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Updated: Jan 10, 2026

Advances in Human Induced Pluripotent Stem Cell-Derived Chimeric Antigen Receptor-Expressing Natural Killer Cells
Published on: February 14, 2025
Natural killer cell-specific chimeric antigen receptor enhances CAR NK cell functions and anti-tumor activity
Changqing Pan1, You Zhai1,2, Zhongliang Cui1
1Department of Neurosurgery, Beijing Tiantan Hospital, Capital Medical University, Beijing, PR China.
Abstract:
Background: Unlike T cells, natural killer (NK) cells lack a dominant activating receptor analogous to the T cell receptor (TCR) that governs their activation. Whether chimeric antigen receptor (CAR) constructs engineered specifically for T cells can effectively drive NK cell activation remains unresolved. NK cells inherently possess non-specific recognition capacities and exert broad-spectrum cytotoxicity against diverse tumor targets. However, the complexity of receptor-ligand interactions between CAR NK cells and susceptible target cells has impeded efforts to delineate the specific functional contributions of individual CAR constructs. Methods: CAR NK cells were generated via electroporation. The murine B16 melanoma cell line was modified to express various target proteins using lentiviral transduction. In vitro functional assays, including conjugate formation, granule polarization, degranulation, cytotoxicity, and cytokine production, were employed to assess CAR NK cell efficacy. Recombinant protein-coated beads were used to investigate downstream activation signaling pathways. The in vivo antitumor activity of CAR NK cells was evaluated using NPG mouse xenograft models. Results: B16 cell line was first validated to be a suitable model for specifically assessing CAR construct function in CAR NK cells. Among nine distinct CAR molecules generated, the construct incorporating the NKG2DTM-2B4-FCER1G exhibited the most potent capacity to enhance NK cell-mediated functionalities. Consistent with these functional improvements, this CAR construct induced robust phosphorylation of key activation pathways, including AKT, VAV1, ERK, PLCγ1, and NF-κB. Conclusions: The CAR construct incorporating the NKG2DTM-2B4-FCER1G is demonstrated to be the most effective in enhancing NK cell functionality.
Insights
Researchers identified the most effective chimeric antigen receptor (CAR) construct for enhancing natural killer (NK) cell activity. The NKG2DTM-2B4-FCER1G construct significantly boosts NK cell functions and antitumor potential.
Area of Science:
- Immunology
- Cell Biology
- Cancer Research
Background:
- Natural killer (NK) cells lack a T cell receptor (TCR)-like activating receptor, unlike T cells.
- The efficacy of T cell-specific chimeric antigen receptor (CAR) constructs in driving NK cell activation is not fully understood.
- NK cells exhibit broad cytotoxicity, but CAR NK cell-target interactions are complex, hindering the study of individual CAR constructs.
Purpose of the Study:
- To evaluate the effectiveness of various CAR constructs in enhancing NK cell activation and function.
- To identify the optimal CAR construct for improving NK cell-mediated cytotoxicity and antitumor activity.
- To investigate the signaling pathways modulated by effective CAR constructs in NK cells.
Main Methods:
- CAR NK cells were generated using electroporation.
- A murine B16 melanoma cell line was engineered to express target proteins for functional assays.
- In vitro assays assessed conjugate formation, degranulation, cytotoxicity, and cytokine production; in vivo studies used NPG mouse xenograft models.
Main Results:
- The B16 cell line proved suitable for evaluating CAR construct function in CAR NK cells.
- Among nine CAR constructs, NKG2DTM-2B4-FCER1G demonstrated the most potent enhancement of NK cell functions.
- This CAR construct effectively activated key signaling pathways, including AKT, VAV1, ERK, PLCγ1, and NF-κB.
Conclusions:
- The CAR construct combining NKG2DTM, 2B4, and FCER1G signaling domains is highly effective.
- This construct significantly enhances NK cell functionality and potential for cancer immunotherapy.
- The findings provide a basis for developing improved CAR NK cell-based therapies.
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