[1] GAO Y, ARFAT Y, WANG H, et al. Muscle atrophy induced by mechanical unloading: mechanisms and potential countermeasures[J]. Front Physiol, 2018, 9: 235. [2] CIANFORLINI M, GRASSI M, COPPA V, et al. Skeletal muscle repair in a rat muscle injury model: the role of growth hormone (GH) injection[J]. Eur Rev Med Pharmacol Sci, 2020, 24(16): 8566-8572. [3] BIAN A, MA Y, ZHOU X, et al. Association between sarcopenia and levels of growth hormone and insulin-like growth factor-1 in the elderly[J]. BMC Musculoskelet Disord, 2020, 21(1): 214. [4] FERRARI U, SCHMIDMAIER R, JUNG T, et al. IGF-I/IGFBP3/ALS deficiency in sarcopenia: low ghbp suggests GH resistance in a subgroup of geriatric patients[J]. J Clin Endocrinol Metab, 2021, 106(4): e1698-e1707. [5] SMITH R G, THORNER M O. Growth hormone secretagogues as potential therapeutic agents to restore growth hormone secretion in older subjects to those observed in young adults[J]. J Gerontol A Biol Sci Med Sci, 2023, 78(Suppl1): 38-43. [6] BARONE B, NAPOLITANO L, ABATE M, et al. The role of testosterone in the elderly: What do we know?[J]. Int J Mol Sci, 2022, 23(7): 3535. [7] KRUSE R, PETERSSON S J, CHRISTENSEN L L, et al. Effect of long-term testosterone therapy on molecular regulators of skeletal muscle mass and fibre-type distribution in aging men with subnormal testosterone[J]. Metabolism, 2020, 112: 154347. [8] FONSECA G, DWORATZEK E, EBNER N, et al. Selective androgen receptor modulators (SARMs) as pharmacological treatment for muscle wasting in ongoing clinical trials[J]. Expert Opin Investig Drugs, 2020, 29(8): 881-891. [9] CHAIYASING R, SUGIURA A, ISHIKAWA T, et al. Estrogen modulates the skeletal muscle regeneration process and myotube morphogenesis: morphological analysis in mice with a low estrogen status[J]. J Vet Med Sci, 2021, 83(12): 1812-1819. [10] ALEXANDER S E, POLLOCK A C, LAMON S. The effect of sex hormones on skeletal muscle adaptation in females[J]. Eur J Sport Sci, 2022, 22(7): 1035-1045. [11] SHU H, HUANG Y, ZHANG W, et al. An integrated study of hormone-related sarcopenia for modeling and comparative transcriptome in rats[J]. Front Endocrinol: Lausanne, 2023, 14: 1073587. [12] LANGENDORF E K, ROMMENS P M, DREES P, et al. Detecting the effects of the glucocorticoid dexamethasone on primary human skeletal muscle cells-differences to the murine cell line[J]. Int J Mol Sci, 2020, 21(7): 2497. [13] XU W J, GUO K, SHI J L, et al. Glucocorticoid regulates the synthesis of porcine muscle protein through m(6)a modified amino acid transporter slc7a7[J]. Int J Mol Sci, 2022, 23(2): 661. [14] KARNIA M J, KOREWO D, MYSLINSKA D, et al. The positive impact of vitamin D on glucocorticoid-dependent skeletal muscle atrophy[J]. Nutrients, 2021, 13(3): 936. [15] SHANG Y N, KUANG M J, WANG Z Y, et al. An ultrashort peptide-based supramolecular hydrogel mimicking IGF-1 to alleviate glucocorticoid-induced sarcopenia[J]. Acs Applied Mater Interfaces, 2020, 12(31): 34678-34688. [16] RAHMAN M S, HOSSAIN K S, DAS S, et al. Role of insulin in health and disease: an update[J]. Int J Mol Sci, 2021, 22(12): 6403. [17] CROSSLAND H, SMITH K, ATHERTON P J, et al. A novel stable isotope tracer method to simultaneously quantify skeletal muscle protein synthesis and breakdown[J]. Metabol Open, 2020, 5: 100022. [18] BLACKWOOD S J, HORWATH O, MOBERG M, et al. Extreme variations in muscle fiber composition enable detection of insulin resistance and excessive insulin secretion[J]. J Clin Endocrinol Metab, 2022, 107(7): e2729-e2737. [19] BALAKRISHNAN R, THURMOND D C. Mechanisms by which skeletal muscle myokines ameliorate insulin resistance[J]. Int J Mol Sci, 2022, 23(9): 4636. [20] WANG L, SHENG Y, XU W, et al. Mechanism of thyroid hormone signaling in skeletal muscle of aging mice[J]. Endocrine, 2021, 72(1): 132-139. [21] BLOISE F F, CORDEIRO A, ORTIGA-CARVALHO T M. Role of thyroid hormone in skeletal muscle physiology[J]. J Endocrinol, 2018, 236(1): R57-R68. [22] TAWFIK I, GOTTSCHALK B, JARC A, et al. T3-induced enhancement of mitochondrial Ca2+ uptake as a boost for mitochondrial metabolism[J]. Free Radic Biol Med, 2022, 181: 197-208. [23] CICATIELLO A G, SAGLIOCCHI S, NAPPI A, et al. Thyroid hormone regulates glutamine metabolism and anaplerotic fluxes by inducing mitochondrial glutamate aminotransferase GPT2[J]. Cell Rep, 2022, 38(8): 110409. [24] OGAWA-WONG A, CARMODY C, LE K, et al. Modulation of deiodinase types 2 and 3 during skeletal muscle regeneration[J]. Metabolites, 2022, 12(7): 612. [25] FUJIMAKI T, ANDO T, HATA T, et al. Exogenous parathyroid hormone attenuates ovariectomy-induced skeletal muscle weakness in vivo[J]. Bone, 2021, 151: 116029. |