmin relieved the palmitic acid and high-fat and high sugar-induced insulin resistance. Furthermore, skimmin enhanced the glucose uptake via inhibiting reactive oxygen species (ROS) and reducing the level of inflammatory correlation factor. Meanwhile, skimmin reduced the glucose output by promoting PI3K/Akt signaling pathway and down-regulating the expression of glycogen synthase kinase-3beta (GSK3beta) and glucose-6-phosphatase (G6Pase). In conclusion, skimmin can improve the insulin resistance by increasing glucose uptake and decreasing glucose output in vitro and in vivo.
Journal
Front Pharmacol
Publish Year
2020
Experiment Subject
Experiment Type
Cell Experiment
Phenotype Related
Diabetes; Diabetic
Paper Title Cn
Paper Title En
Skimmin Improves Insulin Resistance via Regulating the Metabolism of Glucose: In Vitro and In Vivo Models
Bilingual Status
semi_complete