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Updated: May 22, 2025

Advances in Human Induced Pluripotent Stem Cell-Derived Chimeric Antigen Receptor-Expressing Natural Killer Cells
Published on: February 14, 2025
Targeting HER2-Positive Solid Tumors with CAR NK Cells: CD44 Expression Is a Critical Modulator of HER2-Specific CAR
Bence Gergely1, Márk A Vereb1, István Rebenku1
1Department of Biophysics and Cell Biology, Faculty of Medicine, University of Debrecen, 4032 Debrecen, Hungary.
Abstract:
Background/Objectives: Monoclonal antibody therapies for HER2-positive tumors frequently encounter resistance, requiring alternative treatment strategies. This study investigates the use of natural killer (NK) cells expressing HER2-specific chimeric antigen receptor (CAR) to address this issue. CAR NK cells have several benefits over CAR T cells: they are less likely to cause severe side effects such as cytokine release syndrome and neurotoxicity, can be sourced from various origins, and do not trigger Graft versus Host Disease, making them ideal for "off-the-shelf" applications. Methods: We have generated NK-92 cell lines expressing first, second and third-generation HER2-specific CARs with CD28 and/or 41BB costimulatory domains using a retroviral transduction system, followed by FACS sorting and expansion to obtain pure HER2-CAR NK-92 cell products for functional benchmarking. Results: In vitro tests showed that these CAR NK cells were effective against both trastuzumab-sensitive (CD44-) and -resistant (CD44+) tumors in monolayer cultures. However, in three-dimensional spheroid models and in vivo xenografts, they were less effective against CD44+ trastuzumab-resistant tumors. Conclusions: This reduced efficacy highlights the significant role of the tumor microenvironment, particularly the extracellular matrix, in hindering the therapeutic potential of CAR NK cells. Despite the promising in vitro performance of CAR NK cells, this study emphasizes the need for improved strategies to enhance their penetration and effectiveness in resistant tumors: optimizing CAR constructs and devising methods to overcome extracellular matrix barriers are crucial for advancing CAR NK cell therapies in oncology.
Insights
Chimeric antigen receptor (CAR) NK cells show promise against HER2-positive tumors, but their effectiveness is limited by the tumor microenvironment in resistant cases. Further optimization is needed to overcome extracellular matrix barriers for improved therapeutic potential.
Area of Science:
- Immunotherapy
- Oncology
- Cell Therapy
Background:
- Monoclonal antibody therapy for HER2-positive tumors faces resistance.
- Chimeric antigen receptor (CAR) NK cells offer an alternative with fewer side effects than CAR T cells.
- CAR NK cells are suitable for off-the-shelf applications.
Purpose of the Study:
- To investigate HER2-specific CAR NK-92 cell lines for treating HER2-positive tumors.
- To evaluate the efficacy of different CAR generations and costimulatory domains.
- To assess CAR NK cell performance against trastuzumab-sensitive and -resistant tumor models.
Main Methods:
- Generated HER2-specific CAR NK-92 cell lines using retroviral transduction.
- Incorporated first, second, and third-generation CARs with CD28 and/or 41BB costimulatory domains.
- Utilized FACS sorting and expansion for pure CAR NK cell products; functional benchmarking in vitro, 3D spheroid, and in vivo xenograft models.
Main Results:
- CAR NK cells demonstrated efficacy against trastuzumab-sensitive and -resistant tumors in vitro monolayer cultures.
- Reduced efficacy was observed against CD44+ trastuzumab-resistant tumors in 3D spheroid and in vivo xenograft models.
- Tumor microenvironment, specifically extracellular matrix, significantly hindered CAR NK cell effectiveness in resistant tumors.
Conclusions:
- CAR NK cell therapy shows potential but faces challenges in resistant tumors due to the tumor microenvironment.
- Strategies to enhance CAR NK cell penetration and overcome extracellular matrix barriers are crucial.
- Optimizing CAR constructs and delivery methods are necessary for advancing CAR NK cell therapy in oncology.
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