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The (gradual) rise of memory inflation
Author(s) -
Klenerman Paul
Publication year - 2018
Publication title -
immunological reviews
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.839
H-Index - 223
eISSN - 1600-065X
pISSN - 0105-2896
DOI - 10.1111/imr.12653
Subject(s) - biology , inflation (cosmology) , keynesian economics , immunological memory , immunology , economics , immunity , immune system , physics , theoretical physics
Summary Memory inflation, as a term, has been used for 15 years now to describe the longitudinal development of stable, expanded CD 8 + T memory pools with a distinct phenotype and functional profile which emerge in specific infection and vaccine settings. These settings have in common the persistence of antigen, especially cytomegalovirus infection but also more recently adenoviral vector vaccination. However, in contrast to chronic infections which lead to “exhaustion” the repeated antigen encounters experienced by CD 8 + T cells lead to development of a robust T‐cell population structure which maintains functionality and size. In this review, I will discuss how the ideas around this form of memory have evolved over time and some new models which can help explain how these populations are induced and sustained. These models are relevant to immunity against persistent viruses, to novel vaccine strategies and to concepts about aging.

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