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D3-GPC2-Directed CAR T Cells Are Safe and Efficacious in Preclinical Models of Neuroblastoma and Small Cell Lung
Anna Maria Giudice1, Stephanie Matlaga1, Sydney L Roth1
1Division of Oncology and Center for Childhood Cancer Research, Children's Hospital of Philadelphia, Philadelphia, Pennsylvania.
Purpose:
We previously identified glypican 2 (GPC2) as a cell-surface MYCN-regulated neuroblastoma oncoprotein and developed a D3-GPC2 antibody that specifically binds a conformational, tumor-specific epitope conserved between mouse and human.
Experimental Design:
In this study, we sought to further validate GPC2 as an immunotherapeutic target and develop Investigational New Drug application-enabling data to support the clinical translation of D3-GPC2 chimeric antigen receptor (CAR) T cells.
Results:
Immunohistochemistry validated that GPC2 is widely expressed on human neuroblastomas, and flow cytometry showed high levels of cell-surface GPC2 on neuroblastoma cellular models. Second-generation D3-GPC2 CAR T cells with either a 4-1BB or CD28 co-stimulatory domain were selectively activated and induced potent neuroblastoma cell cytotoxicity in several complementary in vitro co-incubation assays. Conversely, no measurable cytotoxicity or D3-GPC2 CAR T-cell activation was observed in co-incubation studies with nine primary human normal tissue cell lines. Moreover, GPC2 CAR T cells induced significant regression of GPC2-expressing neuroblastoma xenografts. No GPC2 CAR-related toxicities were noted, including in comprehensive mouse necropsies performed after GPC2 CAR T-cell administration. Finally, to explore the potential broader clinical impact of GPC2 CAR T cells, we showed that they are also potently cytotoxic to preclinical models of GPC2-expressing small cell lung cancers.
Conclusions:
These data validate GPC2 as a bona fide CAR T-cell target in neuroblastoma and other cancers. The safety and preliminary efficacy of GPC2 CAR T cells are being tested in a first-in-human phase I clinical trial for children with relapsed/refractory neuroblastoma (NCT05650749).
Insights
Glypican 2 (GPC2) is a validated target for chimeric antigen receptor (CAR) T-cell therapy in neuroblastoma. D3-GPC2 CAR T cells show potent anti-tumor activity and safety in preclinical models, advancing to a clinical trial.
Area of Science:
- Oncology
- Immunotherapy
- Cell Biology
Background:
- Glypican 2 (GPC2) is a cell-surface oncoprotein regulated by MYCN in neuroblastoma.
- A D3-GPC2 antibody targets a conserved, tumor-specific epitope on GPC2.
Purpose of the Study:
- To validate GPC2 as an immunotherapeutic target.
- To generate data supporting clinical translation of D3-GPC2 chimeric antigen receptor (CAR) T cells.
Main Methods:
- Immunohistochemistry and flow cytometry to assess GPC2 expression.
- In vitro co-incubation assays to evaluate CAR T-cell cytotoxicity.
- In vivo xenograft studies to assess anti-tumor efficacy and safety.
- Assessment of GPC2 CAR T-cell activity in small cell lung cancer models.
Main Results:
- GPC2 is widely expressed on human neuroblastomas and neuroblastoma cell models.
- D3-GPC2 CAR T cells exhibited potent, selective cytotoxicity against neuroblastoma cells in vitro.
- No significant cytotoxicity was observed against normal human tissue cell lines.
- GPC2 CAR T cells demonstrated significant tumor regression in vivo with no observed toxicities.
- GPC2 CAR T cells were also cytotoxic to preclinical models of GPC2-expressing small cell lung cancer.
Conclusions:
- GPC2 is a validated CAR T-cell target for neuroblastoma and other cancers.
- D3-GPC2 CAR T cells show promising safety and efficacy.
- A Phase I clinical trial is evaluating D3-GPC2 CAR T cells in pediatric neuroblastoma.
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