The battle against immunopathology: infectious tolerance mediated by regulatory T cells
暂无分享,去创建一个
[1] M. Yazdanbakhsh,et al. Regulatory B-cell induction by helminths: implications for allergic disease. , 2011, The Journal of allergy and clinical immunology.
[2] F. Regateiro,et al. TGF-β in transplantation tolerance. , 2011, Current opinion in immunology.
[3] F. Regateiro,et al. Sustained suppression by Foxp3+ regulatory T cells is vital for infectious transplantation tolerance , 2011, The Journal of experimental medicine.
[4] Loise M. Francisco,et al. Physiologic Control of IDO Competence in Splenic Dendritic Cells , 2011, The Journal of Immunology.
[5] S. Bicciato,et al. Indoleamine 2,3-dioxygenase is a signaling protein in long-term tolerance by dendritic cells , 2011, Nature Immunology.
[6] J. Bluestone,et al. Control of TH17 cells occurs in the Small Intestine , 2011, Nature.
[7] Fiona Powrie,et al. Intestinal homeostasis and its breakdown in inflammatory bowel disease , 2011, Nature.
[8] D. Vignali,et al. Cutting Edge: Human Regulatory T Cells Require IL-35 To Mediate Suppression and Infectious Tolerance , 2011, The Journal of Immunology.
[9] R. Maizels,et al. Chronic Helminth Infection Promotes Immune Regulation In Vivo through Dominance of CD11cloCD103− Dendritic Cells , 2011, The Journal of Immunology.
[10] S. Hapfelmeier,et al. Intestinal bacterial colonization induces mutualistic regulatory T cell responses. , 2011, Immunity.
[11] H. Weiner,et al. Oral tolerance , 2011, Immunological reviews.
[12] G. Anderson,et al. Trans-Endocytosis of CD80 and CD86: A Molecular Basis for the Cell-Extrinsic Function of CTLA-4 , 2011, Science.
[13] A. Rudensky,et al. Interleukin-10 signaling in regulatory T cells is required for suppression of Th17 cell-mediated inflammation. , 2011, Immunity.
[14] Francis J. Huber,et al. Th17 cells express interleukin-10 receptor and are controlled by Foxp3⁻ and Foxp3+ regulatory CD4+ T cells in an interleukin-10-dependent manner. , 2011, Immunity.
[15] K. Honda,et al. Induction of Colonic Regulatory T Cells by Indigenous Clostridium Species , 2011, Science.
[16] S. Mazmanian,et al. Has the Microbiota Played a Critical Role in the Evolution of the Adaptive Immune System? , 2010, Science.
[17] Scott A. Brown,et al. IL-35-mediated induction of a potent regulatory T cell population , 2010, Nature Immunology.
[18] Laurence A. Turka,et al. The Immune Tolerance Network at 10 years: tolerance research at the bedside , 2010, Nature Reviews Immunology.
[19] A. Rudensky,et al. Helminth secretions induce de novo T cell Foxp3 expression and regulatory function through the TGF-β pathway , 2010, The Journal of experimental medicine.
[20] S. Dasgupta,et al. Central Nervous System Demyelinating Disease Protection by the Human Commensal Bacteroides fragilis Depends on Polysaccharide A Expression , 2010, The Journal of Immunology.
[21] R. Schwartz,et al. Induction of T cell anergy: integration of environmental cues and infectious tolerance. , 2010, Current opinion in immunology.
[22] E. Hauben,et al. Differentiation of type 1 T regulatory cells (Tr1) by tolerogenic DC-10 requires the IL-10-dependent ILT4/HLA-G pathway. , 2010, Blood.
[23] S. Gibbs,et al. Importance of TLR2 in the direct response of T lymphocytes to Schistosoma mansoni antigens , 2010, European journal of immunology.
[24] S. Mazmanian,et al. Inducible Foxp3+ regulatory T-cell development by a commensal bacterium of the intestinal microbiota , 2010, Proceedings of the National Academy of Sciences.
[25] F. Regateiro,et al. Connecting the mechanisms of T‐cell regulation: dendritic cells as the missing link , 2010, Immunological reviews.
[26] H. Waldmann,et al. Tolerogenicity is not an absolute property of a dendritic cell , 2010, European journal of immunology.
[27] J. Bach,et al. The ‘hygiene hypothesis’ for autoimmune and allergic diseases: an update , 2010, Clinical and experimental immunology.
[28] J. Isaacs,et al. Development of Dendritic Cell-Based Immunotherapy for Autoimmunity , 2010, International reviews of immunology.
[29] Y. Belkaid,et al. Microbe–dendritic cell dialog controls regulatory T‐cell fate , 2010, Immunological reviews.
[30] O. Majdic,et al. Human rhinoviruses induce IL‐35‐producing Treg via induction of B7‐H1 (CD274) and sialoadhesin (CD169) on DC , 2010, European journal of immunology.
[31] C. Loddenkemper,et al. Establishment of nematode infection despite increased Th2 responses and immunopathology after selective depletion of Foxp3+ cells , 2009, European journal of immunology.
[32] Toshiharu Onodera,et al. Constitutive Expression of IDO by Dendritic Cells of Mesenteric Lymph Nodes: Functional Involvement of the CTLA-4/B7 and CCL22/CCR4 Interactions1 , 2009, The Journal of Immunology.
[33] R. Maizels,et al. Helminth immunoregulation: The role of parasite secreted proteins in modulating host immunity , 2009, Molecular and biochemical parasitology.
[34] Kathy O. Lui,et al. Infectious tolerance via the consumption of essential amino acids and mTOR signaling , 2009, Proceedings of the National Academy of Sciences.
[35] P. Worley,et al. The mTOR kinase differentially regulates effector and regulatory T cell lineage commitment. , 2009, Immunity.
[36] A. Wells. New Insights into the Molecular Basis of T Cell Anergy: Anergy Factors, Avoidance Sensors, and Epigenetic Imprinting , 2009, The Journal of Immunology.
[37] E. Shevach. Mechanisms of foxp3+ T regulatory cell-mediated suppression. , 2009, Immunity.
[38] G. Illei,et al. Selective expression of latency-associated peptide (LAP) and IL-1 receptor type I/II (CD121a/CD121b) on activated human FOXP3+ regulatory T cells allows for their purification from expansion cultures. , 2009, Blood.
[39] A. Thomson,et al. Immunoregulatory functions of mTOR inhibition , 2009, Nature Reviews Immunology.
[40] Gisen Kim,et al. Retinoic acid can directly promote TGF-beta-mediated Foxp3(+) Treg cell conversion of naive T cells. , 2009, Immunity.
[41] A. Cooke,et al. Schistosoma mansoni egg antigens induce Treg that participate in diabetes prevention in NOD mice , 2009, European journal of immunology.
[42] F. Powrie,et al. Regulatory lymphocytes and intestinal inflammation. , 2009, Annual review of immunology.
[43] R. Maizels,et al. Early recruitment of natural CD4+Foxp3+ Treg cells by infective larvae determines the outcome of filarial infection , 2009, European journal of immunology.
[44] P. Chambon,et al. Retinoic acid enhances Foxp3 induction indirectly by relieving inhibition from CD4+CD44hi Cells. , 2008, Immunity.
[45] R. Maizels,et al. Expansion of Foxp3+ Regulatory T Cells in Mice Infected with the Filarial Parasite Brugia malayi1 , 2008, The Journal of Immunology.
[46] T. Nomura,et al. CTLA-4 Control over Foxp3+ Regulatory T Cell Function , 2008, Science.
[47] E. Butcher,et al. CCR9 expression defines tolerogenic plasmacytoid dendritic cells able to suppress acute graft-versus-host disease , 2008, Nature Immunology.
[48] Shimon Sakaguchi,et al. Foxp3+ natural regulatory T cells preferentially form aggregates on dendritic cells in vitro and actively inhibit their maturation , 2008, Proceedings of the National Academy of Sciences.
[49] M. Sayegh,et al. Programmed death 1 ligand signaling regulates the generation of adaptive Foxp3+CD4+ regulatory T cells , 2008, Proceedings of the National Academy of Sciences.
[50] A. Kulkarni,et al. A critical function for TGF-β signaling in the development of natural CD4+CD25+Foxp3+ regulatory T cells , 2008, Nature Immunology.
[51] B. Dale,et al. Regulatory T Cells Inhibit Dendritic Cells by Lymphocyte Activation Gene-3 Engagement of MHC Class II1 , 2008, The Journal of Immunology.
[52] E. Chi,et al. Regulatory T cell-derived interleukin-10 limits inflammation at environmental interfaces. , 2008, Immunity.
[53] G. Freeman,et al. PD-1 and its ligands in tolerance and immunity. , 2008, Annual review of immunology.
[54] C. Loddenkemper,et al. Functional Analysis of Effector and Regulatory T Cells in a Parasitic Nematode Infection , 2008, Infection and Immunity.
[55] E. Shevach,et al. CD4+FoxP3+ regulatory T cells confer infectious tolerance in a TGF-β–dependent manner , 2008, The Journal of experimental medicine.
[56] R. Selvaraj,et al. Mitigation of Experimental Allergic Encephalomyelitis by TGF-β Induced Foxp3+ Regulatory T Lymphocytes through the Induction of Anergy and Infectious Tolerance1 , 2008, The Journal of Immunology.
[57] A. Hoerauf,et al. Helminth Infection with Litomosoides sigmodontis Induces Regulatory T Cells and Inhibits Allergic Sensitization, Airway Inflammation, and Hyperreactivity in a Murine Asthma Model1 , 2008, The Journal of Immunology.
[58] R. Steinman,et al. Dendritic cells are specialized accessory cells along with TGF- for the differentiation of Foxp3+ CD4+ regulatory T cells from peripheral Foxp3 precursors. , 2007, Blood.
[59] K. Boyd,et al. The inhibitory cytokine IL-35 contributes to regulatory T-cell function , 2007, Nature.
[60] E. Boye,et al. The Gcn2 Kinase as a Cell Cycle Regulator , 2007, Cell cycle.
[61] D. Hardie,et al. AMP-activated/SNF1 protein kinases: conserved guardians of cellular energy , 2007, Nature Reviews Molecular Cell Biology.
[62] J. Bluestone,et al. Loss of integrin αvβ8 on dendritic cells causes autoimmunity and colitis in mice , 2007 .
[63] A. Rudensky,et al. Regulatory T cells expressing interleukin 10 develop from Foxp3+ and Foxp3− precursor cells in the absence of interleukin 10 , 2007, Nature Immunology.
[64] Y. Belkaid,et al. A functionally specialized population of mucosal CD103+ DCs induces Foxp3+ regulatory T cells via a TGF-β– and retinoic acid–dependent mechanism , 2007, The Journal of experimental medicine.
[65] Y. Belkaid,et al. Small intestine lamina propria dendritic cells promote de novo generation of Foxp3 T reg cells via retinoic acid , 2007, The Journal of experimental medicine.
[66] R. Noelle,et al. All-trans retinoic acid mediates enhanced T reg cell growth, differentiation, and gut homing in the face of high levels of co-stimulation , 2007, The Journal of experimental medicine.
[67] A. Thomson,et al. Tolerogenic dendritic cells and the quest for transplant tolerance , 2007, Nature Reviews Immunology.
[68] H. Waldmann,et al. Induction of Regulatory T Cells and Dominant Tolerance by Dendritic Cells Incapable of Full Activation1 , 2007, The Journal of Immunology.
[69] Hilde Cheroutre,et al. Reciprocal TH17 and Regulatory T Cell Differentiation Mediated by Retinoic Acid , 2007, Science.
[70] R. Maizels,et al. Expansion and activation of CD4+CD25+ regulatory T cells in Heligmosomoides polygyrus infection , 2007, European journal of immunology.
[71] C. Piccirillo,et al. Impairment of dendritic cell function by excretory‐secretory products: A potential mechanism for nematode‐induced immunosuppression , 2007, European journal of immunology.
[72] J. Powell,et al. A Role for Mammalian Target of Rapamycin in Regulating T Cell Activation versus Anergy1 , 2007, The Journal of Immunology.
[73] J. Powell,et al. Adenosine and anergy , 2007, Autoimmunity.
[74] A. Cooke,et al. Inhibition of Autoimmune Type 1 Diabetes by Gastrointestinal Helminth Infection , 2006, Infection and Immunity.
[75] H. Waldmann,et al. Immune privilege induced by regulatory T cells in transplantation tolerance , 2006, Immunological reviews.
[76] D. Elliott,et al. Induction of CD8+ regulatory T cells in the intestine by Heligmosomoides polygyrus infection. , 2006, American journal of physiology. Gastrointestinal and liver physiology.
[77] Katharina Fleischhauer,et al. Interleukin‐10‐secreting type 1 regulatory T cells in rodents and humans , 2006, Immunological reviews.
[78] H. Waldmann,et al. Infectious tolerance and the long‐term acceptance of transplanted tissue , 2006, Immunological reviews.
[79] Michael Loran Dustin,et al. Regulatory T cells inhibit stable contacts between CD4+ T cells and dendritic cells in vivo , 2006, The Journal of experimental medicine.
[80] T. Geiger,et al. IL-10-dependent infectious tolerance after the treatment of experimental allergic encephalomyelitis with redirected CD4+CD25+ T lymphocytes. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[81] S. Blüml,et al. Human Rhinoviruses Inhibit the Accessory Function of Dendritic Cells by Inducing Sialoadhesin and B7-H1 Expression1 , 2005, The Journal of Immunology.
[82] F. Chirdo,et al. Immunomodulatory dendritic cells in intestinal lamina propria , 2005, European journal of immunology.
[83] B. Baban,et al. GCN2 kinase in T cells mediates proliferative arrest and anergy induction in response to indoleamine 2,3-dioxygenase. , 2005, Immunity.
[84] M. Roncarolo,et al. Differentiation of Tr1 cells by immature dendritic cells requires IL-10 but not CD25+CD4+ Tr cells. , 2005, Blood.
[85] D. Vignali,et al. Negative Regulation of T Cell Homeostasis by Lymphocyte Activation Gene-3 (CD223)1 , 2005, The Journal of Immunology.
[86] B. Baban,et al. Specific subsets of murine dendritic cells acquire potent T cell regulatory functions following CTLA4-mediated induction of indoleamine 2,3 dioxygenase. , 2004, International immunology.
[87] C. Drake,et al. Role of LAG-3 in regulatory T cells. , 2004, Immunity.
[88] A. Macpherson,et al. Interactions between commensal intestinal bacteria and the immune system , 2004, Nature Reviews Immunology.
[89] D. Zélénika,et al. Induction of foxP3+ Regulatory T Cells in the Periphery of T Cell Receptor Transgenic Mice Tolerized to Transplants1 , 2004, The Journal of Immunology.
[90] In-Jeong Kim,et al. Lymphocyte Activation Gene-3 (CD223) Regulates the Size of the Expanding T Cell Population Following Antigen Activation In Vivo1 , 2004, The Journal of Immunology.
[91] S. Zheng,et al. Natural and Induced CD4+CD25+ Cells Educate CD4+CD25− Cells to Develop Suppressive Activity: The Role of IL-2, TGF-β, and IL-101 , 2004, The Journal of Immunology.
[92] A. Enk,et al. Human CD25+ regulatory T cells: two subsets defined by the integrins α4β7 or α4β1 confer distinct suppressive properties upon CD4+ T helper cells , 2004 .
[93] S. Kaveri,et al. Cutting Edge: Human CD4+CD25+ T Cells Restrain the Maturation and Antigen-Presenting Function of Dendritic Cells1 , 2004, The Journal of Immunology.
[94] Li Li,et al. Conversion of Peripheral CD4+CD25− Naive T Cells to CD4+CD25+ Regulatory T Cells by TGF-β Induction of Transcription Factor Foxp3 , 2003, The Journal of experimental medicine.
[95] T. Utsugi,et al. CD40 ligation releases immature dendritic cells from the control of regulatory CD4+CD25+ T cells. , 2003, Immunity.
[96] R. Schwartz. T cell anergy. , 2003, Annual review of immunology.
[97] A. Rudensky,et al. Foxp3 programs the development and function of CD4+CD25+ regulatory T cells , 2003, Nature Immunology.
[98] T. Nomura,et al. Control of Regulatory T Cell Development by the Transcription Factor Foxp3 , 2002 .
[99] G. Schuler,et al. Human CD4+CD25+ Regulatory, Contact-dependent T Cells Induce Interleukin 10–producing, Contact-independent Type 1-like Regulatory T Cells , 2002, The Journal of experimental medicine.
[100] C. Arias,et al. Characterization of a new subpopulation of mouse CD8alpha+ B220+ dendritic cells endowed with type 1 interferon production capacity and tolerogenic potential. , 2002, Blood.
[101] A. Enk,et al. Infectious Tolerance , 2002, The Journal of experimental medicine.
[102] Sayuri Yamazaki,et al. Immunologic tolerance maintained by CD25+ CD4+ regulatory T cells: their common role in controlling autoimmunity, tumor immunity, and transplantation tolerance , 2001, Immunological reviews.
[103] A. Bowcock,et al. JM2, encoding a fork head-related protein, is mutated in X-linked autoimmunity-allergic disregulation syndrome. , 2000, The Journal of clinical investigation.
[104] H. Waldmann,et al. Cutting Edge: Anti-CD154 Therapeutic Antibodies Induce Infectious Transplantation Tolerance1 , 2000, The Journal of Immunology.
[105] H. Waldmann,et al. CD40 ligand blockade induces CD4+ T cell tolerance and linked suppression. , 1999, Journal of immunology.
[106] A. Iwasaki,et al. Freshly Isolated Peyer's Patch, but Not Spleen, Dendritic Cells Produce Interleukin 10 and Induce the Differentiation of T Helper Type 2 Cells , 1999, The Journal of experimental medicine.
[107] R. Schwartz,et al. Inhibition of cell cycle progression by rapamycin induces T cell clonal anergy even in the presence of costimulation. , 1999, Journal of immunology.
[108] Hervé Groux,et al. A CD4+T-cell subset inhibits antigen-specific T-cell responses and prevents colitis , 1997, Nature.
[109] H. Waldmann,et al. T cell suppression in transplantation tolerance through linked recognition. , 1996, Journal of immunology.
[110] M. Toda,et al. Immunologic self-tolerance maintained by activated T cells expressing IL-2 receptor alpha-chains (CD25). Breakdown of a single mechanism of self-tolerance causes various autoimmune diseases. , 1995, Journal of immunology.
[111] S. Cobbold,et al. Mechanisms in CD4 antibody‐mediated transplantation tolerance: kinetics of induction, antigen dependency and role of regulatory T cells , 1994, European journal of immunology.
[112] D. Kioussis,et al. "Infectious" transplantation tolerance , 1993, Science.
[113] G. Proetzel,et al. Targeted disruption of the mouse transforming growth factor-β1 gene results in multifocal inflammatory disease , 1992, Nature.
[114] H. Waldmann,et al. Induction of tolerance by monoclonal antibody therapy , 1986, Nature.
[115] I. Bursuker,et al. Generation and decay of the immune response to a progressive fibrosarcoma. II. Failure to demonstrate postexcision immunity after the onset of T cell-mediated suppression of immunity , 1984, The Journal of experimental medicine.
[116] I. Bursuker,et al. T cell-mediated suppression of the concomitant antitumor immune response as an example of transplantation tolerance. , 1984, Transplantation proceedings.
[117] D. Green,et al. Functional deletion of different Ly-1 T-cell-inducer subset activities by Ly-2 suppressor T lymphocytes. , 1981, Proceedings of the National Academy of Sciences of the United States of America.
[118] R. Gershon,et al. Infectious immunological tolerance. , 1971, Immunology.
[119] P. Medawar,et al. ‘Actively Acquired Tolerance’ of Foreign Cells , 1953, Nature.
[120] 박주홍,et al. The Toll-Like Receptor 2 pathway Establishes Colonization by a Commensal of the Human Microbiota , 2011 .
[121] M. Horton,et al. A2A receptor signaling promotes peripheral tolerance by inducing T-cell anergy and the generation of adaptive regulatory T cells. , 2008, Blood.
[122] J. Bluestone,et al. Loss of integrin alpha(v)beta8 on dendritic cells causes autoimmunity and colitis in mice. , 2007, Nature.
[123] Pau Serra,et al. Visualizing regulatory T cell control of autoimmune responses in nonobese diabetic mice , 2006, Nature Immunology.
[124] A. Enk,et al. Human CD25+ regulatory T cells: two subsets defined by the integrins alpha 4 beta 7 or alpha 4 beta 1 confer distinct suppressive properties upon CD4+ T helper cells. , 2004, European journal of immunology.
[125] J. Casanova,et al. X-linked neonatal diabetes mellitus, enteropathy and endocrinopathy syndrome is the human equivalent of mouse scurfy , 2001, Nature Genetics.
[126] D. Galas,et al. Disruption of a new forkhead/winged-helix protein, scurfin, results in the fatal lymphoproliferative disorder of the scurfy mouse , 2001, Nature Genetics.
[127] H. Ochs,et al. The immune dysregulation, polyendocrinopathy, enteropathy, X-linked syndrome (IPEX) is caused by mutations of FOXP3 , 2001, Nature Genetics.
[128] D. Green,et al. Immunoregulatory T-cell pathways. , 1983, Annual review of immunology.