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1.
Aging Cell ; 7(6): 908-19, 2008 Dec.
Article in English | MEDLINE | ID: mdl-19032694

ABSTRACT

We have recently shown in non-human primates that caloric restriction (CR) initiated during adulthood can delay T-cell aging and preserve naïve CD8 and CD4 T cells into advanced age. An important question is whether CR can be initiated at any time in life, and whether age at the time of onset would modulate the beneficial effects of CR. In the current study, we evaluated the impact of CR started before puberty or during advanced age on T-cell senescence and compared it to the effects of CR started in early adulthood. Our data demonstrate that the beneficial effects of adult-onset CR on T-cell aging were lost by both early and late CR onset. In fact, some of our results suggest that inappropriate initiation of CR may be harmful to the maintenance of T-cell function. This suggests that there may be an optimal window during adulthood where CR can delay immune senescence and improve correlates of immunity in primates.


Subject(s)
Caloric Restriction , Cellular Senescence/physiology , Primates/metabolism , T-Lymphocyte Subsets/metabolism , Age Factors , Aging/immunology , Aging/metabolism , Animals , Cells, Cultured , Cellular Senescence/immunology , Female , Immunophenotyping , Macaca mulatta , Male , Primates/immunology , T-Lymphocyte Subsets/cytology , T-Lymphocyte Subsets/immunology
2.
Proc Natl Acad Sci U S A ; 103(51): 19448-53, 2006 Dec 19.
Article in English | MEDLINE | ID: mdl-17159149

ABSTRACT

Caloric restriction (CR) has long been known to increase median and maximal lifespans and to decreases mortality and morbidity in short-lived animal models, likely by altering fundamental biological processes that regulate aging and longevity. In rodents, CR was reported to delay the aging of the immune system (immune senescence), which is believed to be largely responsible for a dramatic increase in age-related susceptibility to infectious diseases. However, it is unclear whether CR can exert similar effects in long-lived organisms. Previous studies involving 2- to 4-year CR treatment of long-lived primates failed to find a CR effect or reported effects on the immune system opposite to those seen in CR-treated rodents. Here we show that long-term CR delays the adverse effects of aging on nonhuman primate T cells. CR effected a marked improvement in the maintenance and/or production of naïve T cells and the consequent preservation of T cell receptor repertoire diversity. Furthermore, CR also improved T cell function and reduced production of inflammatory cytokines by memory T cells. Our results provide evidence that CR can delay immune senescence in nonhuman primates, potentially contributing to an extended lifespan by reducing susceptibility to infectious disease.


Subject(s)
Caloric Restriction , Cellular Senescence/physiology , T-Lymphocytes/physiology , Age Factors , Animals , Cell Count , Cellular Senescence/immunology , Cytokines/metabolism , Flow Cytometry , Macaca mulatta , Receptors, Antigen, T-Cell/metabolism , T-Lymphocytes/immunology
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