An Open Label Dose Escalation Safety Study of Convection-Enhanced Delivery of IL13-PE38QQR in Patients With Progressive Pediatric Diffuse Infiltrating Brainstem Glioma and Supratentorial High-grade Glioma
Summary
Background: * Diffusely infiltrating pontine glioma (DIPG) or supratentorial high-grade glioma (HGG) are brain tumors that are often difficult to treat. It is very difficult to get chemotherapy agents to tumors in the brain, and researchers are looking for new methods to directly treat these types of cancer. * IL-13 is an immune molecule normally occurring in the body. Patients with gliomas appear to have significant amounts of the IL-13 receptors in their brain tumors. An experimental drug, IL13-PE38QQR, combines a bacteria toxin with human IL-13 to allow the toxin to enter and destroy the tumor cell. Early clinical studies suggest this treatment may prolong survival of patients with these types of brain tumors. * A technique called convection-enhanced delivery (CED) uses continuous pressure to push large molecules through the membranes protecting the brain to reach brain tumors. This technique can treat a tumor more directly than with traditional methods. Objectives: * To test the safety and feasibility of giving IL13-PE38QQR directly into regions of the brain in pediatric patients with DIPG or HGG, using CED. * To determine the most appropriate dose of IL13-PE38QQR to treat DIPG or HGG. * To determine the effects of this experimental therapy on the tumor. * To evaluate the physical changes in the tumor before and after the therapy. Eligibility: * Patients who are less than 18 years of age and have been diagnosed with either DIPG or with supratentorial HGG that has not responded well to standard treatments. Design: * Patients will be admitted to the hospital and will receive a magnetic resonance imaging (MRI) scan to show the exact location of the tumor. A small plastic tube will be inserted surgically into the tumor area, and IL13-PE38QQR and a MRI contrast agent (gadolinium DTPA) will be infused into the area. * MRI scans will monitor the process, and the tube will be removed after surgery. * Doses will be adjusted over the course of the study. * Patients who respond well to treatment may be eligible to receive a second infusion, no sooner than 4 weeks after the first treatment. * Post-treatment visits: Clinic visits 4 and 8 weeks after the treatment, and then every 8 weeks for up to 1 year. * Physical examination with neurological testing, an MRI, and standard blood and urine tests.
Timeline
- Start
- 2009-04-07
- Primary completion
- 2015-06-05
- Completion
- 2015-06-05
Publications
- Background Linabery AM, Ross JA. Trends in childhood cancer incidence in the U.S. (1992-2004). Cancer. 2008 Jan 15;112(2):416-32. doi: 10.1002/cncr.23169.
- Background Packer RJ, Sutton LN, Goldwein JW, Perilongo G, Bunin G, Ryan J, Cohen BH, D'Angio G, Kramer ED, Zimmerman RA, et al. Improved survival with the use of adjuvant chemotherapy in the treatment of medulloblastoma. J Neurosurg. 1991 Mar;74(3):433-40. doi: 10.3171/jns.1991.74.3.0433.
- Background Broniscer A, Gajjar A. Supratentorial high-grade astrocytoma and diffuse brainstem glioma: two challenges for the pediatric oncologist. Oncologist. 2004;9(2):197-206. doi: 10.1634/theoncologist.9-2-197.
- Robison NJ, Kieran MW. Diffuse intrinsic pontine glioma: a reassessment. J Neurooncol. 2014 Aug;119(1):7-15. doi: 10.1007/s11060-014-1448-8. Epub 2014 May 3.
- Chittiboina P, Heiss JD, Warren KE, Lonser RR. Magnetic resonance imaging properties of convective delivery in diffuse intrinsic pontine gliomas. J Neurosurg Pediatr. 2014 Mar;13(3):276-82. doi: 10.3171/2013.11.PEDS136. Epub 2014 Jan 10.
Drugs
| Evaluation | Drug | Modality | Dose | Route |
|---|---|---|---|---|
| Subject | cintredekin besudotox | Protein / enzyme biologic | 0.125 ug/ml | Other |
| Subject | cintredekin besudotox | Protein / enzyme biologic | 0.25 ug/ml | Other |
| Subject | cintredekin besudotox | Protein / enzyme biologic | 0.5 ug/ml | Other |