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Multiplexed Immunofluorescence Analysis and Quantification of Intratumoral PD-1+ Tim-3+ CD8+ T Cells
Published on: February 8, 2018
PD-1 Blockade and CD27 Stimulation Activate Distinct Transcriptional Programs That Synergize for CD8+ T-Cell-Driven
Sarah L Buchan1, Mohannad Fallatah1, Stephen M Thirdborough2
1Cancer Sciences Unit, Faculty of Medicine, University of Southampton, Southampton, United Kingdom.
Abstract:
Purpose: PD-1 checkpoint blockade has revolutionized the field of cancer immunotherapy, yet the frequency of responding patients is limited by inadequate T-cell priming secondary to a paucity of activatory dendritic cells (DC). DC signals can be bypassed by CD27 agonists, and we therefore investigated if the effectiveness of anti-PD-1/L1 could be improved by combining with agonist anti-CD27 monoclonal antibodies (mAb).Experimental Design: The efficacy of PD-1/L1 blockade or agonist anti-CD27 mAb was compared with a dual-therapy approach in multiple tumor models. Global transcriptional profiling and flow cytometry analysis were used to delineate mechanisms underpinning the observed synergy.Results: PD-1/PD-L1 blockade and agonist anti-CD27 mAb synergize for increased CD8+ T-cell expansion and effector function, exemplified by enhanced IFNγ, TNFα, granzyme B, and T-bet. Transcriptome analysis of CD8+ T cells revealed that combination therapy triggered a convergent program largely driven by IL2 and Myc. However, division of labor was also apparent such that anti-PD-1/L1 activates a cytotoxicity-gene expression program whereas anti-CD27 preferentially augments proliferation. In tumor models, either dependent on endogenous CD8+ T cells or adoptive transfer of transgenic T cells, anti-CD27 mAb synergized with PD-1/L1 blockade for antitumor immunity. Finally, we show that a clinically relevant anti-human CD27 mAb, varlilumab, similarly synergizes with PD-L1 blockade for protection against lymphoma in human-CD27 transgenic mice.Conclusions: Our findings suggest that suboptimal T-cell invigoration in cancer patients undergoing treatment with PD-1 checkpoint blockers will be improved by dual PD-1 blockade and CD27 agonism and provide mechanistic insight into how these approaches cooperate for CD8+ T-cell activation. Clin Cancer Res; 24(10); 2383-94. ©2018 AACR.
Insights
Combining PD-1/PD-L1 blockade with CD27 agonists enhances T-cell responses against cancer. This dual therapy improves CD8+ T-cell expansion and effector functions, offering a promising strategy for cancer immunotherapy.
Area of Science:
- Immunology
- Cancer Research
- T-cell Biology
Background:
- Programmed cell death protein 1 (PD-1) checkpoint blockade is a cornerstone of cancer immunotherapy.
- Limited patient response to PD-1 blockade is often due to insufficient T-cell priming.
- Dendritic cell (DC) signals are crucial for T-cell priming but can be bypassed by CD27 agonists.
Purpose of the Study:
- To investigate if combining anti-PD-1/L1 therapy with agonist anti-CD27 monoclonal antibodies (mAbs) improves anti-tumor immunity.
- To elucidate the mechanistic basis of synergy between PD-1/L1 blockade and CD27 agonism.
Main Methods:
- Comparative efficacy studies of PD-1/L1 blockade, anti-CD27 mAb, and dual therapy in multiple tumor models.
- Global transcriptional profiling and flow cytometry analysis to understand underlying mechanisms.
- Evaluation in models with endogenous or adoptively transferred T cells, including human CD27 transgenic mice.
Main Results:
- Combination therapy synergistically increased CD8+ T-cell expansion and effector functions (IFNγ, TNFα, granzyme B, T-bet).
- Transcriptome analysis revealed IL2 and Myc as key drivers of the combined therapy's convergent program.
- Anti-PD-1/L1 promoted cytotoxicity, while anti-CD27 enhanced proliferation, demonstrating a division of labor.
- Dual therapy demonstrated significant anti-tumor immunity in vivo, including protection against lymphoma with varlilumab and PD-L1 blockade.
Conclusions:
- Dual PD-1 blockade and CD27 agonism can overcome suboptimal T-cell invigoration in cancer patients.
- This combination provides mechanistic insights into enhanced CD8+ T-cell activation for improved cancer immunotherapy.
- The findings support the clinical investigation of combined PD-1/L1 blockade and CD27 agonism.
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