[1] |
Ahmad J, Odin JA. Epidemiology and genetic risk factors of drug hepatotoxicity. Clin Liver Dis, 2017; 21, 55−72. doi: 10.1016/j.cld.2016.08.004 |
[2] |
Björnsson ES. Epidemiology and risk factors for idiosyncratic drug-induced liver injury. Semin Liver Dis, 2014; 34, 115−22. doi: 10.1055/s-0034-1375953 |
[3] |
Zhang YM, Sun WJ, Wen LZ, et al. Clinical features of patients with drug-induced liver injury in China in the last five years. J Clin Hepatol, 2018; 34, 562−6. (In Chinese |
[4] |
Chalasani NP, Hayashi PH, Bonkovsky HL, et al. ACG clinical guideline: the diagnosis and management of idiosyncratic drug-induced liver injury. Am J Gastroenterol, 2014; 109, 950−66. doi: 10.1038/ajg.2014.131 |
[5] |
Moore TJ, Cohen MR, Furberg CD. Serious adverse drug events reported to the food and drug administration, 1998-2005. Arch Intern Med, 2007; 167, 1752−9. doi: 10.1001/archinte.167.16.1752 |
[6] |
Guy J, Peters MG. Liver disease in women: the influence of gender on epidemiology, natural history, and patient outcomes. Gastroenterol Hepatol (N Y), 2013; 9, 633−9. |
[7] |
Zimmermann HW, Trautwein C, Tacke F. Functional role of monocytes and macrophages for the inflammatory response in acute liver injury. Front Physiol, 2012; 3, 56. |
[8] |
Wu ZG, Han MF, Chen T, et al. Acute liver failure: mechanisms of immune-mediated liver injury. Liver Int, 2010; 30, 782−94. doi: 10.1111/j.1478-3231.2010.02262.x |
[9] |
European Association for the Study of the Liver. EASL clinical practice guidelines: drug-induced liver injury. J Hepatol, 2019; 70, 1222−61. doi: 10.1016/j.jhep.2019.02.014 |
[10] |
Dara L, Liu ZX, Kaplowitz N. Mechanisms of adaptation and progression in idiosyncratic drug induced liver injury, clinical implications. Liver Int. , 2016; 36, 158-65. |
[11] |
Dara L, Liu ZX, Kaplowitz N. Pathogenesis of idiosyncratic drug induced liver injury. In: Muriel P. Liver Pathophysiology. Elsevier. 2017, 87-100. |
[12] |
Tailor A, Faulkner L, Naisbitt DJ, et al. The chemical, genetic and immunological basis of idiosyncratic drug-induced liver injury. Hum Exp Toxicol, 2015; 34, 1310−7. doi: 10.1177/0960327115606529 |
[13] |
Tujios S, Fontana RJ. Mechanisms of drug-induced liver injury: from bedside to bench. Nat Rev Gastroenterol Hepatol, 2011; 8, 202−11. doi: 10.1038/nrgastro.2011.22 |
[14] |
Adams DH, Ju C, Ramaiah SK, et al. Mechanisms of immune-mediated liver injury. Toxicol Sci, 2010; 115, 307−21. doi: 10.1093/toxsci/kfq009 |
[15] |
Wang XZ, Zhang LY, Jiang ZZ. T‐helper cell‐mediated factors in drug-induced liver injury. J Appl Toxicol, 2015; 35, 695−700. doi: 10.1002/jat.3115 |
[16] |
Jin B, Sun T, Yu XH, et al. The effects of TLR activation on T-cell development and differentiation. J Immunol Res, 2012; 2012, 836485. |
[17] |
Wang XZ, Jiang ZZ, Cao WP, et al. Th17/Treg imbalance in triptolide-induced liver injury. Fitoterapia, 2014; 93, 245−51. doi: 10.1016/j.fitote.2014.01.006 |
[18] |
Laverty HG, Antoine DJ, Benson C, et al. The potential of cytokines as safety biomarkers for drug-induced liver injury. Eur J Clin Pharmacol, 2010; 66, 961−76. doi: 10.1007/s00228-010-0862-x |
[19] |
Eisenberg-Lerner A, Kimchi A. PKD is a kinase of Vps34 that mediates ROS- induced autophagy downstream of DAPk. Cell Death Differ, 2012; 19, 788−97. doi: 10.1038/cdd.2011.149 |
[20] |
Ding WX, Manley S, Ni HM. The emerging role of autophagy in alcoholic liver disease. Exp Biol Med (Maywood), 2011; 236, 546−56. doi: 10.1258/ebm.2011.010360 |
[21] |
Roth RA, Ganey PE. Role of inflammation in drug-induced liver injury. In: Kaplowitz N, Deleve LD. Drug-Induced Liver Disease. Academic Press. 2013, 157-73. |
[22] |
Relja B, Land WG. Damage-associated molecular patterns in trauma. Eur J Trauma Emerg Surg, 2020; 46, 751−75. doi: 10.1007/s00068-019-01235-w |
[23] |
Kany S, Vollrath JT, Relja B. Cytokines in inflammatory disease. Int J Mol Sci, 2019; 20, 6008. doi: 10.3390/ijms20236008 |
[24] |
Josephs SF, Ichim TE, Prince SM, et al. Unleashing endogenous TNF-alpha as a cancer immunotherapeutic. J Transl Med, 2018; 16, 242. doi: 10.1186/s12967-018-1611-7 |
[25] |
Rose-John S. Interleukin-6 family cytokines. Cold Spring Harb Perspect Biol, 2018; 10, a028415. doi: 10.1101/cshperspect.a028415 |
[26] |
Jones SA, Jenkins BJ. Recent insights into targeting the IL-6 cytokine family in inflammatory diseases and cancer. Nat Rev Immunol, 2018; 18, 773−89. doi: 10.1038/s41577-018-0066-7 |
[27] |
Hunter CA, Jones SA. IL-6 as a keystone cytokine in health and disease. Nat Immunol, 2015; 16, 448−57. doi: 10.1038/ni.3153 |
[28] |
Guo G, Zhu YJ, Wu ZR, et al. Circulating monocytes accelerate acute liver failure by IL-6 secretion in monkey. J Cell Mol Med, 2018; 22, 4056−67. doi: 10.1111/jcmm.13673 |
[29] |
Kong LX, Zhou YJ, Bu H, et al. Deletion of interleukin-6 in monocytes/macrophages suppresses the initiation of hepatocellular carcinoma in mice. J Exp Clin Cancer Res, 2016; 35, 131. doi: 10.1186/s13046-016-0412-1 |
[30] |
Shao MY, Xu Q, Wu ZR, et al. Exosomes derived from human umbilical cord mesenchymal stem cells ameliorate IL-6-induced acute liver injury through miR-455-3p. Stem Cell Res Ther, 2020; 11, 37. doi: 10.1186/s13287-020-1550-0 |