期刊文献+

Origin of CD8^+ Effector and Memory T Cell Subsets 被引量:2

Origin of CD8^+ Effector and Memory T Cell Subsets
原文传递
导出
摘要 It is well accepted that CD8+ T cells play a pivotal role in providing protection against infection with intracellular pathogens and some tumors. In many cases protective immunity is maintained for long periods of time (immunological memory). Over the past years, it has become evident that in order to fulfill these multiple tasks, distinct subsets of effector and memory T cells have to be generated. Until today, however, little is known about the underlying mechanisms of subset differentiation and the timing of lineage fate decisions. In this context, it is of special importance to determine at which level of clonal expansion functional and phenotypical heterogeneity is achieved. Different models for T cell subset diversification have been proposed; these differ mainly in the time point during priming and clonal expansion (prior, during, or beyond the first cell division) when differentiation programs are induced. Recently developed single-cell adoptive transfer technology has allowed us to demonstrate that individual precursor cell still bears the full plasticity to develop into a plethora different T cell subsets. This observation targets the shaping of T cell subset differentiation towards factors that are still operative beyond the first cell division. These findings have important implications for vaccine development, as the modulation of differentiation patterns towards distinct subsets could become a powerful strategy to enhance the efficacy and quality of vaccines. Cellular & Molecular Immunology. It is well accepted that CD8+ T cells play a pivotal role in providing protection against infection with intracellular pathogens and some tumors. In many cases protective immunity is maintained for long periods of time (immunological memory). Over the past years, it has become evident that in order to fulfill these multiple tasks, distinct subsets of effector and memory T cells have to be generated. Until today, however, little is known about the underlying mechanisms of subset differentiation and the timing of lineage fate decisions. In this context, it is of special importance to determine at which level of clonal expansion functional and phenotypical heterogeneity is achieved. Different models for T cell subset diversification have been proposed; these differ mainly in the time point during priming and clonal expansion (prior, during, or beyond the first cell division) when differentiation programs are induced. Recently developed single-cell adoptive transfer technology has allowed us to demonstrate that individual precursor cell still bears the full plasticity to develop into a plethora different T cell subsets. This observation targets the shaping of T cell subset differentiation towards factors that are still operative beyond the first cell division. These findings have important implications for vaccine development, as the modulation of differentiation patterns towards distinct subsets could become a powerful strategy to enhance the efficacy and quality of vaccines. Cellular & Molecular Immunology.
出处 《Cellular & Molecular Immunology》 SCIE CAS CSCD 2007年第6期399-405,共7页 中国免疫学杂志(英文版)
关键词 effector T cell memory T cell DIFFERENTIATION effector T cell, memory T cell, differentiation
  • 相关文献

参考文献10

  • 1Catron DM,Rusch LK,Hataye J,Itano AA,Jenkins MK.CD4+ T cells that enter the draining lymph nodes after antigen injection participate in the primary response and become central-memory cells[].The Journal of Experimental Medicine.2006
  • 2Badovinac VP,Haring JS,Harty JT.Initial T cell receptor transgenic cell precursor frequency dictates critical aspects of the CD8+T cell response to infection[].Immunity.2007
  • 3Marzo AL,Klonowski KD,Le Bon A,Borrow P,Tough DF,Lefrancois L.Initial T cell frequency dictates memory CD8+T cell lineage commitment[].Nature Immunology.2005
  • 4Goldrath AW,Bogatzki LY,Bevan MJ.Na?ve T cells transiently acquire a memory-like phenotype during homeostasis-driven proliferation[].The Journal of Experimental Medicine.2000
  • 5Murali-Krishna K,Ahmed R.Cutting edge:na?ve T cells masquerading as memory cells[].J Immunol.2000
  • 6Chang JT,Palanivel VR,Kinjyo I,et al.Asymmetric T lymphocyte division in the initiation of adaptive immune responses[].Science.2007
  • 7Stemberger C,Huster K,Koffler M,et al.A single na?ve CD8+ precursor cell can develop into diverse effector and memory T cell subsets[].Immunity.2007
  • 8Knabel M,Franz TJ,Schiemann M,et al.Reversible MHC multimer staining for functional isolation of T-cell populations and effective adoptive transfer[].Nature Medicine.2002
  • 9Kaech SM,Ahmed R.Memory CD8+T cell differentiation: initial antigen encounter triggers a developmental program in na?ve cells[].Nature Immunology.2001
  • 10Lanzavecchia A,Sallusto F.Progressive differentiation and selection of the fittest in the immune response[].Nature Reviews Immunology.2002

同被引文献3

引证文献2

二级引证文献6

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部