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PD-L1 Mediates Dysfunction in Activated PD-1+ NK Cells in Head and Neck Cancer Patients
Fernando Concha-Benavente1,2, Benjamin Kansy3, Jessica Moskovitz1
1Department of Otolaryngology, University of Pittsburgh, Pittsburgh, Pennsylvania.
Abstract:
Inhibitory immune-checkpoint receptors (ICRs), including programmed death 1 (PD-1), have been characterized as exhaustion markers on T cells that infiltrate the tumor microenvironment (TME) of many cancer types, including head and neck cancer (HNC). However, expression and function of ICRs, including PD-1, on natural killer (NK) cells remains less defined. NK cells are innate immune effector cells that lyse epidermal growth factor receptor-overexpressing HNC cells via cetuximab-mediated antibody-dependent cytotoxicity. Cetuximab is clinically effective but only in 10% to 15% of patients. Therefore, it is necessary to investigate how immunomodulation with cetuximab or PD-1 blockade might enhance NK cell responses in the TME and improve monoclonal antibody therapeutic efficacy. We observed that expression of PD-1 on NK cells marks an activated phenotype, which was suppressed only after binding programmed death ligand-1 (PD-L1). HNC patients who exhibit higher circulating PD-1+ NK cells associate with better clinical outcome, and these cells are enriched in the TME. Cetuximab-mediated NK cell activation increased PD-1 expression on NK cells in vitro, which was confirmed in vivo in a prospective neoadjuvant cetuximab trial. In contrast, PD-L1 ligation of PD-1+ NK cells diminished their activation status, whereas PD-1 blockade increased cetuximab-mediated NK cell activation and cytotoxicity, but only against HNC targets with high PD-L1 expression. Therefore, blocking the PD-1-PD-L1 axis may be a useful strategy to reverse immune evasion of HNC tumors with high PD-L1 expression during cetuximab therapy by reversing NK cell dysfunction.
Insights
Programmed death 1 (PD-1) on natural killer (NK) cells indicates activation in head and neck cancer (HNC). Blocking PD-1 enhances cetuximab therapy by restoring NK cell function against PD-L1 expressing tumors.
Area of Science:
- Immunology
- Oncology
- Cancer Research
Background:
- Immune-checkpoint receptors (ICRs), like programmed death 1 (PD-1), are known T cell exhaustion markers in the tumor microenvironment (TME).
- The role of ICRs, including PD-1, on natural killer (NK) cells in head and neck cancer (HNC) is not well understood.
- NK cells are crucial for antibody-dependent cytotoxicity against HNC, but cetuximab efficacy is limited.
Purpose of the Study:
- To investigate the expression and function of PD-1 on NK cells in HNC.
- To explore how cetuximab and PD-1 blockade impact NK cell responses in the TME.
- To determine if modulating the PD-1/PD-L1 axis can enhance cetuximab therapy efficacy.
Main Methods:
- Analysis of PD-1 expression on NK cells in HNC patients and tumor tissues.
- Assessment of NK cell activation and cytotoxicity following cetuximab treatment in vitro and in vivo.
- Evaluation of PD-1 blockade effects on cetuximab-mediated NK cell responses in HNC models with varying PD-L1 expression.
Main Results:
- PD-1 expression on NK cells signifies an activated phenotype, suppressed by PD-L1 binding.
- Higher circulating PD-1+ NK cells in HNC patients correlate with better outcomes and are enriched in the TME.
- Cetuximab treatment increased PD-1 expression on NK cells, while PD-1 blockade enhanced cetuximab-induced NK cell activation and cytotoxicity against PD-L1+ HNC cells.
Conclusions:
- PD-1 on NK cells is a marker of activation and therapeutic potential in HNC.
- The PD-1-PD-L1 axis negatively regulates NK cell function in the HNC TME.
- Blocking the PD-1-PD-L1 axis may overcome immune evasion and improve cetuximab efficacy in PD-L1-expressing HNC.
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