Effector T cell differentiation and memory T cell maintenance outside secondary lymphoid organs

JS Obhrai, MH Oberbarnscheidt, TW Hand… - The Journal of …, 2006 - journals.aai.org
The Journal of Immunology, 2006journals.aai.org
Naive T cell circulation is restricted to secondary lymphoid organs. Effector and memory T
cells, in contrast, acquire the ability to migrate to nonlymphoid tissues. In this study we
examined whether nonlymphoid tissues contribute to the differentiation of effector T cells to
memory cells and the long-term maintenance of memory T cells. We found that CD4, but not
CD8, effector T cell differentiation to memory cells is impaired in adoptive hosts that lack
secondary lymphoid organs. In contrast, established CD4 and CD8 memory T cells …
Abstract
Naive T cell circulation is restricted to secondary lymphoid organs. Effector and memory T cells, in contrast, acquire the ability to migrate to nonlymphoid tissues. In this study we examined whether nonlymphoid tissues contribute to the differentiation of effector T cells to memory cells and the long-term maintenance of memory T cells. We found that CD4, but not CD8, effector T cell differentiation to memory cells is impaired in adoptive hosts that lack secondary lymphoid organs. In contrast, established CD4 and CD8 memory T cells underwent basal homeostatic proliferation in the liver, lungs, and bone marrow, were maintained long-term, and functioned in the absence of secondary lymphoid organs. CD8 memory T cells found in nonlymphoid tissues expressed both central and effector memory phenotypes, whereas CD4 memory T cells displayed predominantly an effector memory phenotype. These findings indicate that secondary lymphoid organs are not necessary for the maintenance and function of memory T cell populations, whereas the optimal differentiation of CD4 effectors to memory T cells is dependent on these organs. The ability of memory T cells to persist and respond to foreign Ag independently of secondary lymphoid tissues supports the existence of nonlymphoid memory T cell pools that provide essential immune surveillance in the periphery.
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