Sodium fluoride induced skeletal muscle changes: Degradation of proteins and signaling mechanism

被引:25
作者
Shenoy, P. Sudheer [1 ]
Sen, Utsav [1 ]
Kapoor, Saketh [1 ]
Ranade, Anu V. [2 ]
Chowdhury, Chitta R. [3 ,4 ]
Bose, Bipasha [1 ]
机构
[1] Yenepoya Deemed Univ, Yenepoya Res Ctr, Stem Cells & Regenerat Med Ctr, Univ Rd, Mangalore 575018, Karnataka, India
[2] Univ Sharjah, Coll Med, Sharjah, U Arab Emirates
[3] Nitte Univ, AB Shetty Mem Inst Dent Sci, Dept Oral Biol & Genom Studies, Mangalore 575018, Karnataka, India
[4] De Montfort Univ, Biomed & Environm Hlth Grp, Sch Hlth & Life Sci, Leicester, Leics, England
关键词
Sodium fluoride (NaF); Parts per million (ppm); C2C12; Myoblasts; Differentiation; Myotubes; Hypertrophy; Atrophy; NF-KAPPA-B; OXIDATIVE STRESS; DENTAL FLUOROSIS; DNA-DAMAGE; ATROPHY; GROWTH; MYOSTATIN; EXPRESSION; APOPTOSIS; HYPERTROPHY;
D O I
10.1016/j.envpol.2018.10.034
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Fluoride is a well-known compound for its usefulness in healing dental caries. Similarly, fluoride is also known for its toxicity to various tissues in animals and humans. It causes skeletal fluorosis leading to osteoporosis of the bones. We hypothesized that when bones are affected by fluoride, the skeletal muscles are also likely to be affected by underlying molecular events involving myogenic differentiation. Murine myoblasts C2C12 were cultured in differentiation media with or without NaF (1 ppm-5 ppm) for four days. The effects of NaF on myoblasts and myotubes when exposed to low (1.5 ppm) and high concentration (5 ppm) were assessed based on the proliferation, alteration in gene expression, ROS production, and production of inflammatory cytokines. Changes based on morphology, multinucleated myotube formation, expression of MyHC1 and signaling pathways were also investigated. Concentrations of NaF tested had no effects on cell viability. NaF at low concentration (1.5 ppm) caused myoblast proliferation and when subjected to myogenic differentiation it induced hypertrophy of the myotubes by activating the IGF-1/AKT pathway. NaF at higher concentration (5 ppm), significantly inhibited myotube formation, increased skeletal muscle catabolism, generated reactive oxygen species (ROS) and inflammatory cytokines (TNF-alpha and IL-6) in C2C12 cells. NaF also enhanced the production of muscle atrophy related genes, myostatin, and atrogin-1. The data suggest that NaF at low concentration can be used as muscle enhancing factor (hypertrophy), and at higher concentration, it accelerates skeletal muscle atrophy by activating the ubiquitin-proteosome pathway. (C) 2018 Elsevier Ltd. All rights reserved.
引用
收藏
页码:534 / 548
页数:15
相关论文
共 50 条
[41]   Caloric Restriction Normalizes Obesity-Induced Alterations on Regulators of Skeletal Muscle Growth Signaling [J].
Dungan, Cory M. ;
Li, Ji ;
Williamson, David L. .
LIPIDS, 2016, 51 (08) :905-912
[42]   Histone Modification: A Mechanism for Regulating Skeletal Muscle Characteristics and Adaptive Changes [J].
Kawano, Fuminori .
APPLIED SCIENCES-BASEL, 2021, 11 (09)
[43]   Smad2/3 Proteins Are Required for Immobilization-induced Skeletal Muscle Atrophy [J].
Tando, Toshimi ;
Hirayama, Akiyoshi ;
Furukawa, Mitsuru ;
Sato, Yuiko ;
Kobayashi, Tami ;
Funayama, Atsushi ;
Kanaji, Arihiko ;
Hao, Wu ;
Watanabe, Ryuichi ;
Morita, Mayu ;
Oike, Takatsugu ;
Miyamoto, Kana ;
Soga, Tomoyoshi ;
Nomura, Masatoshi ;
Yoshimura, Akihiko ;
Tomita, Masaru ;
Matsumoto, Morio ;
Nakamura, Masaya ;
Toyama, Yoshiaki ;
Miyamoto, Takeshi .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2016, 291 (23) :12184-12194
[44]   Disruption of REDD1 gene ameliorates sepsis-induced decrease in mTORC1 signaling but has divergent effects on proteolytic signaling in skeletal muscle [J].
Steiner, Jennifer L. ;
Crowell, Kristen T. ;
Kimball, Scot R. ;
Lang, Charles H. .
AMERICAN JOURNAL OF PHYSIOLOGY-ENDOCRINOLOGY AND METABOLISM, 2015, 309 (12) :E981-E994
[45]   L-Theanine attenuates oxidative damage induced by heat stress through the PI3K/AKT/Nrf2 signaling pathway in skeletal muscle cells [J].
Wu, Qiong ;
Wan, Xiaochun ;
Wang, Dongxu ;
Ma, Mingqi ;
Hu, Xinru ;
Chen, Xingyong ;
Ding, Xiaoling ;
Zhang, Cheng .
POULTRY SCIENCE, 2025, 104 (06)
[46]   Abnormalities of Calcium Handling Proteins in Skeletal Muscle Mirror Those of the Heart in Humans With Heart Failure: A Shared Mechanism? [J].
Middlekauff, Holly R. ;
Vigna, Chris ;
Verity, M. Anthony ;
Fonarow, Gregg C. ;
Horwich, Tamara B. ;
Hamilton, Michele A. ;
Shieh, Perry ;
Tupling, A. Russell .
JOURNAL OF CARDIAC FAILURE, 2012, 18 (09) :724-733
[47]   Endothelial nitric oxide synthase is involved in calcium-induced Akt signaling in mouse skeletal muscle [J].
Drenning, Jason A. ;
Lira, Vitor A. ;
Soltow, Quinlyn A. ;
Canon, Claire N. ;
Valera, Lauren M. ;
Brown, Dana L. ;
Criswell, David S. .
NITRIC OXIDE-BIOLOGY AND CHEMISTRY, 2009, 21 (3-4) :192-200
[48]   Endurance exercise training under normal diet conditions activates skeletal muscle protein synthesis and inhibits protein degradation signaling except MuRF1 [J].
Gholipour, Majid ;
Seifabadi, Mastaneh ;
Asad, Mohammad Reza .
SPORT SCIENCES FOR HEALTH, 2022, 18 (03) :1033-1041
[49]   The Alleviative Effect of Sodium Butyrate on Dexamethasone-Induced Skeletal Muscle Atrophy [J].
Zhao, Xingchen ;
Zhu, Mingqiang ;
Wang, Zifan ;
Gao, Ming ;
Long, Yifei ;
Zhou, Shuo ;
Wang, Wei .
CELL BIOLOGY INTERNATIONAL, 2025, 49 (05) :508-521
[50]   IGF-1 Regulates Skeletal Muscle Degradation and Remolding in Ventilator-Induced Diaphragmatic Dysfunction by Mediating FOXO1 Expression [J].
Yang, Luyu ;
Jiang, Xiaohong ;
Fu, Shouzhi ;
Tan, Jinhui ;
Dian, Wankang ;
Zhou, Yumei .
DISCOVERY MEDICINE, 2024, 36 (181) :402-414