3Hunter T. Signaling-2000 and Beyond[J]. Cell,2000,100(1):113-127.
4Kang K W, Pak Y M, Kim N D. Diethylmaleate and buthionine sulfoximine, glutathione-depleting agents, differentially inhibit expression of inducible nitric oxide synthase in endotoxiemic mice[J]. Nitric Oxide,1999,3(3): 265-271.
5Bassam B J, Anolles G C,Gresshoff P M. Fast and sensitive silver staining of DNA in polyacrylamide gels[J]. Anal Biochem,1991,196(1):80-83.
6Feng G J, Goodridge H S, Harnett M M, et al. Extracellular signal-related kinase (ERK) and p38 mitogen-activated protein (MAP) kinases differentilly regulate the lipopolysacchride-mediated induction of inducible nitric oxide synthase and IL-12 in macrophages: Leishmania phosphoglycans subvert macrophage IL-12 production by targeting ERK MAP kinase[J]. J Immunol,1999,163(12):6 403-6 412.
7Caivano M. Role of MAP kinase cascades in inducing arginine transpoorters and nitric oxide synthetase in RAW264 macrophages[J]. FEBS Letters,1998,429(3):249-253.
8Ajizian S J, English B K, Meals E A. Specific inhibitors of p38 and extracellular signal-regulated kinase mitogen-activated protein kinase pathways block inducible nitric oxide synthase and tumor necrosis factor accumulation in macrophages stimulated with lipopolysaccharide and interferon-gamma[J].J Infect Dis,1999,179(4):939-944.
7Yan L, Zhu TB, Wang LS, et al. Inhibitory effect of he- patocyte growth factor on cardiomyocytes apoptosis is partly related to reduced calcium sensing receptor expres- sion during a model of simulated ischemia/reperfusion[J]. Mol BiolRep,2011,38(4) :2 695.
8Gorog DA, Jabr RI, Tarmo M, et al. MAPK-2 modulates p38-MAPK localization and small heat shock protein phosphorylation but does not mediate the injury associat- ed with p38-MAPK activation during myocardial ischemia [J]. Cell Stress Chaperones, 2009,14(5) : 477.
9Xia A, Xue Z, Wang W, et al. Naloxone postcondition- ing alleviates rat myocardial ischemia reperfusion injury by inhibiting JNK activity[J]. Korean J Physiol Pharma- col, 2014, 18(1) :67.