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Artificial Antigen Presenting Cell (aAPC) Mediated Activation and Expansion of Natural Killer T Cells
Published on: December 29, 2012
Nanoscale artificial antigen-presenting cells reveal metabolic interventions modulate clonal composition of CD8+ T
Joseph Choy1,2,3,4, Sydney R Shannon3,4,5, Yicheng Zhang1,2
1Department of Materials Science & Engineering, Johns Hopkins University, Baltimore, MD, USA 21218.
Abstract:
In response to pathogens, CD8+ T cells reprogram their metabolism to fuel a proliferative burst of antigen-specific T cells. Engineering metabolism can augment CD8+ T cell responses, yet mechanistic studies understanding the direct impact of metabolic programming on T cell phenotype and TCR receptor (TCR) repertoire selection remains unknown. Here, using nanoparticle-based artificial antigen presentation cells (aAPCs) as a model of endogenous expansion to stimulate primary murine CD8+ T cells, we show that glutamine antagonism modulates epitope-specific T cell phenotype by upregulating self-renewal markers and serves a new function as a "clonal filter," enriching high-affinity CD8+ T-cell clones. Moreover, the effect of glutamine inhibition skews towards cells with high-affinity TCRs and enhances their ability to kill in vivo. Collectively, these findings introduce metabolic blockade as a rapid, non-genetic strategy to pre-select durable, high-affinity T cells, providing an easily implementable add-on for adoptive cell therapy.

