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In Vitro Tumor Cell Rechallenge For Predictive Evaluation of Chimeric Antigen Receptor T Cell Antitumor Function
Published on: February 27, 2019
IFNγ-induced antigen loss in chimeric antigen receptor-T cell therapy
Miao Cao1, Jasmine Alvarez1, Ramkrishna Mitra1
1Department of Pharmacology, Physiology, and Cancer Biology, Thomas Jefferson University, Philadelphia, PA, United States.
Introduction:
FDA-approved chimeric antigen receptor (CAR)-expressing T cell therapies (CARTs) have revolutionized the treatment of blood cancers. Yet none have been successful for "solid" tumors, such as colorectal cancer (CRC), the 2nd leading cause of cancer deaths. Guanylyl cyclase C (GUCY2C) has emerged as a clinical-stage target for CART and bispecific T-cell engager (BiTE) therapies in CRC. IFNγ has been canonically recognized as beneficial for the effector functions of T cells by enhancing antigen processing and HLA presentation and is essential for CART targeting of solid malignancies by inducing adhesion molecule expression for synapse stabilization.
Methods:
Using in vitro co-culture systems, conditioned media experiments, cytokine screening, pharmacologic inhibition, CRISPR-Cas9 knockout, and transcriptomic analyses, we investigated mechanisms of GUCY2C antigen loss in CRC cells exposed to activated CART cells.
Results:
We identified a novel antigen loss mechanism that limits the efficacy of CART in CRC, in which IFNγ secreted by activated CART cells causes bystander cancer cells to lose GUCY2C. This previously unexplored antigen loss mechanism is mediated through IFNγ receptor, JAK, and cellular stress signaling pathways. This mechanism of antigen loss can be rescued with anti-IFNγ neutralizing antibody, the JAK inhibitor ruxolitinib, or 4-phenylbutyrate (an ER stress reliever).
Discussion:
We revealed a negative effect of IFNγ that uniquely interferes with immunotherapies targeting native surface antigens, such as CART and BiTE therapies, which may be reversed by disrupting stress signaling pathways to enhance solid tumor CART and BiTE immunotherapies.
Insights
Interferon-gamma (IFNγ) secreted by CAR T-cell therapies causes colorectal cancer cells to lose the GUCY2C target antigen. This novel antigen loss mechanism can be overcome by blocking IFNγ signaling, improving CAR T-cell efficacy in solid tumors.
Area of Science:
- Immunology
- Oncology
- Cancer Therapy
Background:
- Chimeric antigen receptor (CAR)-expressing T cell therapies (CARTs) have transformed blood cancer treatment but are ineffective against solid tumors like colorectal cancer (CRC).
- Guanylyl cyclase C (GUCY2C) is a promising target for CRC immunotherapies, including CART and bispecific T-cell engager (BiTE) therapies.
- Interferon-gamma (IFNγ) is crucial for T cell effector functions and CAR T-cell efficacy in solid tumors.
Purpose of the Study:
- To investigate the mechanisms of GUCY2C antigen loss in CRC cells when exposed to activated CART cells.
- To identify novel strategies to overcome antigen loss and enhance the efficacy of immunotherapies targeting solid tumors.
Main Methods:
- Utilized in vitro co-culture systems, conditioned media experiments, cytokine screening, pharmacologic inhibition, CRISPR-Cas9 knockout, and transcriptomic analyses.
- Investigated the role of IFNγ and its downstream signaling pathways in mediating GUCY2C antigen loss.
Main Results:
- Identified a novel mechanism where IFNγ secreted by activated CART cells induces GUCY2C antigen loss in bystander CRC cells.
- This antigen loss is mediated by IFNγ receptor, JAK, and cellular stress signaling pathways.
- Demonstrated that blocking IFNγ signaling with neutralizing antibodies, JAK inhibitors (ruxolitinib), or ER stress relievers (4-phenylbutyrate) can rescue GUCY2C expression.
Conclusions:
- IFNγ negatively impacts immunotherapies targeting native surface antigens like CART and BiTE therapies by inducing antigen loss.
- Disrupting stress signaling pathways offers a promising strategy to reverse IFNγ-mediated antigen loss and enhance the effectiveness of solid tumor immunotherapies.
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