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 PMID:29203961  

Oleuropein improves insulin resistance in skeletal muscle by promoting the translocation of GLUT4.

Yoko Fujiwara | Chisato Tsukahara | Naoe Ikeda | Yasuko Sone | Tomoko Ishikawa | Ikuyo Ichi | Taisuke Koike | Yoshinori Aoki
Journal of clinical biochemistry and nutrition | 2017

As the beneficial effects of the Mediterranean diet on human health are well established, the phenolic compounds in olive oil have been gaining interest. Oleuropein, a major phenolic compound in olives, is known to reduce the blood glucose levels in alloxan-induced diabetic rats and rabbits, however, its effect on type 2 diabetes caused by obesity is not clear. The purpose of this study is clarifying the effect of oleuropein on the glucose tolerance in skeletal muscle under the condition of lipotoxicity caused by type 2 diabetes. Oleuropein enhanced glucose uptake in C2C12 cells without insulin. Translocation of glucose transporter 4 (GLUT4) into the cell membrane was promoted by activation of adenosine monophosphate-activated protein kinase (AMPK) but not protein kinase B (Akt). Physiological concentration of oleuropein (10 µM) was sufficient to express beneficial effects on C2C12 cells. Oleuropein prevented palmitic acid-induced myocellular insulin resistance. Furthermore, in gastrocnemius muscles of mice fed a high fat diet, oleuropein also induced the GLUT4 localization into cell membrane. These results suggest the possibility of oleuropein to be effective for type 2 diabetes by reducing insulin resistance in skeletal muscles.

Pubmed ID: 29203961

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RIKEN BioResource Center (tool)

RRID:SCR_003250

RIKEN BRC contributes to advancement of life science research by collecting, preserving and distributing biological resources such as experimental animals, experimental plants, cultured cell lines, genetic materials (DNA), and associated bioinformatics. The RIKEN BRC develops novel bioresources to promote scientific research and new technologies to increase the value of bioresources, and also to implement effective procedures for the preservation, quality control and usage of bioresources. The RIKEN BRC is working closely with institutions in Japan and abroad.

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Cell Signaling Technology (tool)

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Privately held company that develops and produces antibodies, ELISA kits, ChIP kits, proteomic kits, and other related reagents used to study cell signaling pathways that impact human health.

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RRID:CVCL_0188

Cell line C2C12 is a Spontaneously immortalized cell line with a species of origin Mus musculus (Mouse)

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C57BL/6J (tool)

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Mus musculus with name C57BL/6J from IMSR.

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