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Updated: Sep 14, 2025

Advances in Human Induced Pluripotent Stem Cell-Derived Chimeric Antigen Receptor-Expressing Natural Killer Cells
Published on: February 14, 2025
Constitutive IL-7 signaling promotes CAR-NK cell survival in the solid tumor microenvironment but impairs tumor
Matthew Dysthe1, Ishwar Navin2, Dayenne van Leeuwen2
1Translational Biology and Molecular Medicine, Baylor College of Medicine, Houston, Texas, USA.
Background:
Adoptive transfer of chimeric antigen receptor (CAR)-expressing natural killer (NK) cells has demonstrated success against hematological malignancies. Efficacy against solid tumors has been limited by poor NK cell survival and function in the suppressive tumor microenvironment (TME). To enhance efficacy against solid tumors, stimulatory cytokines have been incorporated into CAR-NK cell therapeutic approaches. However, current cytokine strategies have limitations, including systemic toxicities, exogenous dependencies, and unwanted TME bystander effects. Here, we aimed to overcome these limitations by modifying CAR-NK cells to express a constitutively active interleukin (IL)-7 receptor, termed C7R, capable of providing intrinsic CAR-NK cell activation that does not rely on or produce exogenous signals nor activate bystander cells.
Methods:
We examined persistence, antitumor function, and transcriptional profiles of CAR-NK cells coexpressing C7R in a novel tumor immune microenvironment (TiME) co-culture system and against hematologic and solid tumor xenografts in vivo.
Results:
Peripheral blood NK cells expressing a CAR directed against the solid tumor antigen GD2 and modified with C7R demonstrated enhanced tumor killing and persistence in vitro compared with CAR-NK cells without cytokine support and similar functions to CAR-NK cells supplemented with recombinant IL-15. C7R.CAR-NK cells exhibited enhanced survival and proliferation within neuroblastoma TiME xenografts in vivo but produced poor long-term tumor control compared with CAR-NK cells supplemented with IL-15. Similar results were seen using C7R-expressing CD19.CAR-NK cells against CD19+leukemia xenografts. Gene expression analysis revealed that chronic signaling via C7R induced a transcriptional signature consistent with intratumor stressed NK cells with blunted effector function. We identified gene candidates associated with chronic cytokine-stressed NK cells that could be targeted to reduce CAR-NK cell stress within the solid TME.
Conclusion:
C7R promoted CAR-NK cell survival in hostile TMEs independent of exogenous signals but resulted in poor antitumor function in vivo. Our data reveals the detrimental role of continuous IL-7 signaling in CAR-NK cells and provides insights into proper application of cytokine signals when attempting to enhance CAR-NK cell antitumor activity.
Insights
Constitutively active interleukin-7 receptor (C7R) enhanced chimeric antigen receptor (CAR)-NK cell survival in tumors but impaired long-term antitumor function. Continuous IL-7 signaling may detrimentally affect CAR-NK cell efficacy in solid tumors.
Area of Science:
- Immunotherapy
- Cellular Therapy
- Cancer Biology
Background:
- Chimeric antigen receptor (CAR)-natural killer (NK) cells show promise for hematological malignancies.
- Poor NK cell survival and function in the tumor microenvironment (TME) limit efficacy against solid tumors.
- Current cytokine strategies for CAR-NK cells have limitations like systemic toxicities and bystander effects.
Purpose of the Study:
- To overcome limitations of current cytokine strategies by engineering CAR-NK cells to express a constitutively active interleukin-7 receptor (C7R).
- To enable intrinsic CAR-NK cell activation independent of exogenous signals and bystander cell activation.
Main Methods:
- Co-expression of C7R in CAR-NK cells.
- Assessment of persistence, antitumor function, and transcriptional profiles in a novel tumor immune microenvironment (TiME) co-culture system.
- In vivo evaluation against hematologic and solid tumor xenografts.
Main Results:
- C7R-modified CAR-NK cells showed enhanced tumor killing and persistence in vitro compared to unsupported CAR-NK cells.
- In vivo, C7R.CAR-NK cells exhibited improved survival and proliferation in neuroblastoma xenografts but inferior long-term tumor control compared to IL-15 supplemented CAR-NK cells.
- Gene expression analysis revealed chronic C7R signaling induced a stressed NK cell phenotype with blunted effector function.
Conclusions:
- C7R promotes CAR-NK cell survival in hostile TMEs independently of exogenous signals.
- Continuous IL-7 signaling via C7R resulted in poor in vivo antitumor function, highlighting its detrimental role.
- Findings provide insights into optimizing cytokine signaling for enhanced CAR-NK cell antitumor activity.
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