Immunosenescence: potential causes and strategies for reversal

被引:36
作者
Aspinall, R [1 ]
Andrew, D [1 ]
机构
[1] Chelsea & Westminster Hosp, Imperial Coll Med, Dept Immunol, London SW10 9NH, England
关键词
immune dysfunction; interleukin; 7; T cells; thymus;
D O I
10.1042/bst0280250
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Age-related deterioration in immune function has been recognized in many species. In humans the clinical manifestation of such immune dysfunction is age-related increases in the susceptibility to certain infections and in the incidence of some autoimmune disease and certain cancers. Laboratory investigations reveal age-related changes in the peripheral T cell pool, in the predominant phenotype, cytokine production profiles, signalling function and irt replicative ability following stimulus with antigen, mitogens or anti-CDS antibody. These changes in the properties of peripheral T cells are thought to be causally linked to an age-associated involution in the thymus. Our analysis reveals that thymic involution is due to a change in the thymic microenvironment linked to a reduction in the level of available interleukin 7. Treatment with interleukin 7 leads to a reversal of thymic atrophy with increased thymopoiesis. This provides the potential to reverse the immune dysfunction seen in the peripheral T cell pool by replacing old cells with new output generated in the thymus. Problems to overcome in order for such an experimental therapy to be successful require careful analysis in order to provide an optimal strategy to ensure that new T cell emigrants from the thymus have a broad range of specificities and are able to enter the peripheral T cell pool.
引用
收藏
页码:250 / 254
页数:5
相关论文
共 53 条
[1]  
Aspinall R, 1997, J IMMUNOL, V158, P3037
[2]   Phenotypic and immunohistological analyses of the human adult thymus: Evidence for an active thymus during adult life [J].
Bertho, JM ;
Demarquay, C ;
Moulian, N ;
VanderMeeren, A ;
Berrih-Aknin, S ;
Gourmelon, P .
CELLULAR IMMUNOLOGY, 1997, 179 (01) :30-40
[3]   THE EFFECT OF IN-VIVO IL-7 DEPRIVATION ON T-CELL MATURATION [J].
BHATIA, SK ;
TYGRETT, LT ;
GRABSTEIN, KH ;
WALDSCHMIDT, TJ .
JOURNAL OF EXPERIMENTAL MEDICINE, 1995, 181 (04) :1399-1409
[4]   Aging of the recipients but not of the bone marrow donors enhances autoimmunity In syngeneic radiation chimeras [J].
Doria, G ;
Mancini, C ;
Utsuyama, M ;
Frasca, D ;
Hirokawa, K .
MECHANISMS OF AGEING AND DEVELOPMENT, 1997, 95 (1-2) :131-142
[5]   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
[6]  
Engwerda CR, 1996, J IMMUNOL, V156, P3621
[7]  
ENGWERDA CR, 1994, J IMMUNOL, V152, P3740
[8]   An age-related decrease in rescue from T cell death following costimulation mediated by CD28 [J].
Engwerda, CR ;
Handwerger, BS ;
Fox, BS .
CELLULAR IMMUNOLOGY, 1996, 170 (01) :141-148
[9]   AGE-RELATED-CHANGES IN THE CAPACITY OF BONE-MARROW CELLS TO DIFFERENTIATE IN THYMIC ORGAN-CULTURES [J].
EREN, R ;
ZHARHARY, D ;
ABEL, L ;
GLOBERSON, A .
CELLULAR IMMUNOLOGY, 1988, 112 (02) :449-455
[10]   Expansion of cytotoxic CD8(+) CD28(-) T cells in healthy ageing people, including centenarians [J].
Fagnoni, FF ;
Vescovini, R ;
Mazzola, M ;
Bologna, G ;
Nigro, E ;
Lavagetto, G ;
Franceschi, C ;
Passeri, M ;
Sansoni, P .
IMMUNOLOGY, 1996, 88 (04) :501-507