[1] |
Dobszai D, Mátrai P, Gyöngyi Z, et al. Body-mass index correlates with severity and mortality in acute pancreatitis: A meta-analysis[J]. World J Gastroenterol, 2019, 25(6): 729-43.
doi: 10.3748/wjg.v25.i6.729
URL
|
[2] |
Hong S, Qiwen B, Ying J, et al. Body mass index and the risk and prognosis of acute pancreatitis: a meta-analysis[J]. Eur J Gastroenterol Hepatol, 2011, 23(12): 1136-43.
doi: 10.1097/MEG.0b013e32834b0e0e
URL
|
[3] |
Longo M, Zatterale F, Naderi J, et al. Adipose tissue dysfunction as determinant of obesity-associated metabolic complications[J]. Int J Mol Sci, 2019, 20(9):2358.
doi: 10.3390/ijms20092358
URL
|
[4] |
Kuan LL, Dennison AR, Garcea G. Association of visceral adipose tissue on the incidence and severity of acute pancreatitis: A systematic review[J]. Pancreatology, 2020, 20(6): 1056-1061.
doi: S1424-3903(20)30204-0
pmid: 32768177
|
[5] |
Xie J, Xu L, Pan Y, et al. Impact of visceral adiposity on severity of acute pancreatitis: a propensity score-matched analysis[J]. BMC Gastroenterol, 2019, 19(1): 87.
doi: 10.1186/s12876-019-1015-z
pmid: 31195984
|
[6] |
Navina S, Acharya C, DeLany JP, et al. Lipotoxicity causes multisystem organ failure and exacerbates acute pancreatitis in obesity[J]. Sci Transl Med, 2011, 3(107): 107ra10.
|
[7] |
Acharya C, Navina S, Singh VP. Role of pancreatic fat in the outcomes of pancreatitis[J]. Pancreatology, 2014, 14(5): 403-438.
doi: 10.1016/j.pan.2014.06.004
pmid: 25278311
|
[8] |
Karpavicius A, Dambrauskas Z, Gradauskas A, et al. The clinical value of adipokines in predicting the severity and outcome of acute pancreatitis[J]. BMC Gastroenterol, 2016, 16(1): 99.
doi: 10.1186/s12876-016-0514-4
pmid: 27549125
|
[9] |
Kibar YI, Albayrak F, Arabul M, et al. Resistin: New serum marker for predicting severity of acute pancreatitis[J]. J Int Med Res, 2016, 44(2): 328-337.
doi: 10.1177/0300060515605428
pmid: 26857860
|
[10] |
Xue LN, Wang XY, Tan Y, et al. Significance of resistin expression in acute pancreatitis[J]. Exp Ther Med, 2015, 9(4): 1438-1442.
doi: 10.3892/etm.2015.2270
URL
|
[11] |
Schäffler A, Hamer O, Dickopf J, et al. Admission resistin levels predict peripancreatic necrosis and clinical severity in acute pancreatitis[J]. Am J Gastroenterol, 2010, 105(11): 2474-2484.
doi: 10.1038/ajg.2010.278
pmid: 20648005
|
[12] |
Langmead C, Lee PJ, Paragomi P, et al. A novel 5-cytokine panel outperforms conventional predictive markers of persistent organ failure in acute pancreatitis[J]. Clin Transl Gastroenterol, 2021, 12(5): e00351.
|
[13] |
Yu P, Wang S, Qiu Z, et al. Efficacy of resistin and leptin in predicting persistent organ failure in patients with acute pancreatitis[J]. Pancreatology, 2016, 16(6): 952-957.
doi: S1424-3903(16)31183-8
pmid: 27654573
|
[14] |
Yang J, Liu M, Wang S, et al. Alteration of peripheral resistin and the severity of acute pancreatitis: A meta-analysis[J]. Front Med (Lausanne), 2022, 9: 915152.
|
[15] |
Piao X, Sui X, Liu B, et al. Picroside ii improves severe acute pancreatitis-induced hepatocellular injury in rats by affecting JAK2/STAT3 phosphorylation signaling[J]. Biomed Res Int, 2021: 9945149.
|
[16] |
杜奕奇, 李维勤, 毛恩强. 中国急性胰腺炎多学科诊治(MDT)共识意见(草案)[J]. 中国实用内科杂志, 2015, 35(12): 1004-1010.
doi: 10.7504/nk2015110301
|
[17] |
Sternby H, Hartman H, Thorlacius H, et al. The initial course of IL1β, IL-6, IL-8, IL-10, IL-12, IFN-γ and TNF-α with regard to severity grade in acute pancreatitis[J]. Biomolecules, 2021, 11(4):591.
doi: 10.3390/biom11040591
URL
|
[18] |
中华医学会外科学分会胰腺外科学组. 中国急性胰腺炎诊治指南(2021)[J]. 浙江实用医学, 2021, 26(6): 511-19+35.
|
[19] |
Sbeit W, Khoury T. Fatty pancreas represents a risk factor for acute pancreatitis: A pilot study[J]. Pancreas, 2021, 50(7): 990-993.
doi: 10.1097/MPA.0000000000001867
URL
|
[20] |
Xie J, Xu L, Pan Y, et al. Nonalcoholic fatty pancreas disease is related independently to the severity of acute pancreatitis[J]. Eur J Gastroenterol Hepatol, 2019, 31(8): 973-978.
doi: 10.1097/MEG.0000000000001477
URL
|
[21] |
Kwak MS, Lim JW, Kim H. Astaxanthin Inhibits Interleukin-6 Expression in Cerulein/Resistin-Stimulated Pancreatic Acinar Cells[J]. Mediators Inflamm, 2021: 5587297.
|
[22] |
Taouis M, Benomar Y. Is resistin the master link between inflammation and inflammation-related chronic diseases?[J]. Mol Cell Endocrinol, 2021, 533: 111341.
|
[23] |
Jiang CY, Wang W. Resistin aggravates the expression of proinflammatory cytokines in cerulein-stimulated AR42J pancreatic acinar cells[J]. Mol Med Rep, 2017, 15(1): 502-506.
doi: 10.3892/mmr.2016.6027
URL
|
[24] |
Jiang CY, Wang W, Tang J X, et al. The adipocytokine resistin stimulates the production of proinflammatory cytokines TNF-α and IL-6 in pancreatic acinar cells via NF-κB activation[J]. J Endocrinol Invest, 2013, 36(11): 986-992.
doi: 10.3275/9002
pmid: 23765438
|
[25] |
Burnett MS, Lee CW, Kinnaird TD, et al. The potential role of resistin in atherogenesis[J]. Atherosclerosis, 2005, 182(2): 241-248.
pmid: 16159596
|
[26] |
Gaweł S, Wardas M, Niedworok E, et al. Malondialdehyde (MDA) as a lipid peroxidation marker[J]. Wiad Lek, 2004, 57(9-10): 453-455.
|
[27] |
Del Rio D, Stewart AJ, Pellegrini N. A review of recent studies on malondialdehyde as toxic molecule and biological marker of oxidative stress[J]. Nutr Metab Cardiovasc Dis, 2005, 15(4): 316-328.
doi: 10.1016/j.numecd.2005.05.003
URL
|
[28] |
Hernández V, Miranda M, Pascual I, et al. Malondialdehyde in early phase of acute pancreatitis[J]. Rev Esp Enferm Dig, 2011, 103(11): 563-569.
pmid: 22149557
|
[29] |
Abu-Hilal M, McPhail M J, Marchand L, et al. Malondialdehyde and superoxide dismutase as potential markers of severity in acute pancreatitis[J]. JOP, 2006, 7(2): 185-192.
|
[30] |
Cho IR, Do MY, Han SY, et al. Comparison of interleukin-6, C-reactive protein, procalcitonin, and the computed tomography severity index for early prediction of severity of acute pancreatitis[J]. Gut Liver, 2023 Feb 15. Epub ahead of print.
|
[31] |
Kumar RB, Karim T, Jain A, et al. Role of serum interleukin-6 and c-reactive protein in early prediction of severe acute pancreatitis[J]. J West Afr Coll Surg, 2022, 12(4): 20-26.
|
[32] |
Cui H, Mei C, Cui M, et al. Predictive value of serum chlorine and interleukin-6 combined with coagulation indexes on severity of severe acute pancreatitis[J]. Zhonghua Wei Zhong Bing Ji Jiu Yi Xue, 2022, 34(12): 1301-1304.
|
[33] |
Li J, Chen Z, Li L, et al. Interleukin-6 is better than C-reactive protein for the prediction of infected pancreatic necrosis and mortality in patients with acute pancreatitis[J]. Front Cell Infect Microbiol, 2022, 12: 933221.
|