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Updated: Jun 3, 2025

A Spheroid Killing Assay by CAR T Cells
Published on: December 12, 2018
TBK1 Targeting Is Identified as a Therapeutic Strategy to Enhance CAR T-Cell Efficacy Using Patient-Derived
Yi Sun1,2, Luke Maggs3, Apekshya Panda2
1Mass General Cancer Center, Krantz Family Center for Cancer Research, Department of Medicine, Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts.
Abstract:
Novel therapeutic strategies are needed to improve the efficacy of chimeric antigen receptor (CAR) T cells as a treatment of solid tumors. Multiple tumor microenvironmental factors are thought to contribute to resistance to CAR T-cell therapy in solid tumors, and appropriate model systems to identify and examine these factors using clinically relevant biospecimens are limited. In this study, we examined the activity of B7-H3-directed CAR T cells (B7-H3.CAR-T) using 3D microfluidic cultures of patient-derived organotypic tumor spheroids (PDOTS) and then confirmed the activity of B7-H3.CAR T cells in PDOTS. Although B7-H3 expression in PDOTS was associated with B7-H3.CAR-T sensitivity, mechanistic studies revealed dynamic upregulation of co-inhibitory receptors on CAR T-cells following target cell encounter that led to CAR T-cell dysfunction and limited efficacy against B7-H3-expressing tumors. PD-1 blockade restored CAR T-cell activity in monotypic and organotypic tumor spheroids with improved tumor control and upregulation of effector cytokines. Given the emerging role of TANK-binding kinase 1 (TBK1) as an immune evasion gene, we examined the effect of TBK1 inhibition on CAR T-cell efficacy. Similar to PD-1 blockade, TBK1 inhibition restored CAR T-cell activity in monotypic and organotypic tumor spheroids, prevented CAR T-cell dysfunction, and enhanced CAR T-cell proliferation. Inhibition or deletion of TBK1 also enhanced the sensitivity of cancer cells to immune-mediated killing. Taken together, our results demonstrate the feasibility and utility of ex vivo profiling of CAR T cells using PDOTS and suggest that targeting TBK1 could be used to enhance CAR T-cell efficacy by overcoming tumor-intrinsic and -extrinsic resistance mechanisms.
Insights
Targeting TANK-binding kinase 1 (TBK1) can overcome resistance to chimeric antigen receptor (CAR) T-cell therapy in solid tumors. TBK1 inhibition restores CAR T-cell function and enhances anti-tumor activity, offering a novel therapeutic strategy.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- Chimeric antigen receptor (CAR) T-cell therapy shows promise for solid tumors, but efficacy is limited by the tumor microenvironment.
- Existing models for studying CAR T-cell resistance are insufficient for using patient-derived samples.
- B7-H3 is a target antigen for CAR T-cells in solid tumors.
Purpose of the Study:
- To investigate the efficacy of B7-H3-directed CAR T cells (B7-H3.CAR-T) in patient-derived organotypic tumor spheroids (PDOTS).
- To identify mechanisms of resistance to CAR T-cell therapy in solid tumors.
- To evaluate therapeutic strategies, including PD-1 blockade and TANK-binding kinase 1 (TBK1) inhibition, to overcome resistance.
Main Methods:
- Utilized 3D microfluidic cultures of patient-derived organotypic tumor spheroids (PDOTS) to model solid tumor microenvironments.
- Assessed B7-H3.CAR-T cell activity and characterized CAR T-cell dysfunction.
- Investigated the effects of PD-1 blockade and TBK1 inhibition on CAR T-cell function and tumor control.
Main Results:
- B7-H3 expression correlated with B7-H3.CAR-T sensitivity, but CAR T-cell dysfunction occurred due to co-inhibitory receptor upregulation.
- PD-1 blockade restored CAR T-cell activity and improved tumor control in PDOTS.
- TBK1 inhibition, similar to PD-1 blockade, restored CAR T-cell activity, prevented dysfunction, enhanced proliferation, and increased cancer cell sensitivity to immune killing.
Conclusions:
- PDOTS are a feasible and useful model for ex vivo profiling of CAR T cells.
- Targeting TBK1 is a promising strategy to enhance CAR T-cell efficacy against solid tumors.
- TBK1 inhibition may overcome both tumor-intrinsic and -extrinsic resistance mechanisms to CAR T-cell therapy.

