World Journal of Emergency Medicine ›› 2011, Vol. 2 ›› Issue (2): 88-92.doi: 10.5847/wjem.j.1920-8642.2011.02.002
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Open Access
Xing-hai Chen, Yong-jie Yin(
), Jing-xiao Zhang
Received:2010-11-10
Accepted:2011-03-17
Online:2011-06-15
Published:2011-06-15
Contact:
Yong-jie Yin
E-mail:yongjieyin2003@yahoo.com.cn
Xing-hai Chen, Yong-jie Yin, Jing-xiao Zhang. Sepsis and immune response[J]. World Journal of Emergency Medicine, 2011, 2(2): 88-92.
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URL: http://wjem.com.cn/EN/10.5847/wjem.j.1920-8642.2011.02.002
| 1 |
Flierl MA, Rittirsch D, Nadeau BA, Chen AJ, Sarma JV, Zetoune FS, et al. Phagocyte-derived catecholamines enhance acute inflammatory injury. Nature 2007; 449:721-725.
pmid: 17914358 |
| 2 |
Ohto U, Fukase K, Miyake K. Crystal structures of human MD-2 and its complex with antiendotoxic lipid IVa. Science 2007; 316:1632-1634.
doi: 10.1126/science.1139111 pmid: 17569869 |
| 3 |
Kim HM, Park BS, Kim JI, Kim SE, Lee J, Oh SC, et al. Crystal structure of the TLR4-MD-2 complex with bound endotoxin antagonist Eritoran. Cell 2007; 130:906-917.
pmid: 17803912 |
| 4 | Hawlisch H, Belkaid Y, Baelder R, Hildeman D, Gerard C, Köhl J. C5a negatively regulates Toll-like receptor-4-induced immune responses. Immunity 2005; 22:415-426. |
| 5 |
Zhang X, Kimura Y, Fang C, Zhou L, Sfyroera G, Lambris JD, et al. Regulation of Toll-like receptor-mediated inflammatory response by complement in vivo. Blood 2007; 110:228-236.
pmid: 17363730 |
| 6 |
Clark SR, Clark SR, Ma AC, Tavener SA, McDonald B, Goodarzi Z, et al. Platelet TLR4 activates neutrophil extracellular traps to ensnare bacteria in septic blood. Nature Med 2007; 13:463-469.
pmid: 17384648 |
| 7 |
Hotchkiss RS, Nicholson DW. Apoptosis and caspases regulate death and inflammation in sepsis. Nature Rev Immunol 2006; 6:813-822.
doi: 10.1038/nri1943 |
| 8 |
Hotchkiss RS, Osmon SB, Chang KC, Wagner TH, Coopersmith CM, Karl IE. Accelerated lymphocyte death in sepsis occurs by both the death receptor and mitochondrial pathways. J Immunol 2005; 174:5110-5118.
doi: 10.4049/jimmunol.174.8.5110 pmid: 15814742 |
| 9 |
Hotchkiss RS, Tinsley KW, Swanson PE, Grayson MH, Osborne DF, Wagner TH, et al. Depletion of dendritic cells, but not macrophages, in patients with sepsis. J Immunol 2002; 168:2493-2500.
pmid: 11859143 |
| 10 |
Kim KD, Zhao J, Auh S, Yang X, Du P, Tang H, et al. Adaptive immune cells temper initial innate responses. Nature Med 2007; 13:1248-1252.
pmid: 17891146 |
| 11 |
Huber-Lang M, Sarma JV, Zetoune FS, Rittirsch D, Neff TA, McGuire SR, et al. Generation of C5a in the absence of C3: a new complement activation pathway. Nature Med 2006; 12:682-687.
pmid: 16715088 |
| 12 |
Riedemann NC, Guo RF, Gao H, Sun L, Hoesel M, Hollmann TJ, et al. Regulatory role of C5a on macrophage migration inhibitory factor release from neutrophils. J Immunol 2004; 173:1355-1359.
pmid: 15240730 |
| 13 | Calandra T, Roger T. Macrophage migration inhibitory factor: a regulator of innate immunity. Nature Rev Immunol 2003; 3:791-800. |
| 14 | Lotze MT, Tracey KJ. High mobility group box 1 protein (HMGB1): nuclear weapon in the immune arsenal. Nature Rev Immunol 2005; 5:331-342. |
| 15 |
Kim JY, Park JS, Strassheim D, Douglas I, Diaz del Valle F, Asehnoune K, et al. HMGB1 contributes to the development of acute lung injury after hemorrhage. Am J Physiol Lung Cell Mol Physiol 2005; 288:L958-L965.
pmid: 15640285 |
| 16 |
Qin S, Qin S, Wang H, Yuan R, Li H, Ochani M, et al. Role of HMGB1 in apoptosis-mediated sepsis lethality. J Exp Med 2006; 203:1637-1642.
doi: 10.1084/jem.20052203 pmid: 16818669 |
| 17 |
Sha Y, Zmijewski J, Xu Z, Abraham E. HMGB1 develops enhanced proinflammatory activity by binding to cytokines. J Immunol 2008; 180:2531-2537.
doi: 10.4049/jimmunol.180.4.2531 pmid: 18250463 |
| 18 |
Klune JR, Dhupar R, Cardinal J, Billiar TR, Tsung A. HMGB1: endogenous danger signaling. Mol Med 2008; 14:476-484.
doi: 10.2119/2008-00034.Klune pmid: 18431461 |
| 19 |
Liliensiek B, Liliensiek B, Weigand MA, Bierhaus A, Nicklas W, Kasper M, et al. Receptor for advanced glycation end products (RAGE) regulates sepsis but not the adaptive immune response. J Clin Invest 2004; 113:1641-1650.
doi: 10.1172/JCI200418704 |
| 20 |
Yang H, Ochani M, Li J, Qiang X, Tanovic M, Harris HE, et al. Reversing established sepsis with antagonists of endogenous high-mobility group box 1. Proc Natl Acad Sci USA 2004; 101:296-301.
doi: 10.1073/pnas.2434651100 pmid: 14695889 |
| 21 |
Weaver CT, Hatton RD, Mangan PR, Harrington LE. IL-17 family cytokines and the expanding diversity of effector T-cell lineages. Annu Rev Immunol 2007; 25:821-852.
doi: 10.1146/annurev.immunol.25.022106.141557 pmid: 17201677 |
| 22 |
Flierl MA, Flierl MA, Rittirsch D, Gao H, Hoesel LM, Nadeau BA, et al. Adverse functions of IL-17A in experimental sepsis. FASEB J 2008; 22:2198-2205.
doi: 10.1096/fj.07-105221 pmid: 18299333 |
| 23 |
Gerard C. Complement C5a in the sepsis syndrome — too much of a good thing? N Engl J Med 2003; 348:167-169.
doi: 10.1056/NEJMcibr022995 pmid: 12519929 |
| 24 |
Flierl MA, Rittirsch D, Chen AJ, Nadeau BA, Day DE, Sarma JV, et al. The complement anaphylatoxin C5a induces apoptosis in adrenomedullary cells during experimental sepsis. PLoS ONE 2008; 3:e2560.
doi: 10.1371/journal.pone.0002560 pmid: 18648551 |
| 25 |
Rittirsch D, Flierl MA, Nadeau BA, Day DE, Huber-Lang M, Mackay CR, et al. Functional roles for C5a receptors in sepsis. Nature Med 2008; 14:551-557.
doi: 10.1038/nm1753 pmid: 18454156 |
| 26 |
Chen NJ, Mirtsos C, Suh D, Lu YC, Lin WJ, McKerlie C, et al. C5L2 is critical for the biological activities of the anaphylatoxins C5a and C3a. Nature 2007; 446:203-207.
doi: 10.1038/nature05559 pmid: 17322907 |
| 27 |
Huber-Lang M, Sarma JV, Rittirsch D, Schreiber H, Weiss M, Flierl M, et al. Changes in the novel orphan, C5a receptor (C5L2), during experimental sepsis and sepsis in humans. J Immunol 2005; 174:1104-1110.
doi: 10.4049/jimmunol.174.2.1104 pmid: 15634936 |
| 28 |
Flierl MA, Rittirsch D, Nadeau BA, Day DE, Zetoune FS, Sarma JV, et al. Functions of the complement components C3 and C5 during sepsis. FASEB J 2008; 22: 3483-3490. Epub 2008 Jun 27.
doi: 10.1096/fj.08-110595 pmid: 18587006 |
| 29 |
Rossaint R, Cerny V, Coats TJ, Duranteau J, Fernández-Mondéjar E, Gordini G, et al. Key issues in advanced bleeding care in trauma. Shock 2006; 26:322-331.
doi: 10.1097/01.shk.0000225403.15722.e9 pmid: 16980877 |
| 30 |
Sternberg EM. Neural regulation of innate immunity: a coordinated nonspecific host response to pathogens. Nature Rev Immunol 2006; 6:318-328.
doi: 10.1038/nri1810 |
| 31 |
Wang DW, Zhou RB, Yao YM, Zhu XM, Yin YM, Zhao GJ, et al. Nicotinic acetylcholine receptor α7 subunit is an essential regulator of inflammation. Nature 2003; 421:384-388.
doi: 10.1038/nature01339 pmid: 12508119 |
| 32 |
Huston JM, Ochani M, Rosas-Ballina M, Liao H, Ochani K, Pavlov VA, et al. Splenectomy inactivates the cholinergic antiinflammatory pathway during lethal endotoxemia and polymicrobial sepsis. J Exp Med 2006; 203:1623-1628.
doi: 10.1084/jem.20052362 pmid: 16785311 |
| 33 |
Tracey KJ. Physiology and immunology of the cholinergic antiinflammatory pathway. J Clin Invest 2007; 117:289-296.
doi: 10.1172/JCI30555 pmid: 17273548 |
| 34 |
Huston JM, Gallowitsch-Puerta M, Ochani M, Ochani K, Yuan R, Rosas-Ballina M, et al. Transcutaneous vagus nerve stimulation reduces serum high mobility group box 1 levels and improves survival in murine sepsis. Crit Care Med 2007; 35:2762-2768.
doi: 10.1097/01.CCM.0000288102.15975.BA pmid: 17901837 |
| 35 |
Oberbeck R. Catecholamines: physiological immunomodulators during health and illness. Curr Med Chem 2006; 13:1979-1989.
doi: 10.2174/092986706777584997 pmid: 16842192 |
| 36 |
Oberbeck R, Schmitz D, Wilsenack K, Schüler M, Pehle B, Schedlowski M, et al. Adrenergic modulation of survival and cellular immune functions during polymicrobial sepsis. Neuroimmunomodulation 2004; 11:214-223.
doi: 10.1159/000078439 pmid: 15249727 |
| 37 |
Zhou M, Das P, Simms HH, Wang P. Gut-derived norepinephrine plays an important role in up-regulating IL-1β and IL-10. Biochim Biophys Acta 2005; 1740:446-452.
doi: 10.1016/j.bbadis.2004.11.005 pmid: 15949713 |
| 38 |
Yang S, Koo DJ, Zhou M, Chaudry IH, Wang P. Gut-derived norepinephrine plays a critical role in producing hepatocellular dysfunction during early sepsis. Am J Physiol Gastrointest Liver Physiol 2000; 279:G1274-G1281.
doi: 10.1152/ajpgi.2000.279.6.G1274 pmid: 11093951 |
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