Hypoxia-targeted Radiotherapy Boost for GBM
NCT07769918 · Status: NOT_YET_RECRUITING · Phase: NA · Type: INTERVENTIONAL · Enrollment: 25
Last updated 2026-08-18
Summary
The purpose of this study is to evaluate the use of dynamic contrast-enhanced MRI (DSC-MRI) to identify and target hypoxic tumor regions in glioblastoma (GBM). The study is divided into two phases: Phase 1 will focus on biologic validation in newly diagnosed GBM patients, while Phase 2 will assess the clinical implementation of DSC-MRI-guided radiotherapy in recurrent or postoperative GBM patients. The primary endpoints are the validation of DSC-MRI in identifying hypoxic regions and assessing the safety and efficacy of radiation therapy based on these findings.
Conditions
- Glioblastoma (GBM)
Interventions
- DEVICE
-
Dynamic susceptibility contrast MRI (DSC-MRI)
Non-invasively characterize tumor perfusion and derive imaging surrogates of hypoxia that inform tissue sampling (Phase 1) and radiotherapy planning (Phase 2). DSC-MRI is an advanced perfusion technique that acquires rapid, repeated gradient-echo echo-planar images during intravenous administration of a gadolinium-based contrast agent which will aid in the generation of parametric maps.
- OTHER
-
Cercare Medical Neurosuite (CMN) DSC-MRI-derived hypoxia maps
In Phase 1, these maps will guide neuro-navigation for intra-operative sampling of imaging-defined hypoxic and normoxic subregions to enable biologic and spatial transcriptomic validation. In Phase 2, DSC-MRI-derived hypoxia maps will be rigidly co-registered to planning MRI/CT datasets and imported into the treatment planning system to define hypoxic subvolumes eligible for a conformal radiotherapy boost, delivered with contemporary inverse-planned techniques while respecting all organ-at-risk constraints and standard-of-care dose limits.
- RADIATION
-
Varian TrueBeam
Radiotherapy will be delivered using the Varian TrueBeam system. All participants will receive dynamic susceptibility contrast (DSC)-MRI-informed radiotherapy incorporating an integrated boost to imaging-defined hypoxic tumor subvolumes. Radiotherapy will be delivered using inverse-planned intensity-modulated radiotherapy (IMRT) or volumetric-modulated arc therapy (VMAT), once daily, five fractions per week, with daily volumetric image guidance.
Sponsors & Collaborators
- lead OTHER
Principal Investigators
-
Jonathan So, MD, PhD · NYU Langone Health
Study Design
- Allocation
- NON_RANDOMIZED
- Purpose
- TREATMENT
- Masking
- NONE
- Model
- PARALLEL
Eligibility
- Min Age
- 18 Years
- Sex
- ALL
- Healthy Volunteers
- No
Timeline & Regulatory
- Start
- 2026-09-01
- Primary Completion
- 2028-09-01
- Completion
- 2029-06-01
- FDA Device
- Yes
Countries
- United States
Study Locations
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