Neutrophil extracellular traps promote macrophage pyroptosis in sepsis
暂无分享,去创建一个
Jie Fan | P. Zhang | G. Jiang | Yuehua Li | K. Fei | Yanfeng Zhao | Linsong Chen | Dengming Lai | Yang Yang
[1] R. Schwabe,et al. The HMGB1/RAGE axis triggers neutrophil-mediated injury amplification following necrosis. , 2019, The Journal of clinical investigation.
[2] T. Billiar,et al. Frontline Science: Macrophage‐derived exosomes promote neutrophil necroptosis following hemorrhagic shock , 2017, Journal of leukocyte biology.
[3] T. Billiar,et al. Aging‐related Atg5 defect impairs neutrophil extracellular traps formation , 2017, Immunology.
[4] H. Anders,et al. Histones and Neutrophil Extracellular Traps Enhance Tubular Necrosis and Remote Organ Injury in Ischemic AKI. , 2017, Journal of the American Society of Nephrology : JASN.
[5] I. Nagaoka,et al. Neutrophil extracellular traps induce IL-1β production by macrophages in combination with lipopolysaccharide , 2017, International journal of molecular medicine.
[6] Robert A. Campbell,et al. Neonatal NET-inhibitory factor and related peptides inhibit neutrophil extracellular trap formation. , 2016, The Journal of clinical investigation.
[7] Junjie Zhu,et al. Hemorrhagic shock primes for lung vascular endothelial cell pyroptosis: role in pulmonary inflammation following LPS , 2016, Cell Death and Disease.
[8] N. Borregaard,et al. Neutrophil extracellular traps - the dark side of neutrophils. , 2016, The Journal of clinical investigation.
[9] D. Green,et al. Programmed necrosis in inflammation: Toward identification of the effector molecules , 2016, Science.
[10] T. Cai,et al. Cleavage of GSDMD by inflammatory caspases determines pyroptotic cell death , 2015, Nature.
[11] Jie Fan,et al. Heatstroke induces liver injury via IL-1β and HMGB1-induced pyroptosis. , 2015, Journal of hepatology.
[12] A. Warnatsch,et al. Neutrophil extracellular traps license macrophages for cytokine production in atherosclerosis , 2015, Science.
[13] H. Anders,et al. Neutrophil Extracellular Trap-Related Extracellular Histones Cause Vascular Necrosis in Severe GN. , 2015, Journal of the American Society of Nephrology : JASN.
[14] E. Zhang,et al. Proinflammatory role of neutrophil extracellular traps in abdominal sepsis. , 2014, American journal of physiology. Lung cellular and molecular physiology.
[15] S. Li,et al. Macrophage endocytosis of high-mobility group box 1 triggers pyroptosis , 2014, Cell Death and Differentiation.
[16] J. Hodgin,et al. Peptidylarginine deiminase inhibition is immunomodulatory and vasculoprotective in murine lupus. , 2013, The Journal of clinical investigation.
[17] P. Thompson,et al. Activation of PAD4 in NET formation , 2012, Front. Immun..
[18] J. Kinet,et al. The TRPM4 Channel Controls Monocyte and Macrophage, but Not Neutrophil, Function for Survival in Sepsis , 2012, The Journal of Immunology.
[19] M. Radic,et al. Neutrophil Extracellular Traps: Double-Edged Swords of Innate Immunity , 2012, Journal of Immunology.
[20] K. Preissner,et al. Neutrophil Extracellular Traps Directly Induce Epithelial and Endothelial Cell Death: A Predominant Role of Histones , 2012, PloS one.
[21] O. Soehnlein,et al. Phagocyte partnership during the onset and resolution of inflammation , 2010, Nature Reviews Immunology.
[22] A. Zychlinsky,et al. NETs: a new strategy for using old weapons. , 2009, Trends in immunology.
[23] B. Cookson,et al. Pyroptosis: host cell death and inflammation , 2009, Nature Reviews Microbiology.
[24] B. Porse,et al. Bone Marrow-Derived Macrophages (BMM): Isolation and Applications. , 2008, CSH protocols.
[25] M. Little,et al. High-throughput paraffin section in situ hybridization and dual immunohistochemistry on mouse tissues. , 2008, CSH protocols.
[26] T. Hohl,et al. Monocyte-mediated defense against microbial pathogens. , 2008, Annual review of immunology.
[27] Y. Vodovotz,et al. NEUTROPHIL NAD(P)H OXIDASE IS REQUIRED FOR HEMORRHAGIC SHOCK-ENHANCED TLR2 UP-REGULATION IN ALVEOLAR MACROPHAGES IN RESPONSE TO LPS , 2007, Shock.
[28] Haichao Wang,et al. A novel role for HMGB1 in TLR9-mediated inflammatory responses to CpG-DNA. , 2007, Blood.
[29] Y. Vodovotz,et al. Hemorrhagic shock-activated neutrophils augment TLR4 signaling-induced TLR2 upregulation in alveolar macrophages: role in hemorrhage-primed lung inflammation. , 2006, American journal of physiology. Lung cellular and molecular physiology.
[30] Kevin J. Tracey,et al. High-mobility group box 1 protein (HMGB1): nuclear weapon in the immune arsenal , 2005, Nature Reviews Immunology.
[31] A. Zychlinsky,et al. Neutrophil Extracellular Traps Kill Bacteria , 2004, Science.
[32] E. Abraham,et al. Involvement of Toll-like Receptors 2 and 4 in Cellular Activation by High Mobility Group Box 1 Protein* , 2004, Journal of Biological Chemistry.
[33] John Calvin Reed,et al. Apoptosis-Associated Speck-Like Protein Containing a Caspase Recruitment Domain Is a Regulator of Procaspase-1 Activation 1 , 2003, The Journal of Immunology.
[34] A. Malik,et al. Toll-like receptor-4 (TLR4) signaling augments chemokine-induced neutrophil migration by modulating cell surface expression of chemokine receptors , 2003, Nature Medicine.
[35] Thomas D. Schmittgen,et al. Analysis of relative gene expression data using real-time quantitative PCR and the 2(-Delta Delta C(T)) Method. , 2001, Methods.
[36] C. Hunter,et al. Programmed Necrosis in the Cross Talk of Cell Death and Inflammation , 2016 .
[37] A. Malik,et al. Toll-like receptor-4 (TLR4) signaling augments chemokine-induced neutrophil migration by modulating cell surface expression of chemokine receptors , 2003, Nature Medicine.