The reduction of DSS-induced colitis severity in mice exposed to cigarette smoke is linked to immune modulation and microbial shifts
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Rémi H. J. Dulize | M. Peitsch | A. Sewer | J. Hoeng | B. Titz | B. Phillips | E. Guedj | A. Kondylis | N. Ivanov | David Bornand | M. Talikka | J. Battey | G. Lo Sasso | S. Ouadi | C. K. Tung | Maica Corciulo | Dariusz Peric | Céline Merg | Rendy Yanuar
[1] A. Bernabé-Ortiz,et al. A systematic review of population-based studies on lipid profiles in Latin America and the Caribbean , 2020, eLife.
[2] D. Hinds,et al. Anti-IL-13Rα2 therapy promotes recovery in a murine model of inflammatory bowel disease , 2019, Mucosal Immunology.
[3] Huiru Tang,et al. Alterations of Bile Acids and Gut Microbiota in Obesity Induced by High Fat Diet in Rat Model. , 2019, Journal of agricultural and food chemistry.
[4] Chris C. Tang,et al. Compositional changes to the ileal microbiome precede the onset of spontaneous ileitis in SHIP deficient mice , 2019, Gut microbes.
[5] G. Wong,et al. Host immunoglobulin G selectively identifies pathobionts in pediatric inflammatory bowel diseases , 2019, Microbiome.
[6] K. Tomita,et al. Nicotine treatment ameliorates DSS‐induced colitis by suppressing MAdCAM‐1 expression and leukocyte recruitment , 2018, Journal of leukocyte biology.
[7] Z. Savin,et al. Smoking and the intestinal microbiome , 2018, Archives of Microbiology.
[8] S. Bueno,et al. Impact of Cigarette Smoking on the Gastrointestinal Tract Inflammation: Opposing Effects in Crohn’s Disease and Ulcerative Colitis , 2018, Front. Immunol..
[9] Xinrui Li,et al. Toll-like Receptors and Inflammatory Bowel Disease , 2018, Front. Immunol..
[10] Nima Hamidi,et al. Worldwide incidence and prevalence of inflammatory bowel disease in the 21st century: a systematic review of population-based studies , 2017, The Lancet.
[11] Thawfeek M. Varusai,et al. The Reactome Pathway Knowledgebase , 2017, Nucleic acids research.
[12] Heng Li,et al. Minimap2: pairwise alignment for nucleotide sequences , 2017, Bioinform..
[13] V. Belcastro,et al. Exploring the microbiome in health and disease , 2017 .
[14] G. Núñez,et al. Gut microbiota: Role in pathogen colonization, immune responses, and inflammatory disease , 2017, Immunological reviews.
[15] D. Iliopoulos,et al. The IBD interactome: an integrated view of aetiology, pathogenesis and therapy , 2017, Nature Reviews Gastroenterology & Hepatology.
[16] A. Dabrowski,et al. Protective effect of cigarette smoke on the course of dextran sulfate sodium-induced colitis is accompanied by lymphocyte subpopulation changes in the blood and colon , 2017, International Journal of Colorectal Disease.
[17] B. Ahmer,et al. Chemical and pathogen-induced inflammation disrupt the murine intestinal microbiome , 2017, Microbiome.
[18] S. Ng,et al. The Worldwide Incidence and Prevalence of Inflammatory Bowel Disease in the 21 st Century: A Systematic Review of Population-Based Studies , 2017 .
[19] G. Wainrib,et al. Integrative Network-based Analysis of Colonic Detoxification Gene Expression in Ulcerative Colitis According to Smoking Status , 2016, Journal of Crohn's & colitis.
[20] B. Abraham,et al. Inflammatory Bowel Disease: Pathophysiology and Current Therapeutic Approaches. , 2017, Handbook of experimental pharmacology.
[21] D. Laukens,et al. Chronic cigarette smoke exposure induces microbial and inflammatory shifts and mucin changes in the murine gut. , 2016, Environmental microbiology.
[22] Rémi H. J. Dulize,et al. Effects of cigarette smoke, cessation and switching to a candidate modified risk tobacco product on the liver in Apoe−/− mice – a systems toxicology analysis , 2016, Inhalation toxicology.
[23] A. Ford,et al. Systematic review with meta‐analysis: the adverse effects of tobacco smoking on the natural history of Crohn's disease , 2016, Alimentary pharmacology & therapeutics.
[24] Henning Hermjakob,et al. The Reactome pathway Knowledgebase , 2015, Nucleic acids research.
[25] W. D. de Vos,et al. Production of butyrate from lysine and the Amadori product fructoselysine by a human gut commensal , 2015, Nature Communications.
[26] E. Choi,et al. Severity of DSS-induced colitis is reduced in Ido1-deficient mice with down-regulation of TLR-MyD88-NF-kB transcriptional networks , 2015, Scientific Reports.
[27] R. Gomis,et al. Akkermansia muciniphila inversely correlates with the onset of inflammation, altered adipose tissue metabolism and metabolic disorders during obesity in mice , 2015, Scientific Reports.
[28] Ashraf Elamin,et al. A 7-month cigarette smoke inhalation study in C57BL/6 mice demonstrates reduced lung inflammation and emphysema following smoking cessation or aerosol exposure from a prototypic modified risk tobacco product. , 2015, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[29] Davide Heller,et al. STRING v10: protein–protein interaction networks, integrated over the tree of life , 2014, Nucleic Acids Res..
[30] W. Huber,et al. Moderated estimation of fold change and dispersion for RNA-seq data with DESeq2 , 2014, Genome Biology.
[31] G. Rogler,et al. Smoking Cessation Alters Intestinal Microbiota: Insights from Quantitative Investigations on Human Fecal Samples Using FISH , 2014, Inflammatory bowel diseases.
[32] A. CheadleGerald,et al. Cholinergic signaling in the gut: a novel mechanism of barrier protection through activation of enteric glia cells. , 2014 .
[33] Yang Xiang,et al. Quantification of biological network perturbations for mechanistic insight and diagnostics using two-layer causal models , 2014, BMC Bioinformatics.
[34] P. Hylemon,et al. Bile acids and the gut microbiome , 2014, Current opinion in gastroenterology.
[35] Brian Bushnell,et al. BBMap: A Fast, Accurate, Splice-Aware Aligner , 2014 .
[36] T. Urich,et al. Longitudinal study of murine microbiota activity and interactions with the host during acute inflammation and recovery , 2014, The ISME Journal.
[37] Andreas Krämer,et al. Causal analysis approaches in Ingenuity Pathway Analysis , 2013, Bioinform..
[38] S. Ahrné,et al. Immunological alteration and changes of gut microbiota after dextran sulfate sodium (DSS) administration in mice , 2014, Clinical and Experimental Medicine.
[39] Tae-Young Roh,et al. Extracellular Vesicles Derived from Gut Microbiota, Especially Akkermansia muciniphila, Protect the Progression of Dextran Sulfate Sodium-Induced Colitis , 2013, PloS one.
[40] P. Lakatos,et al. The burden of inflammatory bowel disease in Europe. , 2013, Journal of Crohn's & colitis.
[41] C. Neut,et al. Colonic Inflammation in Mice Is Improved by Cigarette Smoke through iNKT Cells Recruitment , 2013, PloS one.
[42] Ateequr Rehman,et al. Smoking Cessation Induces Profound Changes in the Composition of the Intestinal Microbiota in Humans , 2013, PloS one.
[43] F. Guarner,et al. Phylogenetic Analysis of Dysbiosis in Ulcerative Colitis During Remission , 2013, Inflammatory bowel diseases.
[44] I. Nookaew,et al. Enriching the gene set analysis of genome-wide data by incorporating directionality of gene expression and combining statistical hypotheses and methods , 2013, Nucleic acids research.
[45] M. Verma,et al. Anti-inflammatory activity of anatabine via inhibition of STAT3 phosphorylation. , 2013, European journal of pharmacology.
[46] S. Vermeire,et al. Second European evidence-based consensus on the diagnosis and management of ulcerative colitis part 1: definitions and diagnosis. , 2012, Journal of Crohn's & colitis.
[47] H. Sokol,et al. Connecting dysbiosis, bile-acid dysmetabolism and gut inflammation in inflammatory bowel diseases , 2012, Gut.
[48] M. Metsis,et al. Mucin5B expression by lung alveolar macrophages is increased in long‐term smokers , 2012, Journal of leukocyte biology.
[49] S. Ng,et al. Smokers with active Crohn's disease have a clinically relevant dysbiosis of the gastrointestinal microbiota* , 2012, Inflammatory bowel diseases.
[50] Jun Ren,et al. Side-stream smoking reduces intestinal inflammation and increases expression of tight junction proteins. , 2012, World journal of gastroenterology.
[51] Tim Urich,et al. Phylotype-level 16S rRNA analysis reveals new bacterial indicators of health state in acute murine colitis , 2012, The ISME Journal.
[52] B. Kuster,et al. Lactocepin secreted by Lactobacillus exerts anti-inflammatory effects by selectively degrading proinflammatory chemokines. , 2012, Cell host & microbe.
[53] C. Cuvelier,et al. The effect of smoking on intestinal inflammation: what can be learned from animal models? , 2012, Journal of Crohn's & colitis.
[54] M. Rescigno,et al. Probiotic and postbiotic activity in health and disease: comparison on a novel polarised ex-vivo organ culture model , 2012, Gut.
[55] Subrata Ghosh,et al. Increasing incidence and prevalence of the inflammatory bowel diseases with time, based on systematic review. , 2012, Gastroenterology.
[56] K. Fagerström,et al. The Epidemiology of Smoking , 2012, Drugs.
[57] J. Yamamoto-Furusho,et al. Transcript levels of Toll-Like receptors 5, 8 and 9 correlate with inflammatory activity in Ulcerative Colitis , 2011, BMC gastroenterology.
[58] J. Satsangi,et al. Cigarette Smoke Extract (CSE) Delays NOD2 Expression and Affects NOD2/RIPK2 Interactions in Intestinal Epithelial Cells , 2011, PloS one.
[59] B. Beltrán,et al. Ulcerative colitis in smokers, non-smokers and ex-smokers. , 2011, World journal of gastroenterology.
[60] W. Verstraete,et al. Propionate as a health-promoting microbial metabolite in the human gut. , 2011, Nutrition reviews.
[61] J. Clifford,et al. Temporal genomewide expression profiling of DSS colitis reveals novel inflammatory and angiogenesis genes similar to ulcerative colitis. , 2011, Physiological genomics.
[62] Office on Smoking. How Tobacco Smoke Causes Disease: The Biology and Behavioral Basis for Smoking-Attributable Disease: A Report of the Surgeon General , 2010 .
[63] M. Rescigno,et al. Comparison of the Immunomodulatory Properties of Three Probiotic Strains of Lactobacilli Using Complex Culture Systems: Prediction for In Vivo Efficacy , 2009, PloS one.
[64] T. Irimura,et al. A C-type lectin MGL1/CD301a plays an anti-inflammatory role in murine experimental colitis. , 2009, The American journal of pathology.
[65] T. Klaenhammer,et al. Genomic features of Lactobacillus species. , 2009, Frontiers in bioscience.
[66] A. Neish,et al. REVIEWS IN BASIC AND CLINICAL GASTROENTEROLOGY Microbes in Gastrointestinal Health and Disease , 2009 .
[67] Dong-Hyun Kim,et al. The Degradation of Glycosaminoglycans by Intestinal Microflora Deteriorates Colitis in Mice , 2009, Inflammation.
[68] S. Melgar,et al. Validation of murine dextran sulfate sodium-induced colitis using four therapeutic agents for human inflammatory bowel disease. , 2008, International immunopharmacology.
[69] D. J. Alexander,et al. Association of Inhalation Toxicologists (AIT) Working Party Recommendation for Standard Delivered Dose Calculation and Expression in Non-Clinical Aerosol Inhalation Toxicology Studies with Pharmaceuticals , 2008 .
[70] F. Schmidt. Meta-Analysis , 2008 .
[71] A. Levine,et al. Mucosal T-cell immunoregulation varies in early and late inflammatory bowel disease , 2007, Gut.
[72] David M. Burns,et al. The scientific basis of tobacco product regulation. , 2007, World Health Organization technical report series.
[73] S. Galandiuk,et al. Smoking and inflammatory bowel disease: a meta-analysis. , 2006, Mayo Clinic proceedings.
[74] A. Gasbarrini,et al. Efficacy of Lactobacillus GG in maintaining remission of ulcerative colitis , 2006, Alimentary pharmacology & therapeutics.
[75] S. Miehlke,et al. Prevalence of Bacteroides and Prevotella spp. in ulcerative colitis. , 2006, Journal of medical microbiology.
[76] R. Medzhitov,et al. Role of Toll-like Receptors in Commensal Dependent Colitis , 2006 .
[77] A. Sepulveda,et al. Carbon monoxide ameliorates chronic murine colitis through a heme oxygenase 1–dependent pathway , 2005, The Journal of experimental medicine.
[78] Pablo Tamayo,et al. Gene set enrichment analysis: A knowledge-based approach for interpreting genome-wide expression profiles , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[79] H. Berthoud,et al. Stimulation of the vagus nerve attenuates macrophage activation by activating the Jak2-STAT3 signaling pathway , 2005, Nature Immunology.
[80] W. D. de Vos,et al. Akkermansia muciniphila gen. nov., sp. nov., a human intestinal mucin-degrading bacterium. , 2004, International journal of systematic and evolutionary microbiology.
[81] Gordon K Smyth,et al. Statistical Applications in Genetics and Molecular Biology Linear Models and Empirical Bayes Methods for Assessing Differential Expression in Microarray Experiments , 2011 .
[82] S. Leung,et al. Cigarette smoke exposure increases ulcerative colitis-associated colonic adenoma formation in mice. , 2003, Carcinogenesis.
[83] Kevin J. Tracey,et al. Nicotinic acetylcholine receptor α7 subunit is an essential regulator of inflammation , 2002, Nature.
[84] K. Fagerström,et al. The epidemiology of smoking: health consequences and benefits of cessation. , 2002, Drugs.
[85] C. Cho,et al. Aggravating Effect of Cigarette Smoke Exposure on Experimental Colitis Is Associated with Leukotriene B4 and Reactive Oxygen Metabolites , 2001, Digestion.
[86] R. Wallace,et al. Clearing the Smoke , 2001 .
[87] R. Wallace,et al. Clearing the smoke: assessing the science base for tobacco harm reduction. , 2001 .
[88] P. O'Byrne,et al. Cigarette smoke aggravates experimental colitis in rats. , 1999, Gastroenterology.
[89] E. Bloemena,et al. Chronic experimental colitis induced by dextran sulphate sodium (DSS) is characterized by Th1 and Th2 cytokines , 1998, Clinical and experimental immunology.
[90] P. A. Kurup,et al. Changes in the glycosaminoglycans and glycoproteins in the tissues in rats exposed to cigarette smoke. , 1991, Atherosclerosis.
[91] P. A. Kurup,et al. Effect of exposure of rats to cigarette smoke on the metabolism of lipids. , 1988, Atherosclerosis.