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Targeting GPC2 on Intraocular and CNS Metastatic Retinoblastomas with Local and Systemic Delivery of CAR T Cells
Guillem Pascual-Pasto1, Brendan McIntyre1, Anna M Giudice1
1Division of Oncology and Center for Childhood Cancer Research, Children's Hospital of Philadelphia, Philadelphia, Pennsylvania.
Purpose:
Retinoblastoma is the most common intraocular malignancy in children. Although new chemotherapeutic approaches have improved ocular salvage rates, novel therapies are required for patients with refractory intraocular and metastatic disease. Chimeric antigen receptor (CAR) T cells targeting glypican-2 (GPC2) are a potential new therapeutic strategy.
Experimental Design:
GPC2 expression and its regulation by the E2F1 transcription factor were studied in retinoblastoma patient samples and cellular models. In vitro, we performed functional studies comparing GPC2 CAR T cells with different costimulatory domains (4-1BB and CD28). In vivo, the efficacy of local and systemic administration of GPC2 CAR T cells was evaluated in intraocular and leptomeningeal human retinoblastoma xenograft models.
Results:
Retinoblastoma tumors, but not healthy retinal tissues, expressed cell surface GPC2, and this tumor-specific expression was driven by E2F1. GPC2-directed CARs with 4-1BB costimulation (GPC2.BBz) were superior to CARs with CD28 stimulatory domains (GPC2.28z), efficiently inducing retinoblastoma cell cytotoxicity and enhancing T-cell proliferation and polyfunctionality. In vivo, GPC2.BBz CARs had enhanced persistence, which led to significant tumor regression compared with either control CD19 or GPC2.28z CARs. In intraocular models, GPC2.BBz CAR T cells efficiently trafficked to tumor-bearing eyes after intravitreal or systemic infusions, significantly prolonging ocular survival. In central nervous system (CNS) retinoblastoma models, intraventricular or systemically administered GPC2.BBz CAR T cells were activated in retinoblastoma-involved CNS tissues, resulting in robust tumor regression with substantially extended overall mouse survival.
Conclusions:
GPC2-directed CAR T cells are effective against intraocular and CNS metastatic retinoblastomas.
Insights
Chimeric antigen receptor (CAR) T cells targeting glypican-2 (GPC2) show promise for treating retinoblastoma. GPC2-directed CAR T cells effectively reduced both intraocular and central nervous system tumors in preclinical models.
Area of Science:
- Oncology
- Immunotherapy
- Pediatric Cancers
Background:
- Retinoblastoma is the most common pediatric intraocular malignancy.
- Current chemotherapies have limitations for refractory and metastatic disease.
- Novel therapeutic strategies are needed.
Purpose of the Study:
- To investigate glypican-2 (GPC2) expression in retinoblastoma.
- To evaluate the efficacy of GPC2-targeted chimeric antigen receptor (CAR) T cells.
- To compare CAR T cells with different costimulatory domains (4-1BB vs. CD28).
Main Methods:
- Studied GPC2 expression and E2F1 regulation in retinoblastoma samples and models.
- Performed in vitro functional assays comparing GPC2 CAR T cells (GPC2.BBz vs. GPC2.28z).
- Assessed in vivo efficacy of local and systemic GPC2 CAR T cell administration in intraocular and CNS retinoblastoma xenograft models.
Main Results:
- Retinoblastoma tumors expressed cell surface GPC2, regulated by E2F1.
- GPC2 CAR T cells with 4-1BB costimulation (GPC2.BBz) demonstrated superior cytotoxicity, proliferation, and polyfunctionality compared to GPC2.28z.
- GPC2.BBz CAR T cells showed enhanced persistence and significant tumor regression in both intraocular and CNS models, prolonging survival.
Conclusions:
- GPC2-directed CAR T cells are a promising therapeutic strategy for retinoblastoma.
- GPC2.BBz CAR T cells exhibit potent anti-tumor activity against intraocular and CNS metastatic retinoblastoma.
- This approach offers a potential new treatment for refractory retinoblastoma.
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