Mel14+CD4+ T cells from aged mice display functional and phenotypic characteristics of memory cells |
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Authors: | Dobber, Ruud Tielemans, Margret de Weerd, Hellen Nagelkerken, Lex |
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Affiliation: | Section of Immunology, Institute of Aging and Vascular Research TNO PO Box 430, 2300 AK, Leiden, The Netherlands |
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Abstract: | Aging is accompanied by an increased fraction of memory CD4+T cells. Despite the fact that human memory cells have beenreported to produce high levels of IL-2, studies in mice andman indicate an age-related decline in IL-2 production. In thepresent study, we examined whether these conflicting resultsdepend on the activation pathway employed in a comparison ofphenotypically distinct CD4+ T cells from young and aged mice.Our data indicate an age-related decline in IL-2 productionby CD4+ T cells when the cells were stimulated with concanavalinA in the presence of accessory cells or the combination of immobilizedanti-CD3 and soluble anti-CD28. However, when CD4+ T cells wereonly stimulated with Immobilized anti-CD3, an age-related increasein IL-2 production was observed. This age-related increase inIL-2 could be attributed to the ability of CD4+ T cells fromaged mice to produce IL-4 on this stimulation, since anti-IL-4inhibited the IL-2 production In these cultures to levels foundwith cells from young mice. The addition of exogenous IL-4 greatlyenhanced the IL-2 production of CD4+ T cells from young miceto levels far beyond that of the aged counterparts, emphasizingthe dominant role of IL-4 In the induction of IL-2 stimulatedwith immobilized anti-CD3. No differences were observed in theactivation requirements of Mel14– CD4+ T cells from youngand aged mice. However, Mel14+ CD4+T cells from aged mice werefunctionally and phenotypically more mature than their youngcounterparts, since they were capable of IL-2 and IL-4 productionin response to antl-CD3 without the need of CD28 triggeringand expressed Pgp-1 and ICAM-1 in a higher density. Our dataindicate therefore that Mel14 is not a stable marker for naiveCD4+ T cells and might not be appropriate to distinguish thesecells from memory cells. |
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Keywords: | aging CD4+ T cells CD28 naive Mel14 memory |
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