Cellular Senescence is a Double-Edged Sword in Regulating Aged Immune Responses to Influenza

Author:

Torrance Blake L.ORCID,Panier Hunter A.,Cadar Andreia N.,Martin Dominique E.,Lorenzo Erica C.,Jellison Evan R.,Bartley Jenna M.,Haynes Laura

Abstract

AbstractClearance of senescent cells has demonstrated therapeutic potential in the context of chronic age-related diseases. Little is known, however, how clearing senescent cells affects the ability to respond to an acute infection and form quality immunological memory. We aimed to probe the effects of clearing senescent cells in aged mice on the immune response to influenza (flu) infection. We utilized a p16 trimodality reporter mouse model (p16-3MR) to allow for identification and selective deletion of p16-expressing senescent cells upon administration of ganciclovir (GCV). While p16-expressing senescent cells may exacerbate dysfunctional responses to a primary infection, our data suggest they may play a role in fostering memory cell generation. We demonstrate that although deletion of p16-expressing cells enhanced viral clearance, this also severely limited antibody production in the lungs of flu-infected aged mice. 30 days later, there were fewer flu-specific CD8 memory T cells and lower levels of flu-specific antibodies in the lungs of GCV treated mice. GCV treated mice were unable to mount an optimal memory response and demonstrated increased viral load following a heterosubtypic challenge. These results suggest that targeting senescent cells may potentiate primary responses while limiting the ability to form durable and protective immune memory with age.

Publisher

Cold Spring Harbor Laboratory

Reference38 articles.

1. Provisional COVID-19 Death Counts by Age in Years 2020-2022: National Center for Health Statistics; [Available from: https://www.cdc.gov/nchs/covid19/covid-19-mortality-data-files.html.

2. Estimated Influenza Disease Burden, by Season — United States, 2010-11 through 2019-20 Influenza Seasons: Centers for Disease Control and Prevention, National Center for Immunization and Respiratory Diseases (NCIRD); [Available from: https://www.cdc.gov/flu/about/burden/past-seasons.html.

3. Aging of the innate immune system

4. Aging induces B cell defects and decreased antibody responses to influenza infection and vaccination;Immun Ageing,2020

5. Hallmarks of T cell aging

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