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Clinical Trial Summary

This is a pilot/feasibility study. The study design represents a modification of current standard of care for Diffuse Intrinsic Pontine Glioma (DIPG) (5580 cGY involved field radiation), with the final two doses of radiation given at intervals during the vaccination phase of treatment.

Patients between the ages of 3 years and 25 years diagnosed with Diffuse Intrinsic Pontine Glioma (DIPG) will be allowed to participate in the trial. Study enrollment will occur after the completion of conformal radiation therapy to a dose of 5580 cGy and the post radiation therapy (RT) magnetic resonance imaging (MRI) shows no disease progression.

Three patients with glioblastoma multiforme, aged 16 years and older, will be entered first to confirm vaccine safety before enrolling DIPG patients.


Clinical Trial Description

Vaccine will be produced by the University Of Minnesota Molecular and Cellular Therapeutics Facility using the established brain tumor initiating cell (BTIC) cell line GBM-6 as the antigen source. Vaccine administration will begin at four weeks (week 10) following completion of radiation therapy and will be given every two weeks for four doses. At the time of the 1st and 3rd vaccinations, additional 180 cGy fractions will be delivered in single doses in a novel effort to induce NKG2D ligand upregulation (thereby "sensitizing" residual tumor to lymphocyte attack). The total radiation dose for each patient will be 5940 cGy. Subsequent vaccinations will be given every four weeks and will continue to a maximum of one year from study enrollment, by which time median survival will have passed based on historical data. Imaging will be obtained at study entry (post radiation therapy) and every eight weeks thereafter to eighteen months, after which time the interval between imaging follow-up episodes will be determined by the patient's clinical status. Imaging will include MRI of the brain using our current institutional brain tumor imaging protocol. Imaging will also include SPECT/MRI and perfusion MRI. FDG-PET imaging may be used in certain cases to differentiate tumor necrosis from progression. ;


Study Design


Related Conditions & MeSH terms


NCT number NCT01400672
Study type Interventional
Source Masonic Cancer Center, University of Minnesota
Contact
Status Terminated
Phase Phase 1
Start date July 17, 2012
Completion date October 8, 2018

See also
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