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Published on: February 24, 2023
Targeting MYCN upregulates L1CAM tumor antigen in MYCN-dysregulated neuroblastoma to increase CAR T cell efficacy
Laura Grunewald1, Lena Andersch2, Konstantin Helmsauer3
1Charité-Universitätsmedizin Berlin, corporate member of Freie Universität Berlin, Humboldt Universität zu Berlin, and Berlin Institute of Health, Department of Pediatric Oncology and Hematology, Augustenburger Platz 1, Berlin 13353, Germany; German Cancer Research Center (DKFZ), Im Neuenheimer Feld 280, Heidelberg 69120, Germany.
Abstract:
Current treatment protocols have limited success against MYCN-amplified neuroblastoma. Adoptive T cell therapy presents an innovative strategy to improve cure rates. However, L1CAM-targeting CAR T cells achieved only limited response against refractory/relapsed neuroblastoma so far. We investigated how oncogenic MYCN levels influence tumor cell response to CAR T cells, as one possible factor limiting clinical success. A MYCN-inducible neuroblastoma cell model was created. L1CAM-CAR T cell effector function was assessed (activation markers, cytokine release, tumor cytotoxicity) after coculture with the model or MYCN-amplified neuroblastoma cell lines. RNA sequencing datasets characterizing the model were compared to publicly available RNA/proteomic datasets. MYCN-directed L1CAM regulation was explored using public ChIP-sequencing datasets. Synergism between CAR T cells and the indirect MYCN inhibitor, MLN8237, was assessed in vitro using the Bliss model and in vivo in an immunocompromised mouse model. Inducing high MYCN levels in the neuroblastoma cell model reduced L1CAM expression and, consequently, L1CAM-CAR T cell effector function in vitro. Primary neuroblastomas possessing high MYCN levels expressed lower levels of both the L1CAM transcript and L1CAM tumor antigen. MLN8237 treatment restored L1CAM tumor expression and L1CAM-CAR T cell effector function. Combining MLN8237 and L1CAM-CAR T cell treatment synergistically enhanced MYCN-overexpressing tumor cytotoxicity in vitro and in vivo concomitant with severe in vivo toxicity. We identify target antigen downregulation as source of resistance against L1CAM-CAR T cells in MYCN-driven neuroblastoma cells. These data suggest that L1CAM-CAR T cell therapy combined with pharmacological MYCN inhibition may benefit patients with MYCN-amplified neuroblastoma.
Insights
High MYCN levels in neuroblastoma reduce L1CAM expression, limiting CAR T cell effectiveness. Inhibiting MYCN restores L1CAM and enhances CAR T cell therapy, suggesting a combined approach for MYCN-amplified neuroblastoma.
Area of Science:
- Immunology
- Oncology
- Genetics
Background:
- Current treatments for MYCN-amplified neuroblastoma have limited efficacy.
- Adoptive T cell therapy, specifically L1CAM-targeting CAR T cells, shows potential but faces challenges in refractory/relapsed cases.
Purpose of the Study:
- To investigate the impact of oncogenic MYCN levels on neuroblastoma cell response to CAR T cells.
- To explore strategies for overcoming resistance to L1CAM-CAR T cell therapy in MYCN-driven neuroblastoma.
Main Methods:
- Development of a MYCN-inducible neuroblastoma cell model.
- Assessment of L1CAM-CAR T cell effector function via co-culture assays.
- Analysis of RNA sequencing and public datasets (RNA/proteomic, ChIP-sequencing).
- Evaluation of in vitro and in vivo synergy between CAR T cells and the MYCN inhibitor MLN8237.
Main Results:
- Elevated MYCN levels decreased L1CAM expression and impaired L1CAM-CAR T cell function.
- Primary neuroblastomas with high MYCN showed reduced L1CAM transcript and antigen levels.
- MLN8237 treatment restored L1CAM expression and CAR T cell function.
- Combination therapy showed synergistic cytotoxicity but also significant in vivo toxicity.
Conclusions:
- Target antigen downregulation due to high MYCN is a resistance mechanism against L1CAM-CAR T cells.
- Combining L1CAM-CAR T cell therapy with MYCN inhibition may improve outcomes for MYCN-amplified neuroblastoma patients.
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