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Intracranial Cannula Implantation for Serial Locoregional Chimeric Antigen Receptor (CAR) T Cell Infusions in Mice
Published on: February 24, 2023
Multi-antigen-targeting T cells in pediatric central nervous system tumors: a phase 1 trial
Stephanie Gomez1,2, Rachel A DiCioccio1, Ashley E Geiger1
1Children's National Hospital, Washington, DC, USA.
Abstract:
Central nervous system (CNS) tumors are the deadliest cancers in children, highlighting the need for new therapies. The tumor-associated antigens (TAAs) WT1, PRAME and survivin are widely expressed by these tumors, and a manufacturing technique has been developed to target these intracellular TAAs using autologous, nongenetically engineered T cells. Here we therefore conducted ReMIND, an open-label, phase 1 adaptive dose-finding study to determine the safety/feasibility of autologous, systemically administered trivalent T cells targeting WT1, PRAME and survivin in children with CNS tumors. Eligible patients had newly diagnosed diffuse intrinsic pontine glioma without lymphodepletion (arm A, n = 16 enrolled, n = 11 infused) and relapsed/recurrent nonbrainstem CNS malignancies without (arm B, n = 28 enrolled, n = 18 infused) or with (arm C, n = 7 enrolled, n = 4 infused) lymphodepletion. Primary end points were safety, feasibility and maximum tolerated dose determination; secondary end points included preliminary efficacy and immunobiological correlates, including in vivo TAA-T persistence and systemic immune activation. Dose level 3 (8 × 107 cells per m2 per dose) was determined as the maximum tolerated dose. Treatment was well tolerated with fatigue and headache being the most common adverse events, although two possibly related serious adverse events of tumor swelling occurred. One grade 5 event in a patient with diffuse intrinsic pontine glioma with hydrocephalus, tumor edema and respiratory failure was categorized as a dose-limiting toxicity. Median overall survival for arm A was 13.7 months from diagnosis (range, 6.2-32.0) and median progression-free survival for arms B/C was 5.0 months from infusion (range, 0.5-51.6). Three patients in arms B/C are alive without disease at 31.8, 41.2 and 51.6 months without further treatment, including one complete response. This trial met safety/feasibility primary end points with some preliminary signals of efficacy. ClinicalTrials.gov registration: NCT03652545 .
Insights
This study explored a new T-cell therapy for pediatric central nervous system (CNS) tumors. The treatment targeting WT1, PRAME, and survivin showed safety and feasibility, with some promising efficacy signals in children with CNS cancers.
Area of Science:
- Pediatric Oncology
- Immunotherapy
- Cellular Therapy
Background:
- Central nervous system (CNS) tumors are the leading cause of cancer-related death in children.
- Tumor-associated antigens (TAAs) WT1, PRAME, and survivin are frequently expressed in pediatric CNS tumors.
- A novel approach involves using autologous, non-genetically engineered T cells to target these intracellular TAAs.
Purpose of the Study:
- To assess the safety and feasibility of systemically administered, autologous trivalent T cells targeting WT1, PRAME, and survivin in children with CNS tumors.
- To determine the maximum tolerated dose (MTD) of this T-cell therapy.
- To explore preliminary efficacy and immunobiological correlates of the treatment.
Main Methods:
- ReMIND study: an open-label, phase 1 adaptive dose-finding trial.
- Patients with newly diagnosed diffuse intrinsic pontine glioma (arm A) or relapsed/recurrent nonbrainstem CNS malignancies (arms B/C) were enrolled.
- Treated with autologous trivalent T cells targeting WT1, PRAME, and survivin, with or without lymphodepletion.
Main Results:
- Dose level 3 (8 × 10^7 cells/m^2/dose) was established as the MTD.
- The treatment was generally well-tolerated; fatigue and headache were the most common adverse events.
- One dose-limiting toxicity (Grade 5 event) occurred in a patient with diffuse intrinsic pontine glioma.
- Median overall survival in arm A was 13.7 months; median progression-free survival in arms B/C was 5.0 months.
- Three patients in arms B/C achieved long-term survival without further treatment, including one complete response.
Conclusions:
- Autologous trivalent T-cell therapy targeting WT1, PRAME, and survivin is safe and feasible in children with CNS tumors.
- The study met its primary safety and feasibility endpoints, with preliminary efficacy signals observed.
- Further investigation of this immunotherapy for pediatric CNS malignancies is warranted.
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