Gut microbiota regulate migration of lymphocytes from gut to lung.
暂无分享,去创建一个
Silu Ni | Dekun Chen | Wentao Ma | Qihang Cao | Jingyi Lin | Yiming Chen | Xingyu Peng | Xiulei Yuan | Yanyan Li | Shikong Gao
[1] E. Rosati,et al. Candida albicans-specific Th17 cell-mediated response contributes to alcohol-associated liver disease. , 2023, Cell host & microbe.
[2] Z. Liu,et al. Maturation and specialization of group 2 innate lymphoid cells through the lung-gut axis , 2022, Nature communications.
[3] K. Iwasaki,et al. Clostridium butyricum-induced ω-3 fatty acid 18-HEPE elicits anti-influenza virus pneumonia effects through interferon-λ upregulation. , 2022, Cell reports.
[4] A. Oliver,et al. Gut to lung translocation and antibiotic mediated selection shape the dynamics of Pseudomonas aeruginosa in an ICU patient , 2022, Nature Communications.
[5] E. El-Omar,et al. Multi-omics analyses of airway host–microbe interactions in chronic obstructive pulmonary disease identify potential therapeutic interventions , 2022, Nature Microbiology.
[6] Hengyi Xu,et al. Microplastics-perturbed gut microbiota triggered the testicular disorder in male mice: Via fecal microbiota transplantation. , 2022, Environmental pollution.
[7] Hui Mu,et al. COPD and Gut–Lung Axis: How Microbiota and Host Inflammasome Influence COPD and Related Therapeutics , 2022, Frontiers in Microbiology.
[8] J. Coppee,et al. Trained ILC3 responses promote intestinal defense , 2022, Science.
[9] P. Frenette,et al. The microbiota regulates hematopoietic stem cell fate decisions by controlling iron availability in bone marrow. , 2022, Cell stem cell.
[10] J. Ito,et al. Th17/Treg Imbalance in Chronic Obstructive Pulmonary Disease: Clinical and Experimental Evidence , 2021, Frontiers in Immunology.
[11] A. Regev,et al. Stem-like intestinal Th17 cells give rise to pathogenic effector T cells during autoimmunity , 2021, Cell.
[12] K. Ikuta,et al. IL-4-Producing Vγ1+/Vδ6+ γδ T Cells Sustain Germinal Center Reactions in Peyer’s Patches of Mice , 2021, Frontiers in Immunology.
[13] Wei Xu,et al. Innate lymphoid cells exhibited IL-17-expressing phenotype in active tuberculosis disease , 2021, BMC Pulmonary Medicine.
[14] G. Putzel,et al. Transferable IgA-coated Odoribacter splanchnicus in Responders to Fecal Microbiota Transplantation for Ulcerative Colitis Limits Colonic Inflammation. , 2021, Gastroenterology.
[15] Xiao Yang,et al. Gut Microbial Metabolite Pravastatin Attenuates Intestinal Ischemia/Reperfusion Injury Through Promoting IL-13 Release From Type II Innate Lymphoid Cells via IL−33/ST2 Signaling , 2021, Frontiers in Immunology.
[16] Zhen-Yong Wang,et al. Glyphosate-induced gut microbiota dysbiosis facilitates male reproductive toxicity in rats. , 2021, The Science of the total environment.
[17] H. Kiyono,et al. The gut microbiota induces Peyer's-patch-dependent secretion of maternal IgA into milk. , 2021, Cell reports.
[18] K. S. Kim,et al. Microbiota-derived lactate promotes hematopoiesis and erythropoiesis by inducing stem cell factor production from leptin receptor+ niche cells , 2021, Experimental & Molecular Medicine.
[19] Yidong Chen,et al. Correction to: Campylobacter infection promotes IFNγ-dependent intestinal pathology via ILC3 to ILC1 conversion , 2021, Mucosal Immunology.
[20] Jie Hong,et al. Enterotoxigenic Bacteroides fragilis promotes intestinal inflammation and malignancy by inhibiting exosomes-packaged miR-149-3p. , 2021, Gastroenterology.
[21] O. Ohara,et al. Acetate differentially regulates IgA reactivity to commensal bacteria , 2021, Nature.
[22] Min Wu,et al. Gut Microbiota Regulate Gut–Lung Axis Inflammatory Responses by Mediating ILC2 Compartmental Migration , 2021, The Journal of Immunology.
[23] Dake Wang,et al. Propionate and Butyrate Produced by Gut Microbiota After Probiotic Supplementation Attenuate Lung Metastasis of Melanoma Cells In Mice. , 2021, Molecular nutrition & food research.
[24] Yi Qiu,et al. Effects of short-chain fatty acids in inhibiting HDAC and activating p38 MAPK are critical for promoting B10 cell generation and function , 2021, Cell Death & Disease.
[25] J. Round,et al. Thymic development of gut-microbiota-specific T cells , 2021, Nature.
[26] C. Iadecola,et al. Stroke affects intestinal immune cell trafficking to the central nervous system , 2021, Brain, Behavior, and Immunity.
[27] S. Swift,et al. Gut microbiota modulates COPD pathogenesis: role of anti-inflammatory Parabacteroides goldsteinii lipopolysaccharide , 2021, Gut.
[28] C. Coopersmith,et al. Ovariectomy induces bone loss via microbial-dependent trafficking of intestinal TNF+ T cells and Th17 cells. , 2021, The Journal of clinical investigation.
[29] D. Creek,et al. Microbial metabolism of l-tyrosine protects against allergic airway inflammation , 2021, Nature Immunology.
[30] C. Huttenhower,et al. Human gut bacteria produce TH17-modulating bile acid metabolites , 2021, bioRxiv.
[31] Edward S. Lee,et al. Intestinal-derived ILCs migrating in lymph increase IFNγ production in response to Salmonella Typhimurium infection , 2021, Mucosal immunology.
[32] B. Becher,et al. Gut-licensed IFNγ+ NK cells drive LAMP1+TRAIL+ anti-inflammatory astrocytes , 2021, Nature.
[33] Jessica K. Lang,et al. Fusobacterium nucleatum drives a pro-inflammatory intestinal microenvironment through metabolite receptor-dependent modulation of IL-17 expression , 2021, Gut microbes.
[34] H. McSorley,et al. IL-33 facilitates rapid expulsion of the parasitic nematode Strongyloides ratti from the intestine via ILC2- and IL-9-driven mast cell activation , 2020, PLoS pathogens.
[35] Priyangi A. Malaviarachchi,et al. Innate IFN-γ Is Essential for Systemic Chlamydia muridarum Control in Mice, While CD4 T Cell-Dependent IFN-γ Production Is Highly Redundant in the Female Reproductive Tract , 2020, Infection and Immunity.
[36] R. Henry,et al. Gut microbiota–specific IgA+ B cells traffic to the CNS in active multiple sclerosis , 2020, Science Immunology.
[37] O. Akbari,et al. Distinct Roles of LFA-1 and ICAM-1 on ILC2s Control Lung Infiltration, Effector Functions, and Development of Airway Hyperreactivity , 2020, Frontiers in Immunology.
[38] J. German,et al. Bifidobacteria-mediated immune system imprinting early in life , 2020, Cell.
[39] T. Carvalho,et al. Correction: Microbiota-dependent expansion of testicular IL-17-producing Vγ6+ γδ T cells upon puberty promotes local tissue immune surveillance , 2020, Mucosal Immunology.
[40] Z. Jie,et al. Vagal‐α7nAChR signaling attenuates allergic asthma responses and facilitates asthma tolerance by regulating inflammatory group 2 innate lymphoid cells , 2020, Immunology and cell biology.
[41] Boning Zeng,et al. Commentary: Group 3 innate lymphoid cells mediate early protective immunity against tuberculosis , 2020, Frontiers in Immunology.
[42] D. Reich,et al. Gut-educated IgA plasma cells defend the meningeal venous sinuses , 2020, Nature.
[43] C. McClain,et al. Inhibition of Sphingosine‐1‐Phosphate‐Induced Th17 Cells Ameliorates Alcohol‐Associated Steatohepatitis in Mice , 2020, Hepatology.
[44] E. Ravussin,et al. Ketogenic Diets Alter the Gut Microbiome Resulting in Decreased Intestinal Th17 Cells , 2020, Cell.
[45] Dao-feng Chen,et al. Regulating the balance of Th17/Treg cells in gut-lung axis contributed to the therapeutic effect of Houttuynia cordata polysaccharides on H1N1-induced acute lung injury. , 2020, International journal of biological macromolecules.
[46] J. Yearley,et al. IL-23 and IL-2 activation of STAT5 is required for optimal IL-22 production in ILC3s during colitis , 2020, Science Immunology.
[47] D. Littman,et al. Redundant cytokine requirement for intestinal microbiota-induced Th17 cell differentiation in draining lymph nodes , 2020, bioRxiv.
[48] J. D. Di Santo,et al. Bacteria-Induced Group 2 Innate Lymphoid Cells in the Stomach Provide Immune Protection through Induction of IgA. , 2020, Immunity.
[49] M. Scholz,et al. Propionic Acid Shapes the Multiple Sclerosis Disease Course by an Immunomodulatory Mechanism , 2020, Cell.
[50] T. Kaisho,et al. Microfold cell-dependent antigen transport alleviates infectious colitis by inducing antigen-specific cellular immunity , 2020, Mucosal Immunology.
[51] R. Locksley,et al. Tissue-specific pathways extrude activated ILC2s to disseminate type 2 immunity , 2020, The Journal of experimental medicine.
[52] T. Denning,et al. PTH induces bone loss via microbial-dependent expansion of intestinal TNF+ T cells and Th17 cells , 2020, Nature Communications.
[53] L. Bry,et al. Intestinal microbes influence development of thymic lymphocytes in early life , 2020, Proceedings of the National Academy of Sciences.
[54] C. Mackay,et al. Acetate coordinates neutrophil and ILC3 responses against C. difficile through FFAR2 , 2019, The Journal of experimental medicine.
[55] M. Colonna,et al. ILC2s are the predominant source of intestinal ILC-derived IL-10 , 2019, The Journal of experimental medicine.
[56] A. Regev,et al. Transcriptional Atlas of Intestinal Immune Cells Reveals that Neuropeptide α-CGRP Modulates Group 2 Innate Lymphoid Cell Responses. , 2019, Immunity.
[57] B. Ryffel,et al. Microbial metabolites control the thymic development of mucosal-associated invariant T cells , 2019, Science.
[58] O. Pabst,et al. Inflammation triggers immediate rather than progressive changes in monocyte differentiation in the small intestine , 2019, Nature Communications.
[59] Y. Li,et al. The Intestine Harbors Functionally Distinct Homeostatic Tissue-Resident and Inflammatory Th17 Cells , 2019, Immunity.
[60] W. Petri,et al. IL-33 drives group 2 innate lymphoid cell-mediated protection during Clostridium difficile infection , 2019, Nature Communications.
[61] E. McGhee,et al. Pulmonary environmental cues drive group 2 innate lymphoid cell dynamics in mice and humans , 2019, Science Immunology.
[62] Hilal Bashir,et al. Gut Microbiota Regulates Mincle Mediated Activation of Lung Dendritic Cells to Protect Against Mycobacterium tuberculosis , 2019, Front. Immunol..
[63] T. Ndung’u,et al. Group 3 innate lymphoid cells mediate early protective immunity against tuberculosis , 2019, Nature.
[64] G. Patel,et al. Role of innate lymphoid cells in allergic diseases. , 2019, Allergy and asthma proceedings.
[65] K. Honda,et al. Endocytosis of commensal antigens by intestinal epithelial cells regulates mucosal T cell homeostasis , 2019, Science.
[66] J. Gisbert,et al. Microbiota Sensing by Mincle-Syk Axis in Dendritic Cells Regulates Interleukin-17 and -22 Production and Promotes Intestinal Barrier Integrity , 2019, Immunity.
[67] Dean P. Jones,et al. Neonatal intestinal immune regulation by the commensal bacterium, P. UF1 , 2018, Mucosal Immunology.
[68] R. Haque,et al. Gut microbiome communication with bone marrow regulates susceptibility to amebiasis , 2018, bioRxiv.
[69] D. Artis,et al. Response to Fungal Dysbiosis by Gut-Resident CX3CR1+ Mononuclear Phagocytes Aggravates Allergic Airway Disease. , 2018, Cell host & microbe.
[70] Alan Chuan-Ying Lai,et al. Regulation of type 2 innate lymphoid cell–dependent airway hyperreactivity by butyrate , 2018, The Journal of allergy and clinical immunology.
[71] R. Pacifici,et al. The Microbial Metabolite Butyrate Stimulates Bone Formation via T Regulatory Cell-Mediated Regulation of WNT10B Expression , 2018, Immunity.
[72] M. Fischbach,et al. Bile acid metabolites control Th17 and Treg cell differentiation , 2018, bioRxiv.
[73] C. Bai,et al. Lung-Resident Mesenchymal Stem Cells Promote Repair of LPS-Induced Acute Lung Injury via Regulating the Balance of Regulatory T cells and Th17 cells , 2018, Inflammation.
[74] Boning Zeng,et al. Commentary: Regulatory Innate Lymphoid Cells Control Innate Intestinal Inflammation , 2018, Front. Immunol..
[75] T. Wang,et al. The Tuft Cell-ILC2 Circuit Integrates Intestinal Defense and Homeostasis , 2018, Cell.
[76] Liang Zhou,et al. IL‐17–producing ST2+ group 2 innate lymphoid cells play a pathogenic role in lung inflammation , 2019, The Journal of allergy and clinical immunology.
[77] D. Jain,et al. Translocation of a gut pathobiont drives autoimmunity in mice and humans , 2018, Science.
[78] R. Germain,et al. S1P-dependent interorgan trafficking of group 2 innate lymphoid cells supports host defense , 2018, Science.
[79] D. Littman,et al. Segmented Filamentous Bacteria Provoke Lung Autoimmunity by Inducing Gut-Lung Axis Th17 Cells Expressing Dual TCRs. , 2017, Cell host & microbe.
[80] M. Veldhoen,et al. Intestinal Barrier Interactions with Specialized CD8 T Cells , 2017, Front. Immunol..
[81] Zhiheng Xu,et al. Regulatory Innate Lymphoid Cells Control Innate Intestinal Inflammation , 2017, Cell.
[82] A. Wolk,et al. Dietary Fiber Intake and Risk of Chronic Obstructive Pulmonary Disease: A Prospective Cohort Study of Men , 2017, Epidemiology.
[83] N. Flamand,et al. Regulation of Eosinophil and Group 2 Innate Lymphoid Cell Trafficking in Asthma , 2017, Front. Med..
[84] J. Clemente,et al. Gut microbiota: Neonatal gut microbiota induces lung immunity against pneumonia , 2017, Nature Reviews Gastroenterology &Hepatology.
[85] K. Theilgaard-Mönch,et al. Gut microbiota sustains hematopoiesis. , 2017, Blood.
[86] H. Deshmukh,et al. Intestinal commensal bacteria mediate lung mucosal immunity and promote resistance of newborn mice to infection , 2017, Science Translational Medicine.
[87] B. Stockinger,et al. Autoimmune Renal Disease Is Exacerbated by S1P-Receptor-1-Dependent Intestinal Th17 Cell Migration to the Kidney , 2016, Immunity.
[88] C. Bai,et al. IL-13+ Type 2 Innate Lymphoid Cells Correlate with Asthma Control Status and Treatment Response. , 2016, American journal of respiratory cell and molecular biology.
[89] S. Sørensen,et al. Vitamin D and allergic airway disease shape the murine lung microbiome in a sex-specific manner , 2016, Respiratory Research.
[90] P. Kastner,et al. Ikaros Inhibits Group 3 Innate Lymphoid Cell Development and Function by Suppressing the Aryl Hydrocarbon Receptor Pathway. , 2016, Immunity.
[91] Benjamin H Singer,et al. Enrichment of the lung microbiome with gut bacteria in sepsis and the acute respiratory distress syndrome , 2016, Nature Microbiology.
[92] Eric G. Pamer,et al. Commensal microbiota affects ischemic stroke outcome by regulating intestinal γδT cells , 2016, Nature Medicine.
[93] J. Thurman,et al. γδ T cells protect against LPS‐induced lung injury , 2016, Journal of leukocyte biology.
[94] J. Faith,et al. Microbiota regulate the ability of lung dendritic cells to induce IgA class-switch recombination and generate protective gastrointestinal immune responses , 2016, The Journal of experimental medicine.
[95] K. Hougaard,et al. The Murine Lung Microbiome Changes During Lung Inflammation and Intranasal Vancomycin Treatment , 2015, The open microbiology journal.
[96] M. Hattori,et al. Th17 Cell Induction by Adhesion of Microbes to Intestinal Epithelial Cells , 2015, Cell.
[97] Song-qi Tang,et al. FOXP3(+)Treg/Th17 cell imbalance in lung tissues of mice with asthma. , 2015, International journal of clinical and experimental medicine.
[98] R. Sun,et al. Respiratory influenza virus infection induces intestinal immune injury via microbiota-mediated Th17 cell–dependent inflammation , 2014, The Journal of Experimental Medicine.
[99] H. Kita,et al. Enhanced innate type 2 immune response in peripheral blood from patients with asthma. , 2014, The Journal of allergy and clinical immunology.
[100] T. Junt,et al. Gut microbiota metabolism of dietary fiber influences allergic airway disease and hematopoiesis , 2014, Nature Medicine.
[101] Charlotte E. Egan,et al. Intestinal Intraepithelial Lymphocyte-Enterocyte Crosstalk Regulates Production of Bactericidal Angiogenin 4 by Paneth Cells upon Microbial Challenge , 2013, PloS one.
[102] A. Rudensky,et al. Metabolites produced by commensal bacteria promote peripheral regulatory T cell generation , 2013, Nature.
[103] Bobby W S Li,et al. Group 2 innate lymphoid cells in lung inflammation , 2013, Immunology.
[104] W. Garrett,et al. The Microbial Metabolites, Short-Chain Fatty Acids, Regulate Colonic Treg Cell Homeostasis , 2013, Science.
[105] Liang Zhou,et al. The aryl hydrocarbon receptor regulates gut immunity through modulation of innate lymphoid cells. , 2012, Immunity.
[106] U. Pannicke,et al. Regulated expression of nuclear receptor RORγt confers distinct functional fates to NK cell receptor-expressing RORγt(+) innate lymphocytes. , 2010, Immunity.
[107] F. V. Loures,et al. TLR2 Is a Negative Regulator of Th17 Cells and Tissue Pathology in a Pulmonary Model of Fungal Infection1 , 2009, The Journal of Immunology.
[108] Cihan Çetin,et al. Persistent signaling induced by FTY720-phosphate is mediated by internalized S1P1 receptors. , 2009, Nature chemical biology.
[109] Tomas Hrncir,et al. Gut microbiota and lipopolysaccharide content of the diet influence development of regulatory T cells: studies in germ-free mice , 2008, BMC Immunology.
[110] Y. Fujiwara,et al. An Indispensable Role for the Chemokine Receptor CCR10 in IgA Antibody-Secreting Cell Accumulation1 , 2008, The Journal of Immunology.
[111] A. Melendez,et al. The Role of Sphingosine Kinase in a Murine Model of Allergic Asthma1 , 2008, The Journal of Immunology.
[112] S. Nakae,et al. IL-17-Mediated Regulation of Innate and Acquired Immune Response against Pulmonary Mycobacterium bovis Bacille Calmette-Guérin Infection1 , 2007, The Journal of Immunology.
[113] E. Butcher,et al. Correction , 2004, Journal of Experimental Medicine.
[114] A. Macpherson,et al. Interactions between commensal intestinal bacteria and the immune system , 2004, Nature Reviews Immunology.
[115] Fossati,et al. Detection and characterization of antibodies specific to food antigens (gliadin, ovalbumin and β‐lactoglobulin) in human serum, saliva, colostrum and milk , 1998 .
[116] M. Dessing,et al. Homing and in situ differentiation of resident pulmonary lymphocytes. , 1994, International immunology.
[117] J. Mcghee,et al. IgA antibody-producing cells in peripheral blood after antigen ingestion: evidence for a common mucosal immune system in humans , 1987 .
[118] R. Gupta,et al. Antibody Responses in Serum, Colostrum, and Milk of Swine After Infection or Vaccination with Transmissible Gastroenteritis Virus , 1972, Infection and immunity.
[119] OUP accepted manuscript , 2022, Journal of Crohn’s and Colitis.
[120] D. Broide,et al. &bgr;2 integrins rather than &bgr;1 integrins mediate Alternaria‐induced group 2 innate lymphoid cell trafficking to the lung , 2018, The Journal of allergy and clinical immunology.
[121] B. Finlay,et al. Perinatal antibiotic-induced shifts in gut microbiota have differential effects on inflammatory lung diseases. , 2015, The Journal of allergy and clinical immunology.
[122] Yongwon Choi,et al. An essential function for the nuclear receptor RORγt in the generation of fetal lymphoid tissue inducer cells , 2004, Nature Immunology.
[123] K. Mostov. Transepithelial transport of immunoglobulins. , 1994, Annual review of immunology.
[124] T. Tomasi,et al. Host defense mechanisms at mucosal surfaces. , 1981, Annual review of microbiology.