Intravital mucosal imaging of CD8+ resident memory T cells shows tissue-autonomous recall responses that amplify secondary memory

LK Beura, JS Mitchell, EA Thompson, JM Schenkel… - Nature …, 2018 - nature.com
LK Beura, JS Mitchell, EA Thompson, JM Schenkel, J Mohammed, S Wijeyesinghe
Nature immunology, 2018nature.com
CD8+ T cell immunosurveillance dynamics influence the outcome of intracellular infections
and cancer. Here we used two-photon intravital microscopy to visualize the responses of
CD8+ resident memory T cells (TRM cells) within the reproductive tracts of live female mice.
We found that mucosal TRM cells were highly motile, but paused and underwent in situ
division after local antigen challenge. TRM cell reactivation triggered the recruitment of
recirculating memory T cells that underwent antigen-independent TRM cell differentiation in …
Abstract
CD8+ T cell immunosurveillance dynamics influence the outcome of intracellular infections and cancer. Here we used two-photon intravital microscopy to visualize the responses of CD8+ resident memory T cells (TRM cells) within the reproductive tracts of live female mice. We found that mucosal TRM cells were highly motile, but paused and underwent in situ division after local antigen challenge. TRM cell reactivation triggered the recruitment of recirculating memory T cells that underwent antigen-independent TRM cell differentiation in situ. However, the proliferation of pre-existing TRM cells dominated the local mucosal recall response and contributed most substantially to the boosted secondary TRM cell population. We observed similar results in skin. Thus, TRM cells can autonomously regulate the expansion of local immunosurveillance independently of central memory or proliferation in lymphoid tissue.
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