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Brain Radiotherapy Imaging for High-grade Glioma Using Hypoxia Targeting Through Oxygen-Enhanced Response

Brain Radiotherapy Imaging for High-grade Glioma Using Hypoxia Targeting Through Oxygen-Enhanced Response

Status
Not yet recruiting
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT07670455
Acronym
BRIGHTER
Enrollment
25
Registered
2026-06-26
Start date
2026-09-01
Completion date
2028-10-31
Last updated
2026-06-30

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Brain Neoplasms, Adult, Glioblastoma (GBM), High Grade Gliomas, Hypoxia Brain

Keywords

Oxygen-enhanced MRI, OE-MRI, Functional MRI, Hypoxia imaging, Quantitative MRI, Tumour hypoxia

Brief summary

High-grade gliomas (HGGs) are the most common type of brain cancer in adults. Life expectancy for patients with HGGs is low. Radiotherapy aims to cure the tumour, but this is hard because HGGs are resistant to treatment. Among the possible causes of resistance may be tumour cells with low-oxygen levels (hypoxia). The investigators know that hypoxia reduces tumour sensitivity to radiotherapy. Using a special imaging technique called oxygen-enhanced MRI (OE-MRI), the investigators can try to identify areas of the tumour with hypoxia. The investigators could then give those areas a higher dose of radiotherapy. This might improve tumour control. This study aims to see if OE-MRI can find low-oxygen areas in HGGs. The study will also assess whether higher radiotherapy doses can be simulated in these regions. Project summary: 1. Set up the OE-MRI process at Leeds Cancer Centre (LCC). OE-MRI settings will be tested on healthy volunteer participants to ensure the images are as good as possible. 2. Participant Imaging. Patient participants with HGG will be recruited to take part. OE-MRI will be used to image participants during their treatment and track low-oxygen areas before treatment, halfway through treatment and 3 months after treatment has finished. 3. Dose Escalation Assessment. Computer programs will be used to design radiotherapy treatments to test if higher radiation doses to the tumour's low-oxygen areas can better control the cancer. This will help understand if this targeted approach has potential benefits. This is modelling and will not alter routine clinical patient participant management.

Interventions

DIAGNOSTIC_TESTOxygen-Enhanced MRI (OE-MRI)

Oxygen-enhanced magnetic resonance imaging (OE-MRI) is performed to assess tumour hypoxia. Participants undergo MRI scanning while breathing oxygen administered as a physiological stimulus to generate contrast related to tissue oxygenation. Imaging is conducted at multiple time points during standard treatment. The procedure is used for assessment only and does not alter clinical management.

Sponsors

The Leeds Teaching Hospitals NHS Trust
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
DIAGNOSTIC
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
Yes

Inclusion criteria

* ≥18yrs. * Participants able to communicate with staff and safely comply with the study procedures. * Participants to provide informed written consent.

Exclusion criteria

* Participants with any MRI contraindications including inability to lie flat in MRI scanner, claustrophobia and no foreign bodies, medical devices or other items which are considered an MRI contraindication. * Geographically remote patients unable to agree to imaging schedule. * Participants with illness or condition which means they cannot understand the requirements of the study. * Participants with cardiac or pulmonary disease that are unable to tolerate the flow of oxygen delivered via a mask. * Participants who have previously been treated with bleomycin (a chemotherapy used to treat some cancers including Hodgkin lymphoma and germ cell tumours). * Participants with contraindications to gadolinium-based contrast agent

Design outcomes

Primary

MeasureTime frameDescription
Quantification of tumour hypoxia using oxygen-enhanced MRI (OE-MRI)From enrolment to the 3 month post-radiotherapy follow-up imagingThis study aims to determine whether a special MRI- oxygen-enhanced magnetic resonance imaging (OE-MRI)- can effectively show regions of low oxygen in patients with aggressive brain tumours (high-grade glioma (HGG)), and whether this information can help doctors target radiotherapy more accurately and improve patient outcomes.

Contacts

CONTACTChristopher J. H. Pagett, MSc, MPhys
christopher.pagett@nhs.net+441132067969

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Jul 1, 2026