Stachydrine alleviates lipid-induced skeletal muscle insulin resistance via AMPK/HO-1-mediated suppression of inflammation and endoplasmic reticulum stress

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초록

Objective Insulin resistance develops due to skeletal muscle inflammation and endoplasmic reticulum (ER) stress. Stachydrine (STA), extracted from Leonurus heterophyllus, has been shown to suppress proliferation and induce apoptosis in breast cancer cells and exert anti-inflammatory properties in the brain, heart, and liver. However, the roles of STA in insulin signaling in skeletal muscle remain unclear. Herein, we examined the impacts of STA on insulin signaling in skeletal muscle under hyperlipidemic conditions and its related molecular mechanisms. Methods Various protein expression levels were determined by Western blotting. Levels of mouse serum cytokines were measured by ELISA. Results We found that STA-ameliorated inflammation and ER stress, leading to attenuation of insulin resistance in palmitate-treated C2C12 myocytes. STA dose-dependently enhanced AMPK phosphorylation and HO-1 expression. Administration of STA attenuated not only insulin resistance but also inflammation and ER stress in the skeletal muscle of high-fat diet (HFD)-fed mice. Additionally, STA-ameliorated glucose tolerance and insulin sensitivity, as well as serum TNF alpha and MCP-1, in mice fed a HFD. Small interfering (si) RNA-associated suppression of AMPK or HO-1 expression abolished the effects of STA in C2C12 myocytes. Conclusions These results suggest that STA activates AMPK/HO-1 signaling, resulting in reduced inflammation and ER stress, thereby improving skeletal muscle insulin resistance. Using STA as a natural ingredient, this research successfully treated insulin resistance and type 2 diabetes. [GRAPHICS] .

키워드

Stachydrine; AMPK; HO-1; Inflammation; ER stress; Insulin resistance; ACTIVATED PROTEIN-KINASE; OXIDATIVE STRESS; HEME OXYGENASE-1; ER STRESS; KAPPA-B; PATHOGENESIS; LIVER; FIBROSIS; PATHWAY; SYSTEM
제목
Stachydrine alleviates lipid-induced skeletal muscle insulin resistance via AMPK/HO-1-mediated suppression of inflammation and endoplasmic reticulum stress
저자
Jung, Tae Woo; Kim, H.; Park, S.Y.; Cho, W.; Oh, H.; Lee, Hyun Jung; Abd El-Aty, A.M.; Hacimuftuoglu, A.; Jeong, Ji Hoon
DOI
10.1007/s40618-022-01866-8
발행일
2022-11
유형
Article
저널명
Journal of Endocrinological Investigation
권
45
호
11
페이지
2181 ~ 2191