For: | Fang WH, Yao YM, Shi ZG, Yu Y, Wu Y, Lu LR, Sheng ZY. The mRNA expression patterns of tumor necrosis factor-α and TNFR-I in some vital organs after thermal injury. World J Gastroenterol 2003; 9(5): 1038-1044 [PMID: 12717852 DOI: 10.3748/wjg.v9.i5.1038] |
---|---|
URL: | https://www.wjgnet.com/1007-9327/full/v9/i5/1038.htm |
Number | Citing Articles |
1 |
Uri Wormser, Berta Brodsky, Elena Proscura, Julie F. Foley, Tinette Jones, Abraham Nyska. Involvement of tumor necrosis factor-α in sulfur mustard-induced skin lesion; effect of topical iodine. Archives of Toxicology 2005; 79(11): 660 doi: 10.1007/s00204-005-0681-5
|
2 |
Ling Li, Limei Qiu, Linsheng Song, Xiaoyan Song, Jianmin Zhao, Lingling Wang, Changkao Mu, Huan Zhang. First molluscan TNFR homologue in Zhikong scallop: Molecular characterization and expression analysis. Fish & Shellfish Immunology 2009; 27(5): 625 doi: 10.1016/j.fsi.2009.07.009
|
3 |
Ganka Bekyarova, Maria Tzaneva, Minka Hristova, Krasimir Hristov. Melatonin protection against burn-induced liver injury. A review. Open Medicine 2014; 9(1): 148 doi: 10.2478/s11536-013-0253-7
|
4 |
G. Bekyarova, M. Apostolova, I. Kotzev. Melatonin Protection against Burn-Induced Hepatic Injury by Down-Regulation and Nuclear Factor Kappa B Activation. International Journal of Immunopathology and Pharmacology 2012; 25(3): 591 doi: 10.1177/039463201202500305
|
5 |
Sevgin Özlem İseri, Yasemin Ersoy, Nursal Gedik, Feriha Ercan, İnci Alican. Protective role of adrenomedullin in burn-induced remote organ damage in the rat. Regulatory Peptides 2008; 146(1-3): 99 doi: 10.1016/j.regpep.2007.08.023
|
6 |
Dewan Md. Sumsuzzman, Jeonghyun Choi, Zeeshan Ahmad Khan, Yonggeun Hong. Protective Effects of Melatonin against Severe Burn-Induced Distant Organ Injury: A Systematic Review and Meta-Analysis of Experimental Studies. Antioxidants 2020; 9(12): 1196 doi: 10.3390/antiox9121196
|
7 |
G. Gravante, D. Delogu, G. Sconocchia. “Systemic apoptotic response” after thermal burns. Apoptosis 2007; 12(2): 259 doi: 10.1007/s10495-006-0621-8
|
8 |
David M. Burmeister, Belinda I. Gómez, Michael A. Dubick. Molecular mechanisms of trauma-induced acute kidney injury: Inflammatory and metabolic insights from animal models. Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease 2017; 1863(10): 2661 doi: 10.1016/j.bbadis.2017.04.011
|
9 |
Michelle Alexander, Tanjanika Daniel, Irshad H. Chaudry, Martin G. Schwacha. MAP kinases differentially regulate the expression of macrophage hyperactivity after thermal injury. Journal of Cellular Physiology 2004; 201(1): 35 doi: 10.1002/jcp.20050
|
10 |
Yuyuan Wu, Junjun He, Gaoyou Yao, Haiying Liang, Xuemin Huang. Molecular cloning, characterization, and expression of two TNFRs from the pearl oyster Pinctada fucata martensii. Fish & Shellfish Immunology 2020; 98: 147 doi: 10.1016/j.fsi.2020.01.010
|
11 |
Jean-Marc Cavaillon, Djillali Annane. Invited review: Compartmentalization of the inflammatory response in sepsis and SIRS. Journal of Endotoxin Research 2006; 12(3): 151 doi: 10.1177/09680519060120030301
|
12 |
Huda O. AbuBakr, Samira H. Aljuaydi, Shimaa M. Abou-Zeid, Amanallah El-Bahrawy. Burn-Induced Multiple Organ Injury and Protective Effect of Lutein in Rats. Inflammation 2018; 41(3): 760 doi: 10.1007/s10753-018-0730-x
|
13 |
Yen-Wenn Liu, Jia Sin Ong, Chee Yuen Gan, Boon Yin Khoo, Sawibah Yahaya, Sy Bing Choi, Wai Yee Low, Ying-Chieh Tsai, Min Tze Liong. Lactobacillus fermentum PS150 showed psychotropic properties by altering serotonergic pathway during stress. Journal of Functional Foods 2019; 59: 352 doi: 10.1016/j.jff.2019.05.043
|
14 |
Thomas Kremer, Dorotheé Abé, Marc Weihrauch, Christopher Peters, Martha Maria Gebhardt, Guenter Germann, Christoph Heitmann, Andreas Walther. BURN PLASMA TRANSFER INDUCES BURN EDEMA IN HEALTHY RATS. Shock 2008; 30(4): 394 doi: 10.1097/SHK.0b013e3181673908
|
15 |
Qiang Xing, Qian Yu, Huaiqian Dou, Jing Wang, Ruojiao Li, Xianhui Ning, Ruijia Wang, Shi Wang, Lingling Zhang, Xiaoli Hu, Zhenmin Bao. Genome-wide identification, characterization and expression analyses of two TNFRs in Yesso scallop (Patinopecten yessoensis) provide insight into the disparity of responses to bacterial infections and heat stress in bivalves. Fish & Shellfish Immunology 2016; 52: 44 doi: 10.1016/j.fsi.2016.03.010
|
16 |
J. -M. Cavaillon, M. Adib-Conquy. Mechanisms of Sepsis-Induced Organ Dysfunction and Recovery. Update in Intensive Care and Emergency Medicine 2007; 44: 161 doi: 10.1007/3-540-30328-6_11
|
17 |
T.A. Lopes, J.J.N. Costa, R.P. Ribeiro, J.R.S. Passos, M.A.A. Soares, J.G. Alves Filho, E.V. Cunha, R. van den Hurk, A.A. Pinheiro, J.R.V. Silva. Influence of caprine arthritis encephalitis on expression of ovulation related genes and activation of primordial follicles cultured in presence of phytohemagglutinin, epidermal growth factor or both. Small Ruminant Research 2015; 123(2-3): 278 doi: 10.1016/j.smallrumres.2014.11.016
|
18 |
Xu-Lin Chen, Zhao-Fan Xia, You-Xin Yu, Duo Wei, Chang-Rong Wang, Dao-Feng Ben. p38 mitogen-activated protein kinase inhibition attenuates burn-induced liver injury in rats. Burns 2005; 31(3): 320 doi: 10.1016/j.burns.2004.10.015
|
19 |
Hanieh Raji, Babak Arjmand, Fakher Rahim. Cell Biology and Translational Medicine, Volume 15. Advances in Experimental Medicine and Biology 2021; 1376: 29 doi: 10.1007/5584_2021_665
|
20 |
C. Kent-Dennis, G.B. Penner. Effects of lipopolysaccharide exposure on the inflammatory response, butyrate flux, and metabolic function of the ruminal epithelium using an ex vivo model. Journal of Dairy Science 2021; 104(2): 2334 doi: 10.3168/jds.2020-19002
|
21 |
Stefan Morarasu, Bianca-Codrina Morarasu, Nicolae Ghețu, Mihail-Gabriel Dimofte, Radu Iliescu, Dragos Pieptu. Experimental Models for Controlled Burn Injuries in Rats: A Systematic Analysis of Original Methods and Burn Devices. Journal of Burn Care & Research 2022; 43(5): 1055 doi: 10.1093/jbcr/irab234
|