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Updated: Aug 22, 2025

A Murine Ommaya Xenograft Model to Study Direct-Targeted Therapy of Leptomeningeal Disease
Published on: January 29, 2021
Phase 1 study of intraventricular 131I-omburtamab targeting B7H3 (CD276)-expressing CNS malignancies
Kim Kramer1, Neeta Pandit-Taskar2, Brian H Kushner3
1Departments of Pediatrics, Memorial Sloan Kettering Cancer Center, 1275 York Avenue, Box 429, New York, NY, 10065, USA. kramerk@mskcc.org.
Background:
The prognosis for metastatic and recurrent tumors of the central nervous system (CNS) remains dismal, and the need for newer therapeutic targets and modalities is critical. The cell surface glycoprotein B7H3 is expressed on a range of solid tumors with a restricted expression on normal tissues. We hypothesized that compartmental radioimmunotherapy (cRIT) with the anti-B7H3 murine monoclonal antibody omburtamab injected intraventricularly could safely target CNS malignancies.
Patients And Methods:
We conducted a phase I trial of intraventricular 131I-omburtamab using a standard 3 + 3 design. Eligibility criteria included adequate cerebrospinal fluid (CSF) flow, no major organ toxicity, and for patients > dose level 6, availability of autologous stem cells. Patients initially received 74 MBq radioiodinated omburtamab to evaluate dosimetry and biodistribution followed by therapeutic 131I-omburtamab dose-escalated from 370 to 2960 MBq. Patients were monitored clinically and biochemically for toxicity graded using CTCAEv 3.0. Dosimetry was evaluated using serial CSF and blood sampling, and serial PET or gamma-camera scans. Patients could receive a second cycle in the absence of grade 3/4 non-hematologic toxicity or progressive disease.
Results:
Thirty-eight patients received 100 radioiodinated omburtamab injections. Diagnoses included metastatic neuroblastoma (n = 16) and other B7H3-expressing solid tumors (n = 22). Thirty-five patients received at least 1 cycle of treatment with both dosimetry and therapy doses. Acute toxicities included < grade 4 self-limited headache, vomiting or fever, and biochemical abnormalities. Grade 3/4 thrombocytopenia was the most common hematologic toxicity. Recommended phase 2 dose was 1850 MBq/injection. The median radiation dose to the CSF and blood by sampling was 1.01 and 0.04 mGy/MBq, respectively, showing a consistently high therapeutic advantage for CSF. Major organ exposure was well below maximum tolerated levels. In patients developing antidrug antibodies, blood clearance, and therefore therapeutic index, was significantly increased. In patients receiving cRIT for neuroblastoma, survival was markedly increased (median PFS 7.5 years) compared to historical data.
Conclusions:
cRIT with 131I-omburtamab is safe, has favorable dosimetry and may have a therapeutic benefit as adjuvant therapy for B7-H3-expressing leptomeningeal metastases.
Trial Registration:
clinicaltrials.gov NCT00089245, August 5, 2004.
Insights
Compartmental radioimmunotherapy (cRIT) using 131I-omburtamab shows promise for targeting B7-H3-expressing central nervous system (CNS) tumors. This approach is safe, has favorable dosimetry, and may improve survival in patients with neuroblastoma.
Area of Science:
- Oncology
- Radiology
- Immunotherapy
Background:
- Metastatic and recurrent central nervous system (CNS) tumors have a poor prognosis, necessitating novel therapeutic strategies.
- B7H3, a cell surface glycoprotein, is expressed on various solid tumors, making it a potential therapeutic target.
- Compartmental radioimmunotherapy (cRIT) offers a targeted approach for CNS malignancies.
Purpose of the Study:
- To evaluate the safety and efficacy of intraventricular cRIT with 131I-omburtamab targeting B7H3-expressing CNS tumors.
- To determine the optimal dose and assess the dosimetry and biodistribution of 131I-omburtamab in a Phase I trial.
Main Methods:
- A Phase I trial with a 3+3 design was conducted, administering intraventricular 131I-omburtamab.
- Dosimetry and biodistribution were assessed initially, followed by dose escalation from 370 to 2960 MBq.
- Patients were monitored for toxicity (CTCAEv 3.0), and serial sampling and imaging were used for dosimetry.
Main Results:
- Thirty-eight patients received 100 injections; 35 completed at least one treatment cycle.
- The recommended Phase 2 dose was 1850 MBq/injection, with manageable acute toxicities and thrombocytopenia as the main hematologic toxicity.
- Favorable CSF dosimetry (1.01 mGy/MBq) indicated a high therapeutic advantage, with major organ exposure below tolerated levels.
- Patients with neuroblastoma showed significantly improved survival (median PFS 7.5 years) compared to historical data.
Conclusions:
- Intraventricular cRIT with 131I-omburtamab is a safe and well-tolerated treatment for CNS malignancies.
- The therapy demonstrates favorable dosimetry, suggesting a significant therapeutic index for CNS targets.
- cRIT with 131I-omburtamab shows potential as an adjuvant therapy for B7-H3-expressing leptomeningeal metastases.
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