2022Journal of Functional FoodsOpen access

Protective effect of 5-heptadecylresorcinol against obesity-associated skeletal muscle dysfunction by modulating mitochondrial biogenesis via the activation of SIRT3/PGC-1α signaling pathway

Ziyuan Wang, Qing Li, Yiming Hao, Zongwei Wang, Haihong Yang, Jie Liu, Jing Wang

Open full text 13 citations

Abstract

Obesity-associated skeletal muscle mitochondrial dysfunction contributed to exercise capacity decline. 5-heptadecylresorcinol (AR-C17) has been proven effective against obesity and insulin resistance. However, its effects on skeletal muscle performance remains unclear. In this study, we investigate whether AR-C17 could protect against high-fat diet induced C57 BL/6J mice skeletal muscle dysfunction. The results indicated that AR-C17 intervention significantly improved skeletal muscle exercise capacity according to the strength and endurance test. AR-C17 showed no effect on skeletal muscle myofiber type conversion and myogenesis, but could significantly enhance PGC-1α mediated mitochondrial biogenesis. Moreover, AR-C17 significantly attenuated PA-induced reduction of mitochondrial DNA content in C2C12 cells and promoted mitochondrial biogenesis regulator gene PGC-1α and its downstream signaling pathway protein expression. In addition, AR-C17 increased the protein levels of SIRT3, while the protective effect was abolished by SIRT3 inhibitor (3-TYP), indicating AR-C17 ameliorated obesity induced skeletal muscle dysfunction might through SIRT3/PGC-1α signaling pathway.

Open-access reader

About this research paper

What this paper is about

Obesity-associated skeletal muscle mitochondrial dysfunction contributed to exercise capacity decline. 5-heptadecylresorcinol (AR-C17) has been proven effective against obesity and insulin resistance. However, its effects on skeletal muscle performance remains unclear. In this study, we investigate whether AR-C17 could protect against high-fat diet induced C57 BL/6J mice skeletal muscle dysfunction. The results indicated that AR-C17 intervention significantly improved skeletal muscle exercise capacity according to the strength and endurance test. AR-C17 showed no effect on skeletal muscle myofiber type conversion and myogenesis, but could significantly enhance PGC-1α mediated mitochondrial biogenesis. Moreover, AR-C17 significantly attenuated PA-induced reduction of mitochondrial DNA content in C2C12 cells and promoted mitochondrial biogenesis regulator gene PGC-1α and its downstream signaling pathway protein expression. In addition, AR-C17 increased the protein levels of SIRT3, while the protective effect was abolished by SIRT3 inhibitor (3-TYP), indicating AR-C17 ameliorated obesity induced skeletal muscle dysfunction might through SIRT3/PGC-1α signaling pathway.

Why it matters

OpenAlex reports 13 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Obesity-associated skeletal muscle mitochondrial dysfunction contributed to exercise capacity decline. 5-heptadecylresorcinol (AR-C17) has been proven effective against obesity and insulin resistance. However, its effects on skeletal muscle performance remains unclear. In this study, we investigate whether AR-C17 could protect against high-fat diet induced C57 BL/6J mice skeletal muscle dysfunction. The results indicated that AR-C17 intervention significantly improved skeletal muscle exercise capacity according to the strength and endurance test. AR-C17 showed no effect on skeletal muscle myofiber type conversion and myogenesis, but could significantly enhance PGC-1α mediated mitochondrial biogenesis. Moreover, AR-C17 significantly attenuated PA-induced reduction of mitochondrial DNA content in C2C12 cells and promoted mitochondrial biogenesis regulator gene PGC-1α and its downstream signaling pathway protein expression. In addition, AR-C17 increased the protein levels of SIRT3, while the protective effect was abolished by SIRT3 inhibitor (3-TYP), indicating AR-C17 ameliorated obesity induced skeletal muscle dysfunction might through SIRT3/PGC-1α signaling pathway.

Key concepts: Skeletal muscle, Mitochondrial biogenesis, SIRT3, Myogenesis, Endocrinology, Internal medicine, Myocyte, Insulin resistance

Related papers

Back to paper searchBrowse research topicsOriginal source
Protective effect of 5-heptadecylresorcinol against obesity-associated skeletal muscle dysfunction by modulating mitochondrial biogenesis via the activation of SIRT3/PGC-1α signaling pathway — Research Paper | ScholarLens