CD11b Regulates Fungal Outgrowth but Not Neutrophil Recruitment in a Mouse Model of Invasive Pulmonary Aspergillosis
暂无分享,去创建一个
M. Bros | S. Grabbe | M. Theobald | A. Cholaszczyńska | M. Radsak | D. Teschner | H. Beckert | Frederic Ries | F. Ries | Matthias Bros
[1] E. Podrez,et al. Oxidative modifications of extracellular matrix promote the second wave of inflammation via β2 integrins. , 2018, Blood.
[2] G. Braus,et al. Sterilizing immunity in the lung relies on targeting fungal apoptosis-like programmed cell death , 2017, Science.
[3] H. Schild,et al. ADAMTS-13 regulates neutrophil recruitment in a mouse model of invasive pulmonary aspergillosis , 2017, Scientific Reports.
[4] Claudia Schulz,et al. The Bruton tyrosine kinase inhibitor ibrutinib abrogates triggering receptor on myeloid cells 1-mediated neutrophil activation , 2017, Haematologica.
[5] Jessica M. Dorschner,et al. CD11b activation suppresses TLR-dependent inflammation and autoimmunity in systemic lupus erythematosus , 2017, The Journal of clinical investigation.
[6] Xiaodong Zhang,et al. The Diverse Biological Functions of Neutrophils, Beyond the Defense Against Infections , 2017, Inflammation.
[7] Jun R Huh,et al. Central Role of IL-23 and IL-17 Producing Eosinophils as Immunomodulatory Effector Cells in Acute Pulmonary Aspergillosis and Allergic Asthma , 2017, PLoS pathogens.
[8] K. Ley,et al. Biology and structure of leukocyte β 2 integrins and their role in inflammation , 2016, F1000Research.
[9] T. Kuijpers,et al. How neutrophils kill fungi , 2016, Immunological reviews.
[10] Luka Culibrk,et al. Interactions of Aspergillus fumigatus Conidia with Airway Epithelial Cells: A Critical Review , 2016, Front. Microbiol..
[11] T. K. van den Berg,et al. Human Neutrophils Use Different Mechanisms To Kill Aspergillus fumigatus Conidia and Hyphae: Evidence from Phagocyte Defects , 2016, The Journal of Immunology.
[12] F. de Chaumont,et al. Absence of Fungal Spore Internalization by Bronchial Epithelium in Mouse Models Evidenced by a New Bioimaging Approach and Transmission Electronic Microscopy. , 2015, The American journal of pathology.
[13] H. Schild,et al. Oxidative burst and neutrophil elastase contribute to clearance of Aspergillus fumigatus pneumonia in mice. , 2014, Immunobiology.
[14] P. Taylor,et al. Integrin CD11b positively regulates TLR4-induced signalling pathways in dendritic cells but not in macrophages , 2014, Nature Communications.
[15] C. Steele,et al. Eosinophil Deficiency Compromises Lung Defense against Aspergillus fumigatus , 2013, Infection and Immunity.
[16] S. Leal,et al. Autocrine IL-17A–IL-17RC neutrophil activation in fungal infections is regulated by IL-6, IL-23, RORγt and Dectin-2 , 2013, Nature Immunology.
[17] D. Denning,et al. Frequency, diagnosis and management of fungal respiratory infections , 2013, Current opinion in pulmonary medicine.
[18] R. Blumenthal,et al. Emergence, origin, and function of neutrophil-dendritic cell hybrids in experimentally induced inflammatory lesions in mice. , 2013, Blood.
[19] A. Weyrich,et al. Lessons from rare maladies: leukocyte adhesion deficiency syndromes , 2012, Current opinion in hematology.
[20] N. Hotchin,et al. Signalling mechanisms of the leukocyte integrin αMβ2: Current and future perspectives , 2012, Biology of the cell.
[21] S. Zahler,et al. C-C motif chemokine CCL3 and canonical neutrophil attractants promote neutrophil extravasation through common and distinct mechanisms. , 2012, Blood.
[22] M. Burdick,et al. Neutrophils Mediate Maturation and Efflux of Lung Dendritic Cells in Response to Aspergillus fumigatus Germ Tubes , 2012, Infection and Immunity.
[23] C. Weaver,et al. Neutrophils Produce Interleukin 17A (IL-17A) in a Dectin-1- and IL-23-Dependent Manner during Invasive Fungal Infection , 2011, Infection and Immunity.
[24] P. Taylor,et al. Class IA Phosphoinositide 3-Kinase β and δ Regulate Neutrophil Oxidase Activation in Response to Aspergillus fumigatus Hyphae , 2011, The Journal of Immunology.
[25] S. Holland,et al. Residual NADPH oxidase and survival in chronic granulomatous disease. , 2010, The New England journal of medicine.
[26] Zhen-yu Huang,et al. Interaction of Two Phagocytic Host Defense Systems , 2010, The Journal of Biological Chemistry.
[27] E. Anaissie,et al. Factors associated with mortality in transplant patients with invasive aspergillosis. , 2010, Clinical infectious diseases : an official publication of the Infectious Diseases Society of America.
[28] S. Frøland,et al. Activation of Platelets by Aspergillus fumigatus and Potential Role of Platelets in the Immunopathogenesis of Aspergillosis , 2009, Infection and Immunity.
[29] H. Langer,et al. Leukocyte – endothelial interactions in inflammation , 2009, Journal of cellular and molecular medicine.
[30] H. Einsele,et al. Primary prophylaxis of invasive fungal infections in patients with hematologic malignancies. Recommendations of the Infectious Diseases Working Party of the German Society for Haematology and Oncology , 2009, Haematologica.
[31] C. Cordonnier,et al. Phagocytosis of Aspergillus fumigatus conidia by primary nasal epithelial cells in vitro , 2008, BMC Microbiology.
[32] Matt Post,et al. Invasive fungal infections in allogeneic and autologous stem cell transplant recipients: a single‐center study of 166 transplanted patients , 2007, Transplant infectious disease : an official journal of the Transplantation Society.
[33] M. Gunzer,et al. Environmental Dimensionality Controls the Interaction of Phagocytes with the Pathogenic Fungi Aspergillus fumigatus and Candida albicans , 2007, PLoS pathogens.
[34] D. Vestweber,et al. Active MAC-1 (CD11b/CD18) on DCs inhibits full T-cell activation. , 2007, Blood.
[35] C. Hogaboam,et al. Chemokines in allergic aspergillosis--from animal models to human lung diseases. , 2006, Inflammation & allergy drug targets.
[36] R. Grillot,et al. Human Dendritic Cells following Aspergillus fumigatus Infection Express the CCR7 Receptor and a Differential Pattern of Interleukin-12 (IL-12), IL-23, and IL-27 Cytokines, Which Lead to a Th1 Response , 2006, Infection and Immunity.
[37] B. Heit,et al. Fundamentally different roles for LFA-1, Mac-1 and α4-integrin in neutrophil chemotaxis , 2005, Journal of Cell Science.
[38] T. van der Poll,et al. CD11b limits bacterial outgrowth and dissemination during murine pneumococcal pneumonia. , 2005, The Journal of infectious diseases.
[39] E. Génot,et al. Inhibitory control of TGF‐β1 on the activation of Rap1, CD11b, and transendothelial migration of leukocytes , 2005, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[40] L. Truedsson,et al. Critical role for complement receptor 3 (CD11b/CD18), but not for Fc receptors, in killing of Streptococcus pyogenes by neutrophils in human immune serum , 2005, European journal of immunology.
[41] T. Geijtenbeek,et al. Neutrophils mediate immune modulation of dendritic cells through glycosylation-dependent interactions between Mac-1 and DC-SIGN , 2005, The Journal of experimental medicine.
[42] J. Jimenez-Heffernan,et al. Dendritic Cell-Specific Intercellular Adhesion Molecule 3-Grabbing Nonintegrin Mediates Binding and Internalization of Aspergillus fumigatus Conidia by Dendritic Cells and Macrophages1 , 2004, The Journal of Immunology.
[43] A. Issekutz,et al. The CD11/CD18 (β2) integrins modulate neutrophil caspase activation and survival following TNF‐α or endotoxin induced transendothelial migration , 2004 .
[44] S. Han,et al. Aggregation of β2 integrins activates human neutrophils through the IκB/NF‐κB pathway , 2004, Journal of leukocyte biology.
[45] M. Wellner,et al. Integrins and Cytokines Activate Nuclear Transcription Factor-κB in Human Neutrophils* , 2004, Journal of Biological Chemistry.
[46] S. Kunkel. Faculty Opinions recommendation of Cross-talk in the innate immune system: neutrophils instruct recruitment and activation of dendritic cells during microbial infection. , 2003 .
[47] T. Curiel,et al. Cross-Talk in the Innate Immune System: Neutrophils Instruct Recruitment and Activation of Dendritic Cells during Microbial Infection 1 , 2003, The Journal of Immunology.
[48] Bin Zhang,et al. Elucidation of Molecular Events Leading to Neutrophil Apoptosis following Phagocytosis , 2003, Journal of Biological Chemistry.
[49] Lixin Liu,et al. Priming of eosinophil migration across lung epithelial cell monolayers and upregulation of CD11b/CD18 are elicited by extracellular Ca2+. , 2003, American journal of respiratory cell and molecular biology.
[50] C. Hogaboam,et al. The role of CC chemokine receptor 5 (CCR5) and RANTES/CCL5 during chronic fungal asthma in mice1 , 2002, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[51] T. Mayadas,et al. Mac-1 (CD11b/CD18) is essential for Fc receptor-mediated neutrophil cytotoxicity and immunologic synapse formation. , 2001, Blood.
[52] S. M. Propst,et al. Proinflammatory and Th2-Derived Cytokines Modulate CD40-Mediated Expression of Inflammatory Mediators in Airway Epithelia: Implications for the Role of Epithelial CD40 in Airway Inflammation , 2000, The Journal of Immunology.
[53] M. Ehlers,et al. CR3: a general purpose adhesion-recognition receptor essential for innate immunity. , 2000, Microbes and infection.
[54] Z. Ding,et al. Relative contribution of LFA-1 and Mac-1 to neutrophil adhesion and migration. , 1999, Journal of immunology.
[55] G. Verleden,et al. Expression of monocyte chemotactic protein (MCP)-1, MCP-2, and MCP-3 by human airway smooth-muscle cells. Modulation by corticosteroids and T-helper 2 cytokines. , 1999, American journal of respiratory cell and molecular biology.
[56] M. Scott,et al. Effects of CD18 deficiency on the emigration of murine neutrophils during pneumonia. , 1999, Journal of immunology.
[57] J. Schröder,et al. Th1- and Th2-type cytokines regulate the expression and production of eotaxin and RANTES by human lung fibroblasts. , 1999, American journal of respiratory cell and molecular biology.
[58] P. Gaehtgens,et al. β2 integrins (CD11/CD18) promote apoptosis of human neutrophils , 1997, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[59] S Askari,et al. A novel role for the beta 2 integrin CD11b/CD18 in neutrophil apoptosis: a homeostatic mechanism in inflammation. , 1996, Immunity.
[60] N. Wagner. Leucocyte adhesion deficiency syndromes. , 1994, Archives of disease in childhood.
[61] T. Springer,et al. The severe and moderate phenotypes of heritable Mac-1, LFA-1 deficiency: their quantitative definition and relation to leukocyte dysfunction and clinical features. , 1985, The Journal of infectious diseases.
[62] C. Aring,et al. A CRITICAL REVIEW , 1939, Journal of neurology and psychiatry.
[63] H. Kita,et al. Ligation of the beta2 integrin triggers activation and degranulation of human eosinophils. , 1998, American journal of respiratory cell and molecular biology.
[64] S. Heffelfinger,et al. Leukocyte adhesion deficiency: clinical and postmortem observations. , 1992, Pediatric pathology.