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Updated: Jul 19, 2025

Advances in Human Induced Pluripotent Stem Cell-Derived Chimeric Antigen Receptor-Expressing Natural Killer Cells
Published on: February 14, 2025
Memory-like Differentiation, Tumor-Targeting mAbs, and Chimeric Antigen Receptors Enhance Natural Killer Cell
Miriam T Jacobs1,2, Pamela Wong1, Alice Y Zhou1,2
1Division of Oncology, Department of Medicine, Washington University School of Medicine, St. Louis, Missouri.
Purpose:
Head and neck squamous cell carcinoma (HNSCC) is an aggressive tumor with low response rates to frontline PD-1 blockade. Natural killer (NK) cells are a promising cellular therapy for T cell therapy-refractory cancers, but are frequently dysfunctional in patients with HNSCC. Strategies are needed to enhance NK cell responses against HNSCC. We hypothesized that memory-like (ML) NK cell differentiation, tumor targeting with cetuximab, and engineering with an anti-EphA2 (Erythropoietin-producing hepatocellular receptor A2) chimeric antigen receptor (CAR) enhance NK cell responses against HNSCC.
Experimental Design:
We generated ML NK and conventional (c)NK cells from healthy donors, then evaluated their ability to produce IFNγ, TNF, degranulate, and kill HNSCC cell lines and primary HNSCC cells, alone or in combination with cetuximab, in vitro and in vivo using xenograft models. ML and cNK cells were engineered to express anti-EphA2 CAR-CD8A-41BB-CD3z, and functional responses were assessed in vitro against HNSCC cell lines and primary HNSCC tumor cells.
Results:
Human ML NK cells displayed enhanced IFNγ and TNF production and both short- and long-term killing of HNSCC cell lines and primary targets, compared with cNK cells. These enhanced responses were further improved by cetuximab. Compared with controls, ML NK cells expressing anti-EphA2 CAR had increased IFNγ and cytotoxicity in response to EphA2+ cell lines and primary HNSCC targets.
Conclusions:
These preclinical findings demonstrate that ML differentiation alone or coupled with either cetuximab-directed targeting or EphA2 CAR engineering were effective against HNSCCs and provide the rationale for investigating these combination approaches in early phase clinical trials for patients with HNSCC.
Insights
Memory-like Natural Killer (NK) cells show enhanced killing of head and neck squamous cell carcinoma (HNSCC). Combining NK cells with cetuximab or EphA2 CAR therapy improves anti-tumor activity against HNSCC.
Area of Science:
- Immunology
- Oncology
- Cell Therapy
Background:
- Head and neck squamous cell carcinoma (HNSCC) is aggressive with poor response to PD-1 blockade.
- Natural Killer (NK) cells are a potential therapy but are often dysfunctional in HNSCC patients.
- Novel strategies are needed to enhance NK cell efficacy against HNSCC.
Purpose of the Study:
- To investigate if memory-like (ML) NK cell differentiation, cetuximab targeting, and anti-EphA2 chimeric antigen receptor (CAR) engineering enhance NK cell responses against HNSCC.
- To evaluate the combined efficacy of these approaches in preclinical models.
- To provide a rationale for clinical trials in HNSCC patients.
Main Methods:
- Generated and characterized memory-like (ML) NK cells and conventional (c)NK cells from healthy donors.
- Assessed NK cell function (IFNγ, TNF, degranulation, cytotoxicity) in vitro and in vivo against HNSCC cell lines and primary tumors.
- Engineered ML NK cells with an anti-EphA2 CAR and evaluated their responses against EphA2-expressing HNSCC.
Main Results:
- ML NK cells demonstrated superior IFNγ and TNF production and enhanced killing of HNSCC compared to cNK cells.
- Cetuximab further augmented the anti-HNSCC activity of ML NK cells.
- Anti-EphA2 CAR-engineered ML NK cells showed increased IFNγ production and cytotoxicity against EphA2+ HNSCC targets.
Conclusions:
- Memory-like NK cell differentiation alone or combined with cetuximab or EphA2 CAR engineering shows significant preclinical efficacy against HNSCC.
- These combination strategies warrant investigation in early-phase clinical trials for HNSCC treatment.
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