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Published on: February 17, 2022
Both APRIL and antibody-fragment-based CAR T cells for myeloma induce BCMA downmodulation by trogocytosis and
Nicolas Camviel1,2, Benita Wolf1,2, Giancarlo Croce1,2,3
1Department of Oncology UNIL CHUV, Lausanne University Hospital (CHUV) and University of Lausanne (UNIL), Lausanne, Switzerland.
Background:
Chimeric antigen receptor (CAR) T cell therapy targeting B cell maturation antigen (BCMA) on multiple myeloma (MM) produces fast but not long-lasting responses. Reasons for treatment failure are poorly understood. CARs simultaneously targeting two antigens may represent an alternative. Here, we (1) designed and characterized novel A proliferation inducing ligand (APRIL) based dual-antigen targeting CARs, and (2) investigated mechanisms of resistance to CAR T cells with three different BCMA-binding moieties (APRIL, single-chain-variable-fragment, heavy-chain-only).
Methods:
Three new APRIL-CARs were designed and characterized. Human APRIL-CAR T cells were evaluated for their cytotoxic function in vitro and in vivo, for their polyfunctionality, immune synapse formation, memory, exhaustion phenotype and tonic signaling activity. To investigate resistance mechanisms, we analyzed BCMA levels and cellular localization and quantified CAR T cell-target cell interactions by live microscopy. Impact on pathway activation and tumor cell proliferation was assessed in vitro and in vivo.
Results:
APRIL-CAR T cells in a trimeric ligand binding conformation conferred fast but not sustained antitumor responses in vivo in mouse xenograft models. In vitro trimer-BBζ CAR T cells were more polyfunctional and formed stronger immune synapses than monomer-BBζ CAR T cells. After CAR T cell-myeloma cell contact, BCMA was rapidly downmodulated on target cells with all evaluated binding moieties. CAR T cells acquired BCMA by trogocytosis, and BCMA on MM cells was rapidly internalized. Since BCMA can be re-expressed during progression and persisting CAR T cells may not protect patients from relapse, we investigated whether non-functional CAR T cells play a role in tumor progression. While CAR T cell-MM cell interactions activated BCMA pathway, we did not find enhanced tumor growth in vitro or in vivo.
Conclusion:
Antitumor responses with APRIL-CAR T cells were fast but not sustained. Rapid BCMA downmodulation occurred independently of whether an APRIL or antibody-based binding moiety was used. BCMA internalization mostly contributed to this effect, but trogocytosis by CAR T cells was also observed. Our study sheds light on the mechanisms underlying CAR T cell failure in MM when targeting BCMA and can inform the development of improved treatment strategies.
Insights
New chimeric antigen receptor (CAR) T cell therapies targeting B cell maturation antigen (BCMA) show rapid but short-lived responses in multiple myeloma. BCMA downmodulation on cancer cells limits CAR T cell effectiveness, highlighting a key resistance mechanism.
Area of Science:
- Immunotherapy
- Oncology
- Cellular Biology
Background:
- Chimeric antigen receptor (CAR) T cell therapy targeting B cell maturation antigen (BCMA) in multiple myeloma (MM) yields initial responses but lacks durability.
- Mechanisms driving treatment failure in BCMA-targeted CAR T cell therapy for MM remain incompletely understood.
- Dual-antigen targeting CARs are being explored as a potential strategy to overcome resistance.
Purpose of the Study:
- To design and characterize novel A proliferation inducing ligand (APRIL)-based dual-antigen targeting CARs.
- To investigate the mechanisms of resistance to CAR T cells utilizing different BCMA-binding moieties (APRIL, single-chain-variable-fragment, heavy-chain-only).
Main Methods:
- Development and in vitro/in vivo characterization of three novel APRIL-CAR T cells.
- Assessment of CAR T cell cytotoxic function, polyfunctionality, immune synapse formation, memory, and exhaustion phenotypes.
- Analysis of BCMA levels, cellular localization, CAR T cell-target cell interactions, and pathway activation to elucidate resistance mechanisms.
Main Results:
- APRIL-CAR T cells demonstrated rapid but not sustained antitumor responses in mouse xenograft models.
- Trimeric APRIL-CAR T cells exhibited enhanced polyfunctionality and immune synapse formation compared to monomeric CAR T cells.
- Rapid BCMA downmodulation on target cells occurred post-CAR T cell interaction, mediated by BCMA internalization and trogocytosis, irrespective of the binding moiety.
Conclusions:
- CAR T cell antitumor responses against BCMA-expressing multiple myeloma are transient, primarily due to rapid BCMA downmodulation on target cells.
- BCMA internalization and CAR T cell-mediated trogocytosis are significant contributors to antigen loss and treatment failure.
- Understanding these resistance mechanisms is crucial for developing more effective CAR T cell-based therapies for multiple myeloma.
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