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November 30, 2025Nature30 citationsOpen Access

Inhibitory PD-1 axis maintains high-avidity stem-like CD8+ T cells

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JHJyh Liang HorESEdward C SchromAWAbigail Wong-Rolle

Key Points

  • High-affinity CD8+ T cells persist during immunotherapy, indicating a link to cancer progression.
  • Findings suggest that sustained antigen engagement helps maintain stem-like T cell characteristics.
  • Analysis utilizes advanced imaging techniques to explore the dynamics of TCR signaling and cell differentiation.
  • Research highlights the potential impacts of PD-1 blockade on T cell functionality and cancer treatment efficacy.

Abstract

Abstract Stem-like progenitors are self-renewing cytotoxic T cells that expand as effector cells during successful checkpoint immunotherapy 1,2 . Emerging evidence suggests that tumour-draining lymph nodes support the continuous generation of these stem-like cells that replenish tumour sites and are a key source of expanded effector populations 3–6 , underlining the importance of understanding what factors promote and maintain activated T cells in the stem-like state. Here, using advanced three-dimensional multiplex immunofluorescence imaging, we identify antigen-presentation niches in tumour-draining lymph nodes that support the expansion, maintenance and affinity evolution of TCF-1 + PD-1 + SLAMF6 high stem-like CD8 + T cells. Contrary to the prevailing view that persistent T cell receptor (TCR) signalling drives terminal effector differentiation, prolonged antigen engagement days beyond initial priming sustains the proliferation and self-renewal of these stem-like T cells in vivo. The inhibitory PD-1 pathway has a central role in this process through fine-tuning the TCR signal input that enables the selective expansion of high-affinity TCR stem-like clones as a renewable source of effector cells. PD-1 blockade disrupts this tuning, leading to terminal differentiation or death of the most avid anti-tumour stem-like cells. Our results therefore reveal a relationship between TCR ligand affinity recognition, a key negative-feedback regulatory loop and T cell stemness programming. Furthermore, these findings raise questions about whether anti-PD-1 blockade during cancer immunotherapy provides a short-term anti-tumour effect at the cost of diminishing efficacy due to progressive loss of these critical high-affinity precursors.

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Cite This Study

Hor et al. (2025) studied this question.

synapsesocial.com/papers/692b94261d383f2b2a3782d0https://doi.org/10.1038/s41586-025-09440-x
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