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20(S)-ginsenoside Rg3 protects against diabetic muscle atrophy by promoting myoblastic differentiation and protecting mitochondrial function.
Wang, Manying; Cai, Changjiu; Jin, Wenqi; Zhao, Yunyun; Mu, Yue; Ren, Limei; Zhao, Daqing; Liu, Fangbing; Sun, Liwei.
Afiliação
  • Wang M; Research Center of Traditional Chinese Medicine, Affiliated Hospital to Changchun University of Chinese Medicine, Changchun, China.
  • Cai C; Jilin Ginseng Academy, Changchun University of Chinese Medicine, Changchun, China.
  • Jin W; Research Center of Traditional Chinese Medicine, Affiliated Hospital to Changchun University of Chinese Medicine, Changchun, China.
  • Zhao Y; Department of Endocrinology and Metabolism, Affiliated Hospital to Changchun University of Chinese Medicine, Changchun, China.
  • Mu Y; Department of Endocrinology and Metabolism, Affiliated Hospital to Changchun University of Chinese Medicine, Changchun, China.
  • Ren L; Jilin Ginseng Academy, Changchun University of Chinese Medicine, Changchun, China.
  • Zhao D; Jilin Ginseng Academy, Changchun University of Chinese Medicine, Changchun, China.
  • Liu F; Northeast Asia Research Institute of Traditional Chinese Medicine, Changchun, China. Electronic address: fangbing1993@outlook.com.
  • Sun L; Research Center of Traditional Chinese Medicine, Affiliated Hospital to Changchun University of Chinese Medicine, Changchun, China; Key Laboratory of Active Substances and Biological Mechanisms of Ginseng Efficacy, Ministry of Education, Changchun, China. Electronic address: Sunnylilwei@163.com.
Phytomedicine ; 134: 155964, 2024 Nov.
Article em En | MEDLINE | ID: mdl-39168012
ABSTRACT

BACKGROUND:

High glucose levels are a primary cause of diabetes-associated cellular dysfunction and tissue damage. Muscles are the key insulin target organ and therefore, have a high level of sensitivity to hyperglycemia. Our previous study revealed that 20(S)-ginsenoside Rg3 (S-Rg3) is a monomer with a good myogenic differentiation effect in ginsenoside. Furthermore, it can alleviate dexamethasone-induced muscle atrophy by protecting mitochondrial function. However, whether S-Rg3 is effective for diabetic-induced muscle atrophy has not been reported.

PURPOSE:

This study aimed to investigate the protective effect of S-Rg3 on diabetic-induced muscle atrophy.

METHODS:

C2C12 myoblasts, Drosophila, and mice were used as model systems, and the protective effect of S-Rg3 on diabetes was evaluated by assessing the levels of glucose and lipids. Furthermore, H&E, toluidine blue, Giemsa, and immunofluorescence staining were performed to detect the effects of S-Rg3 on muscle atrophy and myogenic differentiation. Moreover, the effects of S-Rg3 on mitochondrial morphology and function were also evaluated by electron microscopy, flow cytometry, and Seahorse. In addition, the underlying pathways of S-Rg3 effects were detected by Western blot. The related inhibitors and gene mutations in Drosophila were used for validation.

RESULTS:

The analysis of diabetic mice model fed with a high-fat diet (HFD) and high glucose (HG) revealed that in the injured C2C12 myoblasts, S-Rg3 treatment significantly reduced the levels of triglycerides and glucose. Furthermore, it promoted the differentiation of myoblasts and inhibited mitochondrial dysfunction. In the Drosophila HG and HFD diabetic model, S-Rg3 reduced triglyceride and trehalose levels, increased climbing distance values, promoted myoblasts differentiation, preserved mitochondrial function, and inhibited muscle atrophy. Mechanistically, the beneficial effects of S-Rg3 were at least partially associated with the phosphorylation of AMPK and FoxO3 together with the inhibition of Smad3 phosphorylation, this pathway was validated by the UAS-AMPKα-RNAi Drosophila model.

CONCLUSION:

In summary, this study revealed mechanistic insights into how S-Rg3 protects against diabetes-associated muscle atrophy in cells, Drosophila, and mice.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Atrofia Muscular / Diferenciação Celular / Mioblastos / Ginsenosídeos / Diabetes Mellitus Experimental / Mitocôndrias Limite: Animals Idioma: En Revista: Phytomedicine Assunto da revista: TERAPIAS COMPLEMENTARES Ano de publicação: 2024 Tipo de documento: Article País de afiliação: China

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Atrofia Muscular / Diferenciação Celular / Mioblastos / Ginsenosídeos / Diabetes Mellitus Experimental / Mitocôndrias Limite: Animals Idioma: En Revista: Phytomedicine Assunto da revista: TERAPIAS COMPLEMENTARES Ano de publicação: 2024 Tipo de documento: Article País de afiliação: China