[1] Komori A. Recent updates on the management of autoimmune hepatitis. Clin Mol Hepatol, 2021, 27(1):58-69. [2] Vuerich M, Harshe R, Frank LA, et al.Altered aryl-hydrocarbon-receptor signalling affects regulatory and effector cell immunity in autoimmune hepatitis. J Hepatol, 2021, 74(1):48-57. [3] Abend Bardagi A, Dos Santos Paschoal C, Favero GG, et al.Leptin's immune action: A review beyond satiety. Immunol Invest, 2023, 52(1):117-133. [4] Lal D, Thakur M, Bihari C. Serum leptin serves as an inflammatory activity marker and predicts steroid response in autoimmune hepatitis. J Clin Exp Hepatol, 2020, 10(6):574-580. [5] de Candia P, Prattichizzo F, Garavelli S, et al.The pleiotropic roles of leptin in metabolism, immunity, and cancer. J Exp Med, 2021, 218(5):e20191593. [6] 中华医学会肝病学分会. 自身免疫性肝炎诊断和治疗指南(2021). 中华肝脏病杂志, 2022, 30(5):482-492. [7] Onji M, Zeniya M, Yamamoto K, et al. Autoimmune hepatitis: Diagnosis and treatment guide in Japan, 2013. Hepatol Res, 2014, 44(4):368-370. [8] Wang H, Feng X, Yan W, et al. Regulatory T cells in autoimmune hepatitis: Unveiling their roles in mouse models and patients. Front Immunol, 2020, 11:575572. [9] Vuerich M, Wang N, Kalbasi A, et al. Dysfunctional immune regulation in autoimmune hepatitis: From pathogenesis to novel therapies. Front Immunol, 2021, 12:746436. [10] 冯娟, 何方平. 瘦素对肝脏代谢的作用及与肝病的关系. 中国肝脏病杂志(电子版), 2022, 14(3):22-27. [11] Petrescu AD, Grant S, Williams E, et al. Leptin enhances hepatic fibrosis and inflammation in a mouse model of cholestasis. Am J Pathol, 2022, 192(3):484-502. [12] Marrodan M, Farez MF, Balbuena Aguirre ME, et al. Obesity and the risk of multiple sclerosis. The role of leptin. Ann Clin Transl Neurol, 2021, 8(2):406-424. [13] Chaffey A, Hamonic G, Chand D, et al. The adjuvants polyphosphazene (PCEP) and a combination of curdlan plus leptin promote a Th17-type immune response to an intramuscular vaccine in mice.Vaccines (Basel), 2021, 9(5):507. [14] Vollmer CM, Dias ASO, Lopes LM, et al. Leptin favors Th17/Treg cell subsets imbalance associated with allergic asthma severity. Clin Transl Allergy, 2022, 12(6):e12153. [15] Zieba DA, Biernat W, Bar J. Roles of leptin and resistin in metabolism, reproduction, and leptin resistance. Domest Anim Endocrinol, 2020, 73:106472. [16] Yasuda K, Takeuchi Y, Hirota K. The pathogenicity of Th17 cells in autoimmune diseases.Semin Immunopathol, 2019, 41(3):283-297. [17] Huang Z, Li W, Su W. Tregs in autoimmune uveitis. Adv Exp Med Biol, 2021, 1278:205-227. [18] Michalak SS, Olewicz-Gawlik A, Rupa-Matysek, et al. Autoimmune hemolytic anemia: current knowledge and perspectives.Immun Ageing, 2020, 17(1):38. [19] Lin X, Xu A, Zhou L, et al. Imbalance of T lymphocyte subsets in adult immune thrombocytopenia. Int J Gen Med, 2021, 14:937-947. [20] Bunte K, Beikler T. Th17 cells and the IL-23/IL-17 axis in the pathogenesis of periodontitis and immune-mediated inflammatory diseases. Int J Mol Sci, 2019, 20(14):3394. [21] Seth P, Dubey S. IL-22 as a target for therapeutic intervention: Current knowledge on its role in various diseases. Cytokine, 2023, 169:156293. [22] Zhou JY, Alvarez CA, Cobb BA. Integration of IL-2 and IL-4 signals coordinates divergent regulatory T cell responses and drives therapeutic efficacy. Elife, 2021, 10:e57417. [23] Ouyang W, O'Garra A. IL-10 family cytokines IL-10 and IL-22: from basic science to clinical translation. Immunity, 2019, 50(4):871-891. |