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Updated: Jun 5, 2026

Novel Protocol for Generating Physiologic Immunogenic Dendritic Cells
Published on: May 17, 2019
PD-1 blockade drug holiday improves exhausted progenitor CD8 T cell (Tpex) reinvigoration by avoiding Tpex adaptive
Abstract:
Blocking the programmed cell death 1 (PD-1) pathway using monoclonal antibodies reinvigorates exhausted T cells (Tex), enhancing control of chronic viral infections and cancer. Considerable effort has focused on evaluating different PD-1 blockade agents in preclinical and clinical cancer settings, but relatively little information exists on how to optimize the pharmacodynamic effects of PD-1 pathway blockade on reinvigorating Tex. To address this question, we performed longitudinal tracking of Tex reinvigoration during chronic infection with lymphocytic choriomeningitis virus (LCMV) following different regimens of PD-1 blockade. We compared single-cycle (2 weeks of treatment), long-term continuous PD-1 pathway blockade (i.e. 3 months), or blockade followed by a drug holiday and then re-blockade (intermittent treatment). These studies revealed little benefit of continuous versus single-cycle PD-1 blockade, with both resulting in a single peak of Tex reinvigoration and similar effects on viral replication. In contrast, intermittent blockade resulted in a new cycle of secondary Tex reinvigoration upon redosing after a washout and this secondary Tex reinvigoration improved disease control. Mechanistically, long-term blockade eroded the ability of Tex progenitor cells (Tpex) to give rise to downstream, more functional Tex intermediate (Tex-Int) progeny, whereas the drug holiday restored this Tpex proliferative and differentiation capacity. Tpex from long-term treated mice showed evidence of adaptive resistance and additional layers of negative regulation, including sustained expression of the inhibitory receptor CD22. Indeed, co-blockade of PD-1 and CD22 using combination antibodies or bispecific antibody approaches improved disease control and reinvigoration of Tex. These data have implications for clinical immune pharmacodynamics of PD-1 blockade and provide insights into the biology of Tex reinvigoration.
One Sentence Summary:
Modifying the immunopharmacology of PD-1 blockade reveals a benefit of a drug holiday and identifies mechanisms of Tex progenitor deficiency provoked by prolonged loss of PD-1 signals including the inhibitory receptor CD22.
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.

