Autoimmunity in chronic obstructive pulmonary disease: clinical and experimental evidence
暂无分享,去创建一个
[1] Chen Dong,et al. Cigarette Smoke Induction of Osteopontin (SPP1) Mediates TH17 Inflammation in Human and Experimental Emphysema , 2012, Science Translational Medicine.
[2] N. McElvaney,et al. The role of proteases, endoplasmic reticulum stress and SERPINA1 heterozygosity in lung disease and α-1 anti-trypsin deficiency , 2011, Expert review of respiratory medicine.
[3] H. Coxson,et al. Cross-Sectional Analysis of the Utility of Pulmonary Function Tests in Predicting Emphysema in Ever-Smokers , 2011, International journal of environmental research and public health.
[4] F. Gómez,et al. Anti-tissue antibodies are related to lung function in chronic obstructive pulmonary disease. , 2011, American journal of respiratory and critical care medicine.
[5] D. Campbell,et al. Phenotypical and functional specialization of FOXP3+ regulatory T cells , 2011, Nature Reviews Immunology.
[6] J. Knobloch,et al. The T-helper cell type 1 immune response to gram-negative bacterial infections is impaired in COPD. , 2011, American journal of respiratory and critical care medicine.
[7] Edwin K Silverman,et al. Genome-wide association study identifies BICD1 as a susceptibility gene for emphysema. , 2011, American journal of respiratory and critical care medicine.
[8] E. Regan,et al. Genetic Epidemiology of COPD (COPDGene) Study Design , 2011, COPD.
[9] N. Tubridy,et al. T cells in multiple sclerosis and experimental autoimmune encephalomyelitis , 2010, Clinical and experimental immunology.
[10] C. Gieger,et al. Sequence variants at CHRNB3–CHRNA6 and CYP2A6 affect smoking behavior , 2010, Nature Genetics.
[11] D. Corry,et al. Human rhinovirus proteinase 2A induces TH1 and TH2 immunity in patients with chronic obstructive pulmonary disease , 2010, Journal of Allergy and Clinical Immunology.
[12] W. Stohl,et al. Autoantibody-dependent and autoantibody-independent roles for B cells in systemic lupus erythematosus: Past, present, and future , 2010, Autoimmunity.
[13] Byron C. Wallace,et al. The COPD genetic association compendium: a comprehensive online database of COPD genetic associations. , 2009, Human molecular genetics.
[14] N. McElvaney,et al. Anti-proline-glycine-proline or antielastin autoantibodies are not evident in chronic inflammatory lung disease. , 2010, American journal of respiratory and critical care medicine.
[15] C. Weaver,et al. Autoimmunity: increasing suspects in the CD4+ T cell lineup , 2010, Nature Immunology.
[16] Alvar Agusti,et al. Immunologic aspects of chronic obstructive pulmonary disease. , 2009, The New England journal of medicine.
[17] H. Coxson,et al. Lung Myeloid Dendritic Cells Coordinately Induce TH1 and TH17 Responses in Human Emphysema , 2009, Science Translational Medicine.
[18] L. Mota,et al. Autoantibodies and other serological markers in rheumatoid arthritis: predictors of disease activity? , 2009, Clinical Rheumatology.
[19] Thomas Korn,et al. IL-17 and Th17 Cells. , 2009, Annual review of immunology.
[20] Peter K Gregersen,et al. Recent advances in the genetics of autoimmune disease. , 2009, Annual review of immunology.
[21] K. Shianna,et al. A Genome-Wide Association Study in Chronic Obstructive Pulmonary Disease (COPD): Identification of Two Major Susceptibility Loci , 2009, PLoS genetics.
[22] A. Moreira,et al. Anti-elastin autoantibodies are not present in combined pulmonary fibrosis and emphysema , 2009, European Respiratory Journal.
[23] B. Lambrecht,et al. Division of labor between dendritic cell subsets of the lung , 2008, Mucosal Immunology.
[24] J. Leader,et al. Association of radiographic emphysema and airflow obstruction with lung cancer. , 2008, American journal of respiratory and critical care medicine.
[25] J. Blalock,et al. Induction of lung emphysema is prevented by L‐arginine‐threonine‐arginine , 2008, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[26] B. Ryffel,et al. Response to Comment on “Cigarette Smoke-Induced Pulmonary Inflammation Is TLR4/MyD88 and IL-1R1/MyD88 Signaling Dependent” , 2008, The Journal of Immunology.
[27] Daniel F. Gudbjartsson,et al. A variant associated with nicotine dependence, lung cancer and peripheral arterial disease , 2008, Nature.
[28] F. Sciurba,et al. Autoantibodies in patients with chronic obstructive pulmonary disease. , 2008, American journal of respiratory and critical care medicine.
[29] J. Strausz,et al. Pathology of chronic obstructive pulmonary disease , 2006, Pathology & Oncology Research.
[30] Deaths from chronic obstructive pulmonary disease--United States, 2000-2005. , 2008, MMWR. Morbidity and mortality weekly report.
[31] A. Coutinho,et al. Physiopathology of natural auto-antibodies: the case for regulation. , 2007, Journal of autoimmunity.
[32] T. Tetley,et al. Immunohistochemical detection of dendritic cells in human lung tissue. , 2007, Histopathology.
[33] G. Verleden,et al. Accumulation of dendritic cells and increased CCL20 levels in the airways of patients with chronic obstructive pulmonary disease. , 2007, American journal of respiratory and critical care medicine.
[34] Matthew B Schabath,et al. A risk model for prediction of lung cancer. , 2007, Journal of the National Cancer Institute.
[35] H. Coxson,et al. Antielastin autoimmunity in tobacco smoking–induced emphysema , 2007, Nature Medicine.
[36] K. Murphy,et al. Th17: an effector CD4 T cell lineage with regulatory T cell ties. , 2006, Immunity.
[37] J. Wedzicha,et al. Respiratory syncytial virus, airway inflammation, and FEV1 decline in patients with chronic obstructive pulmonary disease. , 2006, American journal of respiratory and critical care medicine.
[38] A. Kraneveld,et al. A novel peptide CXCR ligand derived from extracellular matrix degradation during airway inflammation , 2006, Nature Medicine.
[39] G. Joos,et al. Cigarette smoke-induced pulmonary emphysema in scid-mice. Is the acquired immune system required? , 2005, Respiratory research.
[40] N. Sverzellati,et al. Early smoking-induced lung lesions in asymptomatic subjects. Correlations between high resolution dynamic CT and pulmonary function testing. , 2005, La Radiologia medica.
[41] M. Cosio,et al. The development of emphysema in cigarette smoke-exposed mice is strain dependent. , 2004, American journal of respiratory and critical care medicine.
[42] D. Corry,et al. An Immune Basis for Lung Parenchymal Destruction in Chronic Obstructive Pulmonary Disease and Emphysema , 2004, PLoS medicine.
[43] E. Mason,et al. Infectious exacerbations of chronic obstructive pulmonary disease associated with respiratory viruses and non‐typeable Haemophilus influenzae , 2003, FEMS Immunology and Medical Microbiology.
[44] M. Cosio,et al. Alpha1-antitrypsin determines the pattern of emphysema and function in tobacco smoke-exposed mice: parallels with human disease. , 2002, American journal of respiratory and critical care medicine.
[45] John E Connett,et al. Smoking and lung function of Lung Health Study participants after 11 years. , 2002, American journal of respiratory and critical care medicine.
[46] A. Churg,et al. Acute cigarette smoke-induced connective tissue breakdown requires both neutrophils and macrophage metalloelastase in mice. , 2002, American journal of respiratory cell and molecular biology.
[47] J. Newell. CT of emphysema. , 2002, Radiologic clinics of North America.
[48] T. Seemungal,et al. Respiratory viruses, symptoms, and inflammatory markers in acute exacerbations and stable chronic obstructive pulmonary disease. , 2001, American journal of respiratory and critical care medicine.
[49] S. Shapiro,et al. End-stage chronic obstructive pulmonary disease: the cigarette is burned out but inflammation rages on. , 2001, American journal of respiratory and critical care medicine.
[50] L. Fabbri,et al. The C-C chemokine receptors CCR4 and CCR8 identify airway T cells of allergen-challenged atopic asthmatics. , 2001, The Journal of clinical investigation.
[51] R. Steinman,et al. The Dendritic Cell Receptor for Endocytosis, Dec-205, Can Recycle and Enhance Antigen Presentation via Major Histocompatibility Complex Class II–Positive Lysosomal Compartments , 2000, The Journal of cell biology.
[52] T. Seemungal,et al. Time course and recovery of exacerbations in patients with chronic obstructive pulmonary disease. , 2000, American journal of respiratory and critical care medicine.
[53] M. Cosio,et al. Chronic obstructive pulmonary disease. Inflammation of small airways and lung parenchyma. , 1999, American journal of respiratory and critical care medicine.
[54] S. Akira,et al. Differential roles of TLR2 and TLR4 in recognition of gram-negative and gram-positive bacterial cell wall components. , 1999, Immunity.
[55] L. Fabbri,et al. CD8+ve cells in the lungs of smokers with chronic obstructive pulmonary disease. , 1999, American journal of respiratory and critical care medicine.
[56] S. Hanauer,et al. Advances in the management of Crohn's disease: economic and clinical potential of infliximab. , 1998, Clinical therapeutics.
[57] A. Coutinho,et al. Self-reactive antibodies (natural autoantibodies) in healthy individuals. , 1998, Journal of immunological methods.
[58] S. Shapiro,et al. Elastolytic metalloproteinases produced by human mononuclear phagocytes. Potential roles in destructive lung disease. , 1994, American journal of respiratory and critical care medicine.
[59] S. Shapiro,et al. Elastin Degradation by Mononuclear Phagocytes a , 1991, Annals of the New York Academy of Sciences.
[60] R. Senior,et al. Elastin degradation by human alveolar macrophages. A prominent role of metalloproteinase activity. , 1989, The American review of respiratory disease.
[61] R. Mecham,et al. Val-Gly-Val-Ala-Pro-Gly, a repeating peptide in elastin, is chemotactic for fibroblasts and monocytes , 1984, The Journal of cell biology.
[62] J. Pierce,et al. The induction of emphysema with elastase. I. The evolution of the lesion and the influence of serum. , 1973, The Journal of laboratory and clinical medicine.
[63] C. Laurell,et al. The serum α1-antitrypsin in families with hypo-α1-antitrypsinemia , 1965 .
[64] C. Laurell,et al. THE SERUM ALPHA-L-ANTITRYPSIN IN FAMILIES WITH HYPO-ALPHA-L-ANTITRYPSINEMIA. , 1965, Clinica chimica acta; international journal of clinical chemistry.