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February 9, 2026Science Advances4 citationsOpen Access

Antigen-specific T H 17 cells offset the age-related decline in durable T cell immunity

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ISInes SturmlechnerMayo ClinicAJAbhinav JainMayo ClinicJJJingjing JiangMayo Clinic

Key Points

  • This research aims to understand how T cell immunity changes with age and how to enhance it in older adults.
  • Compared T cell responses in younger and older vaccinated individuals
  • Evaluated memory T cell subset shifts and T cell receptor diversity
  • Assessed effects of adjuvanted vaccine on T helper 17 cells in older adults
  • Older adults showed significant declines in CD8+ T cell function
  • Adjuvanted vaccination enhanced T helper 17 cell responses
  • T helper 17 cells prevented conversion into regulatory T cells, supporting durable immunity

Abstract

Older adults are susceptible to infections in part due to waning of immune memory. To uncover mechanisms of a long-lasting immune memory, we contrasted varicella zoster virus antigen–specific memory T cell responses in adults vaccinated at young (50 years) with a live-attenuated vaccine conferring durable protection only when given at young age or with an adjuvanted component vaccine eliciting long-lasting immunity in older adults. Unlike VZV-specific CD4 + T cells, CD8 + T cells exhibited profound age-sensitive changes including memory subset shifts, reduced T cell receptor diversity, and loss of stem-like features. Vaccination of older adults with the adjuvanted vaccine did not restore CD8 + defects but selectively enhanced T helper 17 (T H 17) CD4 + T cells and prevented their conversion into regulatory T cells, likely through lipid metabolic regulation. Thus, durable vaccine efficacy with aging relies on antigen-specific T H 17 cells that compensate for CD8 + T cell defects.

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Cite This Study

Sturmlechner et al. (2026) studied this question.

synapsesocial.com/papers/698979b9f0ec2af6756e798fhttps://doi.org/10.1126/sciadv.aea7131
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