[1] QU J, ZHOU T, XUE M, et al. Relationship between medication literacy and frailty in elderly inpatients with coronary heart disease: a cross-sectional study in china[J]. Front Pharmacol, 2021, 12: 691983. [2] QIN T, SHENG W, HU G. To analyze the influencing factors of senile coronary heart disease patients complicated with frailty syndrome[J]. J Healthc Eng, 2022, 2022: 7619438. [3] SOYSAL P, ARIK F, SMITH L, et al. Inflammation, frailty and cardiovascular disease[J]. Adv Exp Med Biol, 2020, 1216: 55-64. [4] UCHMANOWICZ I. Oxidative stress, frailty and cardiovascular diseases: current evidence[J]. Adv Exp Med Biol, 2020, 1216: 65-77. [5] CARDOSO A L, FERNANDES A, AGUILAR-PIMENTEL J A, et al. Towards frailty biomarkers: candidates from genes and pathways regulated in aging and age-related diseases[J]. Ageing Res Rev, 2018, 47: 214-277. [6] 中华医学会心血管病学分会介入心脏病学组, 中华医学会心血管病学分会动脉粥样硬化与冠心病学组, 中国医师协会心血管内科医师分会血栓防治专业委员会, 等. 稳定性冠心病诊断与治疗指南[J]. 中华心血管病杂志, 2018, 46(9): 680-694. [7] WANG D, DAY E A, TOWNSEND L K, et al. GDF15: emerging biology and therapeutic applications for obesity and cardiometabolic disease[J]. Nat Rev Endocrinol, 2021, 17(10): 592-607. [8] ANGIONI D, LU W H, SOURDET S, et al. Biomarkers of age-related frailty and frailty related to diseases: an exploratory, cross-sectional analysis from the mapt study[J]. J Nutr Health Aging, 2022, 26(6): 545-551. [9] AHMED D, ISNARD S, BERINI C, et al. Coping with stress: the mitokine GDF-15 as a biomarker of COVID-19 severity[J]. Front Immunol, 2022, 13: 820350. [10] ARAUNA D, GARCíA F, RODRíGUEZ-MAñAS L, et al. Older adults with frailty syndrome present an altered platelet function and an increased level of circulating oxidative stress and mitochondrial dysfunction biomarker GDF-15[J]. Free Radic Biol Med, 2020, 149: 64-71. [11] CONTE M, MARTUCCI M, MOSCONI G, et al. GDF15 plasma level is inversely associated with level of physical activity and correlates with markers of inflammation and muscle weakness[J]. Front Immunol, 2020, 11: 915. [12] OBA K, ISHIKAWA J, TAMURA Y, et al. Serum growth differentiation factor 15 level is associated with muscle strength and lower extremity function in older patients with cardiometabolic disease[J]. Geriatr Gerontol Int, 2020, 20(10): 980-987. [13] ASSADI A, ZAHABI A, HART R A. GDF15, an update of the physiological and pathological roles it plays: a review[J]. Pflugers Arch, 2020, 472(11): 1535-1546. [14] MIR R, JHA C K, KHULLAR N, et al. The role of inflammatory and cytokine biomarkers in the pathogenesis of frailty syndrome[J]. Endocr Metab Immune Disord Drug Targets, 2022, 22(14): 1357-1366. [15] MOHAMAD M, EBEID S, SHAWKY KHATER M, et al. Interferon-gamma-inducible guanosine triphosphate cyclohydrolase 1 (GTP-CH1) pathway is associated with frailty in egyptian elderly[J]. Rep Biochem Mol Biol, 2018, 7(1): 52-58. [16] YANG Z X, MAO G X, ZHANG J, et al. IFN-γ induces senescence-like characteristics in mouse bone marrow mesenchymal stem cells[J]. Adv Clin Exp Med, 2017, 26(2): 201-206. [17] XU Y, WANG M, CHEN D, et al. Inflammatory biomarkers in older adults with frailty: a systematic review and meta-analysis of cross-sectional studies[J]. Aging Clin Exp Res, 2022, 34(5): 971-987. [18] FURTADO G E, UBA CHUPEL M, MINUZZI L, et al. Exploring the potential of salivary and blood immune biomarkers to elucidate physical frailty in institutionalized older women[J]. Exp Gerontol, 2020, 129: 110759. |