[1] Eslam M, Sanyal AJ, George J, et al. MAFLD: A consensus-driven proposed nomenclature for metabolic associated fatty liver disease. Gastroenterology, 2020, 158(7):1999-2014. [2] 包静文,朱宇莉,徐庆玥,等.超声声衰减成像评估代谢相关脂肪性肝病肝脂肪变程度的应用价值.中华超声影像学杂志,2021,30(10):868-873. [3] 夏巧云,鲁迪,张建民,等.MAFLD不同病变阶段动物模型中肠道菌群的多态性.中华肝脏病杂志,2021,29(11):1069-1076. [4] Subramanian P, Hampe J, Tacke F, et al. Fibrogenic pathways in metabolic dysfunction associated fatty liver disease (MAFLD). Int J Mol Sci, 2022, 23(13):6996. [5] Sarkar S, Bhattacharya S, Alam MJ, et al. Hypoxia aggravates non-alcoholic fatty liver disease in presence of high fat choline deficient diet: A pilot study. Life Sci, 2020, 260(1):e118404. [6] 孙建英,陈禧钰,王理,等.缺氧诱导因子-1α介导和调控肝癌相关血管生成因子的表达.中华肝脏病杂志,2020,28(11):942-948. [7] Shabalala SC, Dludla PV, Mabasa L, et al. The effect of adiponectin in the pathogenesis of non-alcoholic fatty liver disease (NAFLD) and the potential role of polyphenols in the modulation of adiponectin signaling. Biomed Pharmacother, 2020, 131(12):e110785. [8] An X, Liu J, Li Y, et al. Chemerin/CMKLR1 ameliorates nonalcoholic steatohepatitis by promoting autophagy and alleviating oxidative stress through the JAK2-STAT3 pathway. Peptides, 2021, 135(1):e170422. [9] 中华医学会肝病学分会脂肪肝和酒精性肝病学组,中国医师协会脂肪性肝病专家委员会.非酒精性脂肪性肝病防治指南(2018年更新版).实用肝脏病杂志,2018,21(2):177-186. [10] Cai GS, Su H, Zhang J. Protective effect of probiotics in patients with non-alcoholic fatty liver disease. Medicine (Baltimore), 2020, 99(32):e21464. [11] Taheri E, Pourhoseingholi MA, Moslem A, et al. The triglyceride-glucose index as a clinical useful marker for metabolic associated fatty liver disease (MAFLD): a population-based study among Iranian adults. J Diabetes Metab Disord, 2022, 21(1):97-107. [12] Tan SK, Mahmud I, Fontanesi F, et al. Obesity-dependent adipokine chemerin suppresses fatty acid oxidation to confer ferroptosis resistance. Cancer Discov, 2021, 11(8):2072-2093. [13] Simeone PG, Costantino S, Tripaldi R, et al. Baseline interleukin1beta expression in peripheral blood monocytes predicts the extent of weight loss and nonalcoholic fatty liver improvement in obese subjects with prediabetes or type 2 diabetes. Eur Heart J, 2020, 41(2):3033. [14] Barbe A, Mellouk N, Ramé C, et al. A grape seed extract maternal dietary supplementation in reproductive hens reduces oxidative stress associated to modulation of plasma and tissue adipokines expression and improves viability of offsprings. PLoS ONE, 2020, 15(4):e0231131. [15] 胡红琳,刘瑞侠,孙蓉,等.脂联素与2型糖尿病乳腺癌发生的相关性及其机制研究.中华糖尿病杂志,2021,13(2):162-168. [16] Mavilia MG, Wu GY. Liver and serum adiponectin levels in non-alcoholic fatty liver disease. J Dig Dis, 2021, 22(4):214-221. [17] 徐亮,钟燕,苏淑婷,等.反应性氧化物、脂联素在慢性乙型肝炎病毒感染合并非酒精性脂肪性肝病中的研究.中华肝脏病杂志,2020,28(3):247-253. [18] Alshebli M, Moya EA, Breen EC, et al. Hepatocyte HIF and intermittent hypoxia independently increase liver fibrosis in a mouse model of nonalcoholic fatty liver disease. FASEB J, 2020, 34(S1):11. [19] Wang Z, Li B, Jiang H, et al. IL-8 exacerbates alcohol-induced fatty liver disease via the Akt/HIF-1α pathway in human IL-8-expressing mice. Cytokine, 2021, 138(1):e155402. [20] Chang SN, Dey DK, Oh ST, et al. Phorbol 12-myristate 13-acetate induced toxicity study and the role of tangeretin in abrogating HIF-1α-NF-κB crosstalk in vitro and in vivo. Int J Mol Sci, 2020, 21(23):9261-9282. [21] He Y, Yang W, Gan L, et al. Silencing HIF-1α aggravates non-alcoholic fatty liver disease in vitro through inhibiting PPAR-α/ANGPTL4 singling pathway. Gastroenterol Hepatol, 2021, 44(5):355-365. |