Increased Reactivity of Dendritic Cells from Aged Subjects to Self-Antigen, the Human DNA

Diminished immune functions and chronic inflammation are hallmarks of aging. The underlying causes are not well understood. In this investigation, we show an increased reactivity of dendritic cells (DCs) from aged subjects to self-Ags as one of the potential mechanisms contributing to age-associated...

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Published inThe Journal of immunology (1950) Vol. 182; no. 2; pp. 1138 - 1145
Main Authors Agrawal, Anshu, Tay, Jia, Ton, Steven, Agrawal, Sudhanshu, Gupta, Sudhir
Format Journal Article
LanguageEnglish
Published England Am Assoc Immnol 15.01.2009
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Summary:Diminished immune functions and chronic inflammation are hallmarks of aging. The underlying causes are not well understood. In this investigation, we show an increased reactivity of dendritic cells (DCs) from aged subjects to self-Ags as one of the potential mechanisms contributing to age-associated inflammation. Consistent with this, DCs from aged subjects display increased reactivity to intracellular human DNA, a self-Ag, by secreting enhanced quantities of type I IFN and IL-6 compared with the DCs from young subjects. Furthermore, this is accompanied by an increased up-regulation of costimulatory molecules CD80 and CD86. These DNA-primed DCs from aged subjects enhanced T cell proliferation compared with the young subjects, further substantiating our findings. Investigations of signaling mechanisms revealed that DNA-stimulated DCs from aged subjects displayed a significantly higher level of IFN regulatory factor-3 and NF-κB activity compared with their young counterparts. More importantly, DCs from aged subjects displayed a higher level of NF-κB activation at the basal level, suggesting an increased state of activation. This activated state of DCs may be responsible for their increased reactivity to self-Ags such as DNA, which in turn contributes to the age-associated chronic inflammation.
Bibliography:ObjectType-Article-2
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ISSN:0022-1767
1550-6606
1550-6606
DOI:10.4049/jimmunol.182.2.1138