PD-1 blockade drug holiday improves exhausted progenitor CD8 T cell (Tpex) reinvigoration by avoiding Tpex adaptive

Insights

Optimizing programmed cell death 1 (PD-1) blockade requires strategic drug holidays. Intermittent PD-1 blockade enhances T cell reinvigoration and disease control by restoring progenitor cell function, unlike continuous treatment.

Area of Science:

  • Immunology
  • Pharmacology
  • Virology

Background:

  • Programmed cell death 1 (PD-1) pathway blockade reinvigorates exhausted T cells (Tex) for treating chronic infections and cancer.
  • Optimizing PD-1 blockade pharmacodynamics for maximal Tex reinvigoration remains an open question.

Purpose of the Study:

  • To investigate different PD-1 blockade regimens for optimizing Tex reinvigoration during chronic viral infection.
  • To elucidate the mechanisms underlying Tex progenitor cell (Tpex) dysfunction during prolonged PD-1 blockade.

Main Methods:

  • Longitudinal tracking of Tex reinvigoration in a mouse model of chronic lymphocytic choriomeningitis virus (LCMV) infection.
  • Comparison of single-cycle, continuous, and intermittent PD-1 blockade regimens.
  • Analysis of Tpex proliferative and differentiation capacity, and inhibitory receptor expression (e.g., CD22).

Main Results:

  • Intermittent PD-1 blockade, unlike continuous treatment, induced secondary Tex reinvigoration and improved disease control.
  • Prolonged PD-1 blockade impaired Tpex function and promoted adaptive resistance, including CD22 upregulation.
  • Co-blockade of PD-1 and CD22 enhanced Tex reinvigoration and disease control.

Conclusions:

  • Intermittent PD-1 blockade is superior to continuous blockade for sustained Tex reinvigoration and improved disease control.
  • Drug holidays are crucial for restoring Tpex function and overcoming adaptive resistance during PD-1 blockade.
  • Targeting CD22 in combination with PD-1 offers a promising strategy for enhancing immunotherapy outcomes.

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