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Updated: Apr 28, 2026

Generation of CAR T Cells for Adoptive Therapy in the Context of Glioblastoma Standard of Care
Published on: February 16, 2015
Therapeutic targeting of BCL-2 during CART cell production augments potency through non-apoptotic adaptive changes
Nada S Aboelella1, Ryan Park2, Erting Tang3
1Section of Hematology/Oncology, Department of Pediatrics, University of Chicago, Chicago, IL, USA. naboelella@bsd.uchicago.edu.
Abstract:
Targeting the BCL-2 family of proteins, key regulators of cellular apoptosis, with BH3-mimetics has been a major therapeutic goal to overcome cancer cell death resistance. However, beyond their canonical roles in apoptosis, BCL-2 proteins also play vital roles in cellular metabolism, signaling, and, increasingly, immune cell regulation. T cells in particular depend heavily on BCL-2 family proteins during ontogeny and maintenance, yet the broader consequences of pharmacologically inhibiting anti-apoptotic BCL-2 proteins in T cells remain underexplored. Our group has previously demonstrated that BCL-2 inhibition with the BH3-mimetic venetoclax induces gene expression and plasticity changes in murine T cells. Building upon this, we here investigate whether venetoclax-driven T cell reprogramming can be leveraged to enhance adoptive cell therapies, specifically using chimeric antigen receptor (CAR) T cells targeting CD19 as a model system. Our findings reveal that venetoclax treatment during ex vivo expansion of CART cells, prepared from T cells from healthy donors or chemotherapeutically pretreated patients, potently augments antitumor efficacy in a BCL-2-dependent manner. Transcriptomic and functional analyses demonstrate that venetoclax reprograms CART cells by regulating signaling pathways (e.g., IL-2/STAT5 and PI3K/AKT) and metabolic programs (e.g., OXPHOS and glycolysis), yielding CART cells with superior fitness and effector functionalities. These results highlight a novel therapeutic approach using anti-apoptotic drugging to enhance the performance of adoptive T cell therapies and support further examination of venetoclax and other BH3-mimetics as immune modulators.
Insights
BH3-mimetic venetoclax enhances chimeric antigen receptor (CAR) T cell therapy by reprogramming T cells, improving their anti-tumor efficacy. This approach leverages BCL-2 inhibition to boost CAR T cell fitness and function.
Area of Science:
- Immunology
- Cancer Biology
- Pharmacology
Background:
- BCL-2 proteins regulate apoptosis, metabolism, signaling, and immune cell function.
- T cells rely on BCL-2 family proteins for development and maintenance.
- Pharmacological inhibition of anti-apoptotic BCL-2 proteins in T cells is underexplored.
Purpose of the Study:
- Investigate venetoclax-driven T cell reprogramming to enhance adoptive cell therapies.
- Utilize chimeric antigen receptor (CAR) T cells targeting CD19 as a model system.
- Assess the impact of venetoclax on CAR T cell anti-tumor efficacy.
Main Methods:
- Treatment of CAR T cells with venetoclax during ex vivo expansion.
- Preparation of CAR T cells from healthy donors and pretreated patients.
- Transcriptomic and functional analyses to evaluate cellular changes.
Main Results:
- Venetoclax treatment potently augmented anti-tumor efficacy of CAR T cells in a BCL-2-dependent manner.
- Venetoclax reprogrammed CAR T cells by regulating key signaling and metabolic pathways.
- Enhanced CAR T cells exhibited superior fitness and effector functionalities.
Conclusions:
- Venetoclax can be used to enhance the performance of adoptive T cell therapies.
- BH3-mimetics like venetoclax represent a novel therapeutic approach to improve CAR T cell therapy.
- Further investigation of venetoclax and other BH3-mimetics as immune modulators is warranted.
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