首页 | 本学科首页   官方微博 | 高级检索  
     

Naturally Occurring Self-Reactive CD4^+CD25^+ Regulatory T Cells: Universal Immune Code
引用本文:Pakravan N,Hassan AT,Hassan ZM. Naturally Occurring Self-Reactive CD4^+CD25^+ Regulatory T Cells: Universal Immune Code[J]. Cellular & molecular immunology, 2007, 4(3): 197-201
作者姓名:Pakravan N  Hassan AT  Hassan ZM
作者单位:[1]Department of Immunology, Faculty of Medical Sciences, Tarbiat Modares University, Tehran, Iran; [2]Faculty of Sciences, Tarbiat Moallem University, Tehran, Iran;
摘    要:Naturally occurring thymus-arisen CD4^+CD25^+ regulatory T (Treg) cells are considered to play a central role in self-tolerance. Precise signals that promote the development of Treg cells remain elusive, but considerable evidence suggests that costimulatory molecules, cytokines, the nature of the TCR and the niche or the context in which the T cell encounters antigen in the thymus play important roles. Analysis of TCR from Treg cells has demonstrated that a large proportion of this population has a higher avidity to self-antigen in comparison with TCR from CD4^+CD25^+ cells and that peripheral antigen is required for their development, maintenance, or expansion. Treg cells have been shown to undergo expansion in the periphery, likely regulated by the presence of self-antigen. Many studies have shown that the involvement of Treg cells in the tolerance induction is antigen-specific, even with MHC-mismatched, in transplantation/graft versus host disease (GVHD), autoimmunity, cancer, and pregnancy. Theses studies concluded a vital role for self-reactive Treg cells in maintenance of the body integrity. Based on those studies, we hypothesize that self-reactive Treg cells are shared among all healthy individuals and recognize same self-antigens and their TCR encodes for few dominant antigens of each organ which defines the healthy self. These dominant self antigens can be regarded as "universal immune code". Cellular & Molecular Immunology.

关 键 词:自身免疫 T细胞 怀孕 控制免疫
修稿时间:2007-02-212007-04-10

Naturally occurring self-reactive CD4+CD25+ regulatory T cells: universal immune code
Pakravan Nafiseh,Hassan Agheel Tabar Molla,Hassan Zuhair Muhammad. Naturally occurring self-reactive CD4+CD25+ regulatory T cells: universal immune code[J]. Cellular & molecular immunology, 2007, 4(3): 197-201
Authors:Pakravan Nafiseh  Hassan Agheel Tabar Molla  Hassan Zuhair Muhammad
Affiliation:Department of Immunology, Faculty of Medical Sciences, Tarbiat Modares University, Tehran, Iran. npakravan@modares.ac.ir
Abstract:Naturally occurring thymus-arisen CD4(+)CD25(+) regulatory T (Treg) cells are considered to play a central role in self-tolerance. Precise signals that promote the development of Treg cells remain elusive, but considerable evidence suggests that costimulatory molecules, cytokines, the nature of the TCR and the niche or the context in which the T cell encounters antigen in the thymus play important roles. Analysis of TCR from Treg cells has demonstrated that a large proportion of this population has a higher avidity to self-antigen in comparison with TCR from CD4(+)CD25(-) cells and that peripheral antigen is required for their development, maintenance, or expansion. Treg cells have been shown to undergo expansion in the periphery, likely regulated by the presence of self-antigen. Many studies have shown that the involvement of Treg cells in the tolerance induction is antigen-specific, even with MHC-mismatched, in transplantation/graft versus host disease (GVHD), autoimmunity, cancer, and pregnancy. Theses studies concluded a vital role for self-reactive Treg cells in maintenance of the body integrity. Based on those studies, we hypothesize that self-reactive Treg cells are shared among all healthy individuals and recognize same self-antigens and their TCR encodes for few dominant antigens of each organ which defines the healthy self. These dominant self antigens can be regarded as "universal immune code".
Keywords:regulatory T cell  pregnancy  GVHD  autoimmunity  dominant self-antigen
本文献已被 CNKI 维普 万方数据 PubMed 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号