Proliferation of CD8+ in culture of human T cells derived from peripheral blood of adult donors and cord blood of newborns

被引:10
作者
Brzezinska, A [1 ]
Magalska, A [1 ]
Sikora, E [1 ]
机构
[1] Polish Acad Sci, Lab Mol Bases Aging, Dept Cellular Biochem, Nencki Inst Expt Biol, PL-02097 Warsaw, Poland
关键词
replicative senescence; cord blood; CFSE; CD28;
D O I
10.1016/S0047-6374(03)00012-5
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
As during replicative senescence either in vivo or in vitro, the growing up subpopulation of CD8+CD28- cells is observed, we compared replicative senescence of T cells derived from mononuclear cells of peripheral blood (PBMC) of adults with those from cord blood (CBMC), not having yet CD8+CD28- subpopulation. In PHA-stimulated and IL-2-dependent cultures, T-cells from both cord blood and peripheral blood of young adults displayed similar pattern of replicative senescence characterised by gradual decrease of proliferation capacity (assessed by CFSE assay) and reduction of CD28+ subpopulation of CD8+ cells. We were also interested whether CD8+CD28- were just progeny of CD28+ cells or if they were able to proliferate by themselves. After PHA stimulation of cells from adult donors at different ages, including centenarians, the transient up-regulation of CD28+ was observed. In CBMC and PBMC from young donors, the entire CD28+ subpopulation entered the cell cycle. In PBMC, from the majority of middle-aged subjects and all centenarians both CD28+ and CD28- were proliferating. All together we can conclude that in vitro CD8+CD28- are the progeny of both CD8+CD28+ and CD8+CD28- subpopulations. (C) 2003 Elsevier Science Ireland Ltd. All rights reserved.
引用
收藏
页码:379 / 387
页数:9
相关论文
共 22 条
[1]   T-cell regulation by CD28 and CTLA-4 [J].
Alegre, ML ;
Frauwirth, KA ;
Thompson, CB .
NATURE REVIEWS IMMUNOLOGY, 2001, 1 (03) :220-228
[2]  
AZUMA M, 1993, J IMMUNOL, V150, P1147
[3]   Oligoclonal expansions in the CD8+CD28- T cells largely explain the shorter telomeres detected in this subset:: Analysis by flow FISH [J].
Batliwalla, FM ;
Rufer, N ;
Lansdorp, PM ;
Gregersen, PK .
HUMAN IMMUNOLOGY, 2000, 61 (10) :951-958
[4]   From cells to organisms: can we learn about aging from cells in culture? [J].
Campisi, J .
EXPERIMENTAL GERONTOLOGY, 2001, 36 (4-6) :607-618
[5]   Age associated decline in CD25 and CD28 expression correlate with an increased susceptibility to CD95 mediated apoptosis in T cells [J].
Dennett, NS ;
Barcia, RN ;
McLeod, JD .
EXPERIMENTAL GERONTOLOGY, 2002, 37 (2-3) :271-283
[6]   NEONATAL T-CELLS AS A MODEL SYSTEM TO STUDY THE POSSIBLE INVITRO SENESCENCE OF LYMPHOCYTES [J].
EFFROS, RB ;
WALFORD, RL .
EXPERIMENTAL GERONTOLOGY, 1987, 22 (05) :307-316
[7]   Loss of CD28 expression on T lymphocytes: A marker of replicative senescence [J].
Effros, RB .
DEVELOPMENTAL AND COMPARATIVE IMMUNOLOGY, 1997, 21 (06) :471-478
[8]   DECLINE IN CD28(+) T-CELLS IN CENTENARIANS AND IN LONG-TERM T-CELL CULTURES - A POSSIBLE CAUSE FOR BOTH IN-VIVO AND IN-VITRO IMMUNOSENESCENCE [J].
EFFROS, RB ;
BOUCHER, N ;
PORTER, V ;
ZHU, XM ;
SPAULDING, C ;
WALFORD, RL ;
KRONENBERG, M ;
COHEN, D ;
SCHACHTER, F .
EXPERIMENTAL GERONTOLOGY, 1994, 29 (06) :601-609
[9]   Replicative senescence of T cells: does the Hayflick Limit lead to immune exhaustion? [J].
Effros, RB ;
Pawelec, G .
IMMUNOLOGY TODAY, 1997, 18 (09) :450-454
[10]   Replicative senescence in the immune system: Impact of the hayflick limit on T-cell function in the elderly [J].
Effros, RB .
AMERICAN JOURNAL OF HUMAN GENETICS, 1998, 62 (05) :1003-1007