Activation of dendritic cells: translating innate into adaptive immunity.
暂无分享,去创建一个
[1] C. Janeway. Approaching the asymptote? Evolution and revolution in immunology. , 1989, Cold Spring Harbor symposia on quantitative biology.
[2] R. Steinman,et al. Activation of Natural Killer T Cells by -Galactosylceramide Rapidly Induces the Full Maturation of Dendritic Cells In Vivo and Thereby Acts as an Adjuvant for Combined CD4 and CD8 T Cell Immunity to a Coadministered Protein , 2003 .
[3] Giovanni Melioli,et al. Human Dendritic Cells Activate Resting Natural Killer (NK) Cells and Are Recognized via the NKp30 Receptor by Activated NK Cells , 2002, The Journal of experimental medicine.
[4] T. Geijtenbeek,et al. Mycobacteria Target DC-SIGN to Suppress Dendritic Cell Function , 2003, The Journal of experimental medicine.
[5] G. Trinchieri,et al. Reciprocal Activating Interaction between Natural Killer Cells and Dendritic Cells , 2002, The Journal of experimental medicine.
[6] F. Belardelli,et al. Type i interferons potently enhance humoral immunity and can promote isotype switching by stimulating dendritic cells in vivo. , 2001, Immunity.
[7] S. Foster,et al. An essential role for NOD1 in host recognition of bacterial peptidoglycan containing diaminopimelic acid , 2003, Nature Immunology.
[8] O. Leo,et al. T Cell-Dependent Maturation of Dendritic Cells in Response to Bacterial Superantigens1 , 2002, The Journal of Immunology.
[9] K. Tashiro,et al. Dendritic Cell Immunoactivating Receptor, a Novel C-type Lectin Immunoreceptor, Acts as an Activating Receptor through Association with Fc Receptor γ Chain* , 2003, Journal of Biological Chemistry.
[10] S. Gordon,et al. Dectin-1 Mediates the Biological Effects of β-Glucans , 2003, The Journal of experimental medicine.
[11] Persephone Borrow,et al. Viral infection switches non-plasmacytoid dendritic cells into high interferon producers , 2003, Nature.
[12] S. Akira,et al. Toll‐like receptor expression in murine DC subsets: lack of TLR7 expression by CD8α+ DC correlates with unresponsiveness to imidazoquinolines , 2003, European journal of immunology.
[13] Diego Piccioli,et al. Contact-dependent Stimulation and Inhibition of Dendritic Cells by Natural Killer Cells , 2002, The Journal of experimental medicine.
[14] A. Diefenbach,et al. The innate immune response to tumors and its role in the induction of T‐cell immunity , 2002, Immunological reviews.
[15] P. Crocker,et al. Siglecs: sialic-acid-binding immunoglobulin-like lectins in cell-cell interactions and signalling. , 2002, Current opinion in structural biology.
[16] Antonio Lanzavecchia,et al. BDCA-2, a Novel Plasmacytoid Dendritic Cell–specific Type II C-type Lectin, Mediates Antigen Capture and Is a Potent Inhibitor of Interferon α/β Induction , 2001, The Journal of experimental medicine.
[17] M. Colonna,et al. Interferon-producing cells: on the front line in immune responses against pathogens. , 2002, Current opinion in immunology.
[18] M. Lotze,et al. Complementary Dendritic Cell–activating Function of CD8+ and CD4+ T Cells , 2002, The Journal of experimental medicine.
[19] N. Kadowaki,et al. Subsets of Human Dendritic Cell Precursors Express Different Toll-like Receptors and Respond to Different Microbial Antigens , 2001, The Journal of experimental medicine.
[20] T. Giese,et al. Toll-like receptor expression reveals CpG DNA as a unique microbial stimulus for plasmacytoid dendritic cells which synergizes with CD40 ligand to induce high amounts of IL-12. , 2001, European journal of immunology.
[21] Antonio Lanzavecchia,et al. Specialization and complementarity in microbial molecule recognition by human myeloid and plasmacytoid dendritic cells , 2001, European journal of immunology.
[22] James E. Evans,et al. Molecular identification of a danger signal that alerts the immune system to dying cells , 2003, Nature.
[23] Shizuo Akira,et al. Collaborative Induction of Inflammatory Responses by Dectin-1 and Toll-like Receptor 2 , 2003, The Journal of experimental medicine.
[24] C. Reis e Sousa,et al. Toll-like receptors and dendritic cells: for whom the bug tolls. , 2004, Seminars in immunology.
[25] S. Akira,et al. Critical role of the Toll-like receptor signal adaptor protein MyD88 in acute allograft rejection. , 2003, The Journal of clinical investigation.
[26] A. Beg,et al. Endogenous ligands of Toll-like receptors: implications for regulating inflammatory and immune responses. , 2002, Trends in immunology.
[27] S. Akira,et al. Differential involvement of IFN-beta in Toll-like receptor-stimulated dendritic cell activation. , 2002, International immunology.
[28] J. Bertin,et al. Nod1 Detects a Unique Muropeptide from Gram-Negative Bacterial Peptidoglycan , 2003, Science.
[29] P. Morris,et al. Dendritic cell loss from nonlymphoid tissues after systemic administration of lipopolysaccharide, tumor necrosis factor, and interleukin 1 , 1995, The Journal of experimental medicine.
[30] C. Sousa,et al. Dendritic cells as sensors of infection. , 2001 .
[31] P. Morel,et al. Dendritic Cells Mediate NK Cell Help for Th1 and CTL Responses: Two-Signal Requirement for the Induction of NK Cell Helper Function 1 , 2003, The Journal of Immunology.
[32] P. Matzinger. Tolerance, danger, and the extended family. , 1994, Annual review of immunology.
[33] M. Chamaillard,et al. Nod2 Is a General Sensor of Peptidoglycan through Muramyl Dipeptide (MDP) Detection* , 2003, The Journal of Biological Chemistry.
[34] A. Sher,et al. Cutting Edge: Bradykinin Induces IL-12 Production by Dendritic Cells: A Danger Signal That Drives Th1 Polarization1 , 2003, The Journal of Immunology.
[35] S. Akira,et al. Toll-like Receptor 9–mediated Recognition of Herpes Simplex Virus-2 by Plasmacytoid Dendritic Cells , 2003, The Journal of experimental medicine.
[36] C. Reis e Sousa,et al. Microbial and T Cell-Derived Stimuli Regulate Antigen Presentation by Dendritic Cells In Vivo1 , 2000, The Journal of Immunology.
[37] M. Bachmann,et al. CD8+ T Cells Mediate CD40-independent Maturation of Dendritic Cells In Vivo , 1999, The Journal of experimental medicine.
[38] G. Puzo,et al. Mannosylated Lipoarabinomannans Inhibit IL-12 Production by Human Dendritic Cells: Evidence for a Negative Signal Delivered Through the Mannose Receptor1 , 2001, The Journal of Immunology.
[39] Stefania Gallucci,et al. Natural adjuvants: Endogenous activators of dendritic cells , 1999, Nature Medicine.
[40] S. Akira. Mammalian Toll-like receptors. , 2003, Current opinion in immunology.
[41] N. Kadowaki,et al. Distinct CpG DNA and Polyinosinic-Polycytidylic Acid Double-Stranded RNA, Respectively, Stimulate CD11c− Type 2 Dendritic Cell Precursors and CD11c+ Dendritic Cells to Produce Type I IFN1 , 2001, The Journal of Immunology.
[42] S. Endres,et al. Extracellular ATP and TNF-alpha synergize in the activation and maturation of human dendritic cells. , 2000, Journal of immunology.
[43] S. Ikehara,et al. Murine thymic plasmacytoid dendritic cells , 2003, European journal of immunology.
[44] S. Foster,et al. Host Recognition of Bacterial Muramyl Dipeptide Mediated through NOD2 , 2003, The Journal of Biological Chemistry.
[45] T. Giese,et al. Quantitative Expression of Toll-Like Receptor 1–10 mRNA in Cellular Subsets of Human Peripheral Blood Mononuclear Cells and Sensitivity to CpG Oligodeoxynucleotides1 , 2002, The Journal of Immunology.
[46] P. Kalinski,et al. Double-stranded RNA-exposed human keratinocytes promote Th1 responses by inducing a Type-1 polarized phenotype in dendritic cells: role of keratinocyte-derived tumor necrosis factor alpha, type I interferons, and interleukin-18. , 2003, The Journal of investigative dermatology.