Vigeo Promotes Myotube Differentiation and Protects Dexamethasone-Induced Skeletal Muscle Atrophy via Regulating the Protein Degradation, AKT/mTOR, and AMPK/Sirt-1/PGC1α Signaling Pathway In Vitro and In Vivo

被引:2
作者
Cheon, Yoon-Hee [1 ]
Lee, Chang-Hoon [1 ,2 ]
Chung, Chong-Hyuk [1 ,2 ]
Kim, Ju-Young [1 ]
Lee, Myeung-Su [1 ,2 ]
机构
[1] Wonkwang Univ, Musculoskeletal & Immune Dis Res Inst, Sch Med, 460 Iksandae Ro, Iksan 54538, South Korea
[2] Wonkwang Univ Hosp, Dept Internal Med, Div Rheumatol, 460 Iksandae Ro, Iksan 54538, South Korea
关键词
Vigeo; nuruk fermentation; muscle atrophy; sarcopenia; dexamethasone; KAPPA-B; GENE; FERMENTATION; MECHANISMS; SARCOPENIA; MICE; MYOD;
D O I
10.3390/nu16162687
中图分类号
R15 [营养卫生、食品卫生]; TS201 [基础科学];
学科分类号
100403 ;
摘要
Sarcopenia, a condition caused by an imbalance between muscle growth and loss, can severely affect the quality of life of elderly patients with metabolic, inflammatory, and cancer diseases. Vigeo, a nuruk-fermented extract of three plants (Eleutherococcus senticosus Maxim (ESM), Achyranthes japonica (Miq.) Nakai (AJN), and Atractylodes japonica Koidzumi (AJK)) has been reported to have anti-osteoporotic effects. However, evidence of the effects of Vigeo on muscle atrophy is not available. Here, in the in vivo model of dexamethasone (Dex)-induced muscle atrophy, Vigeo treatment significantly reversed Dex-induced decreases in calf muscle volume, gastrocnemius (GA) muscle weight, and histological cross-section area. In addition, in mRNA and protein analyses isolated from GA muscle, we observed that Vigeo significantly protected against Dex-induced mouse muscle atrophy by inhibiting protein degradation regulated by atrogin and MuRF-1. Moreover, we demonstrated that Vigeo significantly promoted C2C12 cell line differentiation, as evidenced by the increased width and length of myotubes, and the increased number of fused myotubes with three or more nuclei. Vigeo alleviated the formation of myotubes compared to the control group. Vigeo also significantly increased the mRNA and protein expression of myosin heavy chain (MyHC), MyoD, and myogenin compared to that in the control. Vigeo treatment significantly reduced the mRNA and protein expression of muscle degradation markers atrogin-1 and muscle RING Finger 1 (MuRF-1) in the C2C12 cell line in vitro. Vigeo also activated the AMP-activated protein kinase (AMPK)/silent information regulator 1 (Sirt-1)/peroxisome proliferator-activated receptor-gamma co-activator-1 alpha (PGC1 alpha) mitochondrial biogenesis pathway and the Akt/mTOR protein synthesis signaling pathway in Dex-induced myotube atrophy. These findings suggest that Vigeo may have protective effects against Dex-induced muscle atrophy. Therefore, we propose Vigeo as a supplement or potential therapeutic agent to prevent or treat sarcopenia accompanied by muscle atrophy and degeneration.
引用
收藏
页数:17
相关论文
共 53 条
[1]   SIRT1 Controls the Transcription of the Peroxisome Proliferator-activated Receptor-γ Co-activator-1α (PGC-1α) Gene in Skeletal Muscle through the PGC-1α Autoregulatory Loop and Interaction with MyoD [J].
Amat, Ramon ;
Planavila, Anna ;
Chen, Shen Liang ;
Iglesias, Roser ;
Giralt, Marta ;
Villarroya, Francesc .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2009, 284 (33) :21872-21880
[2]   Myogenic regulatory factors: The orchestrators of myogenesis after 30 years of discovery [J].
Asfour, Hasan A. ;
Allouh, Mohammed Z. ;
Said, Raed S. .
EXPERIMENTAL BIOLOGY AND MEDICINE, 2018, 243 (02) :118-128
[3]   The beneficial therapeutic effects of plant-derived natural products for the treatment of sarcopenia [J].
Bagherniya, Mohammad ;
Mahdavi, Atena ;
Shokri-Mashhadi, Nafiseh ;
Banach, Maciej ;
Von Haehling, Stephan ;
Johnston, Thomas P. ;
Sahebkar, Amirhossein .
JOURNAL OF CACHEXIA SARCOPENIA AND MUSCLE, 2022, 13 (06) :2772-2790
[4]   The balance between glucocorticoids and insulin regulates muscle proteolysis via the ubiquitin-proteasome pathway [J].
Bailey, JL ;
Wang, XN ;
Price, SR .
MINERAL AND ELECTROLYTE METABOLISM, 1999, 25 (4-6) :220-223
[5]   Promoter-specific regulation of MyoD binding and signal transduction cooperate to pattern gene expression [J].
Bergstrom, DA ;
Penn, BH ;
Strand, A ;
Perry, RLS ;
Rudnicki, MA ;
Tapscott, SJ .
MOLECULAR CELL, 2002, 9 (03) :587-600
[6]   Akt/mTOR pathway is a crucial regulator of skeletal muscle hypertrophy and can prevent muscle atrophy in vivo [J].
Bodine, SC ;
Stitt, TN ;
Gonzalez, M ;
Kline, WO ;
Stover, GL ;
Bauerlein, R ;
Zlotchenko, E ;
Scrimgeour, A ;
Lawrence, JC ;
Glass, DJ ;
Yancopoulos, GD .
NATURE CELL BIOLOGY, 2001, 3 (11) :1014-1019
[7]   Identification of ubiquitin ligases required for skeletal muscle atrophy [J].
Bodine, SC ;
Latres, E ;
Baumhueter, S ;
Lai, VKM ;
Nunez, L ;
Clarke, BA ;
Poueymirou, WT ;
Panaro, FJ ;
Na, EQ ;
Dharmarajan, K ;
Pan, ZQ ;
Valenzuela, DM ;
DeChiara, TM ;
Stitt, TN ;
Yancopoulos, GD ;
Glass, DJ .
SCIENCE, 2001, 294 (5547) :1704-1708
[8]   Gene Regulatory Networks and Transcriptional Mechanisms that Control Myogenesis [J].
Buckingham, Margaret ;
Rigby, Peter W. J. .
DEVELOPMENTAL CELL, 2014, 28 (03) :225-238
[9]   AMPK regulates energy expenditure by modulating NAD+ metabolism and SIRT1 activity [J].
Canto, Carles ;
Gerhart-Hines, Zachary ;
Feige, Jerome N. ;
Lagouge, Marie ;
Noriega, Lilia ;
Milne, Jill C. ;
Elliott, Peter J. ;
Puigserver, Pere ;
Auwerx, Johan .
NATURE, 2009, 458 (7241) :1056-U140
[10]   Suppression of atrogin-1 and MuRF1 prevents dexamethasone-induced atrophy of cultured myotubes [J].
Castillero, Estibaliz ;
Alamdari, Nima ;
Lecker, Stewart H. ;
Hasselgren, Per-Olof .
METABOLISM-CLINICAL AND EXPERIMENTAL, 2013, 62 (10) :1495-1502