Regulation of naïve and memory T-cell homeostasis.
暂无分享,去创建一个
[1] Richard Murray,et al. IL-7 is critical for homeostatic proliferation and survival of naïve T cells , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[2] S. Jameson,et al. IL-12 Enhances CD8 T Cell Homeostatic Expansion1 , 2001, The Journal of Immunology.
[3] D. Busch,et al. Memory phenotype CD8+ T cells in IL‐15 transgenic mice are involved in early protection against a primary infection with Listeria monocytogenes , 2001, European journal of immunology.
[4] C. Surh,et al. Autologous Regulation of Naive T Cell Homeostasis Within the T Cell Compartment1 , 2001, The Journal of Immunology.
[5] S. Jameson,et al. Interleukin-7 mediates the homeostasis of naïve and memory CD8 T cells in vivo , 2000, Nature Immunology.
[6] W. Paul,et al. Transient Inhibition of Interleukin 4 Signaling by T Cell Receptor Ligation , 2000, The Journal of experimental medicine.
[7] G. Legname,et al. Long-term survival but impaired homeostatic proliferation of Naïve T cells in the absence of p56lck. , 2000, Science.
[8] B. Stockinger,et al. Differential Survival of Naive CD4 and CD8 T Cells1 , 2000, The Journal of Immunology.
[9] R. Germain,et al. CD4+ T cell survival is not directly linked to self-MHC–induced TCR signaling , 2000, Nature Immunology.
[10] Z. Dai,et al. The Dual Role of IL-2 in the Generation and Maintenance of CD8+ Memory T Cells1 , 2000, The Journal of Immunology.
[11] A. Rudensky,et al. Survival and Homeostatic Proliferation of Naive Peripheral CD4+ T Cells in the Absence of Self Peptide:MHC Complexes1 , 2000, The Journal of Immunology.
[12] Jianzhu Chen,et al. Homeostasis-Stimulated Proliferation Drives Naive T Cells to Differentiate Directly into Memory T Cells , 2000, The Journal of experimental medicine.
[13] J. Sprent,et al. Homeostatic T Cell Proliferation , 2000, The Journal of experimental medicine.
[14] L. Bogatzki,et al. Naive T Cells Transiently Acquire a Memory-like Phenotype during Homeostasis-Driven Proliferation , 2000, The Journal of experimental medicine.
[15] R. Ahmed,et al. Cutting Edge: Naive T Cells Masquerading as Memory Cells , 2000, The Journal of Immunology.
[16] P. Marrack,et al. Homeostasis of αβ TCR+ T cells , 2000, Nature Immunology.
[17] O. Lantz,et al. γ chain required for naïve CD4+ T cell survival but not for antigen proliferation , 2000, Nature Immunology.
[18] H. Fleming,et al. The role of the preBCR, the interleukin‐7 receptor, and homotypic interactions during B‐cell development , 2000, Immunological reviews.
[19] P. Marrack,et al. Control of homeostasis of CD8+ memory T cells by opposing cytokines. , 2000, Science.
[20] F. Chen,et al. Potent induction of long-term CD8+ T cell memory by short-term IL-4 exposure during T cell receptor stimulation. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[21] P. Muranski,et al. Mature CD4+ T Cells Perceive a Positively Selecting Class II MHC/Peptide Complex in the Periphery1 , 2000, The Journal of Immunology.
[22] P. Morrissey,et al. Reversible Defects in Natural Killer and Memory Cd8 T Cell Lineages in Interleukin 15–Deficient Mice , 2000, The Journal of experimental medicine.
[23] P. Ohashi,et al. Differential Roles of Interleukin 15 mRNA Isoforms Generated by Alternative Splicing in Immune Responses in Vivo , 2000, The Journal of experimental medicine.
[24] M. Bevan,et al. Selecting and maintaining a diverse T-cell repertoire , 1999, Nature.
[25] S. Swain,et al. Class II-independent generation of CD4 memory T cells from effectors. , 1999, Science.
[26] J. Altman,et al. Persistence of memory CD8 T cells in MHC class I-deficient mice. , 1999, Science.
[27] S. Jameson,et al. Homeostatic expansion and phenotypic conversion of naïve T cells in response to self peptide/MHC ligands. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[28] J. Sprent,et al. Strong TCR ligation without costimulation causes rapid onset of Fas-dependent apoptosis of naive murine CD4+ T cells. , 1999, Journal of immunology.
[29] P. Marrack,et al. Cd4+ T Cell Division in Irradiated Mice Requires Peptides Distinct from Those Responsible for Thymic Selection , 1999, The Journal of experimental medicine.
[30] J. Sprent,et al. The peptide ligands mediating positive selection in the thymus control T cell survival and homeostatic proliferation in the periphery. , 1999, Immunity.
[31] M. Bevan,et al. Low-affinity ligands for the TCR drive proliferation of mature CD8+ T cells in lymphopenic hosts. , 1999, Immunity.
[32] C. Janeway,et al. Designing and maintaining the mature TCR repertoire: the continuum of self-peptide:self-MHC complex recognition. , 1999, Immunity.
[33] K. Bottomly,et al. Survival of naive CD4 T cells: roles of restricting versus selecting MHC class II and cytokine milieu. , 1999, Journal of immunology.
[34] K. Brduscha-Riem,et al. Naïve cytotoxic T lymphocytes spontaneously acquire effector function in lymphocytopenic recipients: A pitfall for T cell memory studies? , 1999, European journal of immunology.
[35] T. Dassopoulos,et al. IL-15 receptor maintains lymphoid homeostasis by supporting lymphocyte homing and proliferation. , 1998, Immunity.
[36] I. Weissman,et al. Role of interleukin‐7 in T‐cell development from hematopoietic stem cells , 1998, Immunological reviews.
[37] L. Glimcher,et al. The transcription factor NFAT4 is involved in the generation and survival of T cells. , 1998, Immunity.
[38] J. Sprent,et al. Potent and selective stimulation of memory-phenotype CD8+ T cells in vivo by IL-15. , 1998, Immunity.
[39] H. Macdonald,et al. TCR-MHC class II interaction is required for peripheral expansion of CD4 cells in a T cell-deficient host. , 1998, International immunology.
[40] C. Mackall,et al. Restoration of T-cell homeostasis after T-cell depletion. , 1997, Seminars in immunology.
[41] E B Bell,et al. The peripheral T-cell pool: regulation by non-antigen induced proliferation? , 1997, Seminars in immunology.
[42] J. Leiden,et al. LKLF: A transcriptional regulator of single-positive T cell quiescence and survival. , 1997, Science.
[43] P. Marrack,et al. Interleukin 4 (IL-4) or IL-7 Prevents the Death of Resting T Cells: Stat6 Is Probably Not Required for the Effect of IL-4 , 1997, The Journal of experimental medicine.
[44] F. Lemonnier,et al. Differential requirements for survival and proliferation of CD8 naïve or memory T cells. , 1997, Science.
[45] J. Sprent,et al. T Cell Stimulation In Vivo by Lipopolysaccharide (LPS) , 1997, The Journal of experimental medicine.
[46] P. Marrack,et al. IL-6 rescues resting mouse T cells from apoptosis. , 1997, Journal of immunology.
[47] J. Sprent,et al. Induction of Bystander T Cell Proliferation by Viruses and Type I Interferon in Vivo , 1996, Science.
[48] R. Zinkernagel,et al. Immunological Memory , 2006 .
[49] C. Thompson,et al. Growth factors can enhance lymphocyte survival without committing the cell to undergo cell division. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[50] J. Sprent,et al. Intrathymic and extrathymic clonal deletion of T cells. , 1995, Current opinion in immunology.
[51] R. Ahmed,et al. Cytotoxic T-cell memory without antigen , 1994, Nature.
[52] Peter C. Doherty,et al. Virus-specific CD8+ T-cell memory determined by clonal burst size , 1994, Nature.
[53] J. Sprent,et al. Turnover of Naive-and Memory-phenotype T Cells , 1994 .
[54] S. Korsmeyer,et al. Bcl-2-deficient mice demonstrate fulminant lymphoid apoptosis, polycystic kidneys, and hypopigmented hair , 1993, Cell.
[55] S. Nishikawa,et al. Expression and function of the interleukin 7 receptor in murine lymphocytes. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[56] M. Raff,et al. Social controls on cell survival and cell death , 1992, Nature.
[57] B. Rocha,et al. Peripheral selection of the T cell repertoire. , 1991, Science.
[58] B. Rocha,et al. Peripheral T lymphocytes: expansion potential and homeostatic regulation of pool sizes and CD4/CD8 ratios in vivo , 1989, European journal of immunology.
[59] M. Drayson,et al. The stable and permanent expansion of functional T lymphocytes in athymic nude rats after a single injection of mature T cells. , 1987, Journal of immunology.
[60] P. Kincade,et al. Heparan sulfate proteoglycans mediate interleukin-7-dependent B lymphopoiesis. , 1999, Blood.
[61] B. Rocha,et al. Lymphocyte lifespans: homeostasis, selection and competition. , 1993, Immunology today.