[1] LING M,QUAN L,LAI X,et al. VEGFB promotes myoblasts proliferation and differentiation through VEGFR1-PI3K/Akt signaling pathway[J]. Int J Mol Sci,2021,22(24):13352.
[2] JIANG X,FENG N,ZHOU Y,et al. Slc2a6 regulates myoblast differentiation by targeting LDHB[J]. Cell Commun Signal,2022,20(1):107.
[3] JIANG X,JI S,YUAN F,et al. Pyruvate dehydrogenase B regulates myogenic differentiation via the FoxP1-Arih2 axis[J]. J Cachexia Sar-copenia Muscle,2023,14(1):606-621.
[4] DUAN Y,LI F,TAN B,et al. Metabolic control of myofibers:promi-sing therapeutic target for obesity and type 2 diabetes[J]. Obes Rev,2017,18(6):647-659.
[5] HASHEMI GORADEL N,NAJAFI M,SALEHI E,et al. Cyclooxygenase-2 in cancer:a review[J]. J Cell Physiol,2019,234(5):5683-5699.
[6] POZNYAK A V,BHARADWAJ D,PRASAD G,et al. Renin-angiotensin system in pathogenesis of atherosclerosis and treatment of CVD[J]. Int J Mol Sci,2021,22(13):6702.
[7] PAN Y,CAO S,TANG J,et al. Cyclooxygenase-2 in adipose tissue macrophages limits adipose tissue dysfunction in obese mice[J]. J Clin Invest,2022,132(9):e152391.
[8] CHAN P C,LIAO M T,HSIEH P S. The dualistic effect of COX-2-mediated signaling in obesity and insulin resistance[J]. Int J Mol Sci,2019,20(13):3115.
[9] MO C,WANG Z,BONEWALD L,et al. Multi-staged regulation of lipid signaling mediators during myogenesis by COX-1/2 pathw-ays[J]. Int J Mol Sci,2019,20(18):4326.
[10] SILVA N C,ALVAREZ A M,DEOCESANO-PEREIRA C,et al. Catalytically active phospholipase A(2) myotoxin from Crotalus durissus terrificus induces proliferation and differentiation of myoblasts dependent on prostaglandins produced by both COX-1 and COX-2 pathways[J]. Int J Biol Macromol,2021,187:603-613.
[11] ALVAREZ A M,DEOCESANO-PEREIRA C,TEIXEIRA C,et al. IL-1beta and TNF-alpha modulation of proliferated and committed myoblasts:IL-6 and COX-2-derived prostaglandins as key actors in the mechanisms involved[J]. Cells,2020,9(9):2005.
[12] PENG Y,XU M,DOU M,et al. MicroRNA-129-5p inhibits C2C12 myogenesis and represses slow fiber gene expression in vitro[J]. Am J Physiol Cell Physiol,2021,320(6):C1031-C1041.
[13] ZHANG Y,YANG M,ZHOU P,et al. beta-Hydroxy-beta-methylbutyrate-induced upregulation of mir-199a-3p contributes to slow-to-fast muscle fiber type conversion in mice and C2C12 cells[J]. J Agric Food Chem,2020,68(2):530-540.
[14] LIU J,LIANG X,ZHOU D,et al. Coupling of mitochondrial function and skeletal muscle fiber type by a miR-499/Fnip1/AMPK circuit[J]. EMBO Mol Med,2016,8(10):1212-1228.
[15] LIU S,YANG D,YU L,et al. Effects of lycopene on skeletal muscle-fiber type and high-fat diet-induced oxidative stress[J]. J Nutr Biochem,2021,87:108523.
[16] HUANG B,JIAO Y,ZHU Y,et al. Mdfi promotes C2C12 cell differentiation and positively modulates fast-to-slow-twitch muscle fiber transformation[J]. Front Cell Dev Biol,2021,9:605875.
[17] SUN D,AN J,CUI Z,et al. CircCSDE1 regulates proliferation and differentiation of C2C12 myoblasts by sponging miR-21-3p[J]. Int J Mol Sci,2022,23(19):12038.
[18] LEE H S,LEE J,LEE S H,et al. 3-MCPD(3-monochloro-1,2-propanediol) inhibit myogenic differentiation in murine skeletal myoblasts[J]. Chem Biol Interact,2021,336:109311.
[19] TSUKAMOTO S,SHIBASAKI A,NAKA A,et al. Lactate promotes myoblast differentiation and myotube hypertrophy via a pathway involving MyoD in vitro and enhances muscle regeneration in vivo[J]. Int J Mol Sci,2018,19(11):3649.
[20] CHEN R,LEI S,SHE Y,et al. Lnc-GD2H promotes proliferation by forming a feedback loop with c-Myc and enhances differentiation through interacting with NACA to upregulate Myog in C2C12 myoblasts[J]. Front Cell Dev Biol,2021,9:671857.
[1]李 青,郭 刚,Bilan Philip,等.电刺激促进大鼠骨骼肌细胞GLUT4转位并激活Akt信号通路[J].天津医科大学学报,2014,20(02):102.
LI Qing,GUO Gang,Bilan Philip,et al.Electric pulse stimulation-induced GLUT4 translocation and activated Akt signaling pathway in L6-GLUT4myc-AS160 myotubes[J].Journal of Tianjin Medical University,2014,20(02):102.
[2]刘 倩,胡 芳,牛文彦.AMPK腺病毒载体在小鼠骨骼肌中的表达和作用[J].天津医科大学学报,2016,22(01):1.
LIU Qian,HU Fang,NIU Wen-yan.Effect and expression of AMPK adenovirus on mouse skeletal muscle[J].Journal of Tianjin Medical University,2016,22(02):1.
[3]吕晓婷,洪宇桁,牛文彦.短链脂肪酸对C2C12小鼠骨骼肌细胞AMPK的作用研究[J].天津医科大学学报,2019,25(01):1.
LV Xiao-ting,HONG Yu-heng,NIU Wen-yan.Effect of short-chain fatty acids on AMPK in mouse C2C12 skeletal muscle cells[J].Journal of Tianjin Medical University,2019,25(02):1.
[4]齐睿,牛文彦.双氢睾酮逆转棕榈酸诱导的小鼠骨骼肌细胞胰岛素抵抗及其机制[J].天津医科大学学报,2022,28(02):140.
QI Rui,NIU Wen-yan.Palmitic acid-induced insulin resistance in mouse skeletal muscle cells reversed by dihydrotestosterone and its mechanism[J].Journal of Tianjin Medical University,2022,28(02):140.
[5]岳莹莹,穆红,牛文彦.Axin1调节骨骼肌GLUT4蛋白表达的作用研究[J].天津医科大学学报,2023,29(01):36.
YUE Ying-ying,MU Hong,NIU Wen-yan.Study the effect of Axin1 on regulating GLUT4 protein in skeletal muscle[J].Journal of Tianjin Medical University,2023,29(02):36.
[6]郭洋,张露露,牛文彦.二甲双胍通过调控MSTN抑制小鼠骨骼肌细胞C2C12分化[J].天津医科大学学报,2023,29(01):41.
GUO Yang,ZHANG Lu-lu,NIU Wen-yan.Metformin inhibits the differentiation of C2C12 murine skeletal muscle cells by regulating MSTN[J].Journal of Tianjin Medical University,2023,29(02):41.
[7]张露露,郭洋,王新莉,等.组蛋白去乙酰化酶抑制剂Chidamide抑制C2C12骨骼肌细胞分化及其机制[J].天津医科大学学报,2023,29(02):142.
ZHANG Lu-lu,GUO Yang,WANG Xin-li,et al.The inhibitive effect of histone deacetylase inhibitor Chidamide on the differentiation of C2C12 skeletal muscle cells and its mechanism[J].Journal of Tianjin Medical University,2023,29(02):142.