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Published on: November 6, 2021
Chinese olive (Canarium album L.) fruit regulates glucose utilization by activating AMP-activated protein kinase
Yu-Te Yeh1,2, Ting-Jang Lu1, Guan-Ting Lian1
1Institute of Food Science and Technology, National Taiwan University, Taipei, Taiwan.
Abstract:
A growing body of evidence demonstrates obesity-induced insulin resistance is associated with the development of metabolic diseases. This study was designed to investigate ethyl acetate fraction of Chinese olive fruit extract (CO-EtOAc)-mediated attenuation of obesity and hyperglycemia in a mouse model. About 60% HFD-fed mice were treated intragastrically with CO-EtOAc for last 6 weeks, and body weight, blood biochemical parameters as well as hepatic inflammation response were investigated. Our results showed that CO-EtOAc treatment significantly reduced the formation of hepatic lipid droplets, body weight gain, blood glucose, and improved serum biochemical parameters in HFD-induced obese and insulin resistant mice. We further explored the molecular mechanism underlying the blood glucose modulating effect of CO-EtOAc using L6 myotubes model. We conclude that CO-EtOAc effectively increases the glycogen content and glucose uptake by stimulating the membrane translocation of glucose transporter 4. In addition, CO-EtOAc depolarizes the mitochondrial membrane and decreases the mitochondrial oxygen consumption, which may result in AMPK activation and the consequent mitochondrial fission. This study shows that CO-EtOAc prevents the development of obesity in mice fed with HFD and is also capable of stimulating glucose uptake. The possible mechanism might be due to the effects of CO-EtOAc on activation of AMPK and promotion of mitochondrial fission.
Insights
Ethyl acetate fraction of Chinese olive fruit extract (CO-EtOAc) combats obesity and high blood sugar in mice. It enhances glucose uptake and activates AMPK, offering a potential natural approach to managing metabolic disorders.
Area of Science:
- Metabolic disease research
- Pharmacology
- Nutraceutical science
Background:
- Obesity-induced insulin resistance is a precursor to metabolic diseases.
- Chinese olive fruit extract (CO-EtOAc) is explored for its potential health benefits.
Purpose of the Study:
- To investigate the effects of CO-EtOAc on obesity and hyperglycemia in a mouse model.
- To elucidate the molecular mechanisms behind CO-EtOAc's glucose-lowering effects.
Main Methods:
- High-fat diet (HFD)-fed mice were treated with CO-EtOAc.
- Evaluated body weight, blood glucose, serum biochemical parameters, and hepatic inflammation.
- Utilized L6 myotubes to explore molecular mechanisms of glucose uptake.
Main Results:
- CO-EtOAc significantly reduced body weight gain, hepatic lipid droplets, and blood glucose levels.
- Improved serum biochemical parameters in HFD-induced obese mice.
- Enhanced glucose uptake and glycogen content in L6 myotubes via glucose transporter 4 (GLUT4) translocation.
Conclusions:
- CO-EtOAc effectively mitigates HFD-induced obesity and insulin resistance in mice.
- Mechanisms involve stimulating glucose uptake, activating AMPK, and promoting mitochondrial fission.
- CO-EtOAc shows promise as a natural intervention for metabolic health.
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