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PRO-GLIO: PROton Versus Photon Therapy in IDH-mutated Diffuse Grade II and III GLIOmas

PRO-GLIO: PROton Versus Photon Therapy in IDH-mutated Diffuse Grade II and III GLIOmas

Status
Recruiting
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05190172
Acronym
PRO-GLIO
Enrollment
225
Registered
2022-01-13
Start date
2022-01-14
Completion date
2045-12-31
Last updated
2026-05-01

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

Conditions

Diffuse Astrocytoma, IDH-Mutant, Oligodendroglioma, Oligodendroglioma, Anaplastic

Keywords

proton therapy, radiotherapy, IDH-mutated diffuse grade II astrocytoma, IDH-mutated diffuse grade III astrocytoma, oligodendroglioma

Brief summary

Proton therapy is a powerful tool enabling oncologists to spare normal tissue around the target for irradiation much better than what can be achieved with photon irradiation. The infiltrative nature of IDH-mutated grade II and III diffuse glioma, however, renders proton therapy a potential problem. A randomized controlled trial (RCT) is the only option when trying to ensure that chances of long-term survival are not impaired seeking to reduce unwanted late treatment effects. Non-inferiority of proton therapy compared to photon irradiation is the primary endpoint of the RCT. Hence, PRO-GLIO has two main objectives. First, PRO-GLIO will evaluate if proton therapy is safe in patients with IDH-mutated grade II and III diffuse glioma, showing that survival figures at 2 years from radiotherapy are not poorer in the proton arm than in the photon arm. Second, we want to find the true number of patients in need of rehabilitation in both arms, and evaluate if proton therapy conveys a higher QoL than photon irradiation at 2 years from radiotherapy.

Detailed description

PRO-GLIO aims at establishing proton irradiation as standard radiotherapy for IDH-positive diffuse glioma grade II and III patients. First, PRO-GLIO will show that proton therapy is safe, despite the infiltrative nature of these tumors. Second, the HRQOL and neuropsychological investigating part of PRO-GLIO will show that patients irradiated with protons have a better outcome in this regard than those irradiated with photons. Inclusion criteria are a diagnosis of grade II or grade III IDH-mutated diffuse glioma, good performance status, indication for radiotherapy and age between 18 and 65 years. Patients will be randomized to proton or photon radiotherapy and the study work will be divided in three work packages (WP). 1. In WP1, survival data will be the main focus, but the estimation of QALY will also be an important part - concentrating on differences between the two study arms. If there is truly no difference between the proton and photon radiotherapy on the probability of FIFS after two years, then 224 randomized patients (112 in each treatment group) are required to be 80% certain that the upper limit of a two-sided 95% confidence interval will exclude a difference in favor of the photon radiotherapy of more than 15%. This assumes a 0.8 probability of FIFS in the control arm, and no drop-outs. 2. In WP2, a battery of validated neuropsychological tests will be used to test the cognive abilities of the patients. All patients will be testes using an internet-based test (Cog-State) and 1/3 of patients will also have an in-depth neuropsychological evaluation. The two methods will be compared. 3. In WP3, a battery of patient-reported outcome measures (PROMS) questionnaires will be used to establish which subjective challenges this patient group struggles the most with.

Interventions

RADIATIONRadiation therapy

Radiation therapy either with protons or photons

Sponsors

Oslo University Hospital
Lead SponsorOTHER
Sahlgrenska University Hospital
CollaboratorOTHER
The Skandion Clinic
CollaboratorUNKNOWN
University Hospital of North Norway
CollaboratorOTHER
St. Olavs Hospital
CollaboratorOTHER
Haukeland University Hospital
CollaboratorOTHER
Lund University Hospital
CollaboratorOTHER
Ôrebro University Hospital
CollaboratorUNKNOWN
Uppsala University Hospital
CollaboratorOTHER
Karolinska University Hospital
CollaboratorOTHER
University Hospital, Umeå
CollaboratorOTHER
University Hospital, Linkoeping
CollaboratorOTHER
Ryhov County Hospital
CollaboratorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Intervention model description

* Experimental treatment arm with proton radiationtherapy * Standard treatment arm with photon radiationtherapy

Eligibility

Sex/Gender
ALL
Age
18 Years to 65 Years
Healthy volunteers
No

Inclusion criteria

1. Patients must be 18 to 65 years old on the day of consent. 2. IDH-mutated astrocytoma grade 2 or 3, or oligodendroglioma grade 2 or 3 according to WHO 2021. 3. Indication for radiotherapy. 4. WHO/ECOG performance status 0-2. 5. Ability to undergo MRI. 6. No significant contrast enhancing tumour (more than 1 or 2 punctate contrast enhancing foci) at the time of randomization. In recurrence patients, no contrast enhancement is allowed unless a new biopsy confirms the diagnosis of IDH-mutated astrocytoma grade 2 or 3, or oligodendroglioma grade 2 or 3. 7. Ability and willingness to travel to a proton therapy centre if randomized to the proton therapy arm. 8. Women of child-bearing potential (WOCBP) must agree to use an effective method of contraception during radiotherapy, chemotherapy and 1 year after completion of chemotherapy. Pregnancy is not an ineligibility criterium if radiotherapy is indicated and cannot be postponed 9. Ability to understand the information about the study and included treatment. 10. Signed informed consent. 11. Ability to speak and understand Norwegian or Swedish language.

Exclusion criteria

1. Prior treatment (except surgery) for diffuse glioma 2. Concomitant or previous malignancies. Exceptions are adequately treated basal cell carcinoma or squamous cell carcinoma of the skin, or in situ carcinoma of the cervix uteri with a follow-up time of at least 3 years, or other previous malignancy with a disease-free interval of at least 5 years 3. Known CDKN2A/B homozygous deletion 4. Presence of any medical, psychological, familial, sociological, or geographical characteristic that might impair patient compliance for study protocol procedures including follow-up 5. Body weight \> 150 kg

Design outcomes

Primary

MeasureTime frameDescription
First intervention free survival (FIFS) at 2 years2 yearsSurvival

Secondary

MeasureTime frameDescription
Total fatigue score assessed by the fatigue questionnaire developed by T. Chalder et al.2, 5, 10 and 15 yearsSymptom
Change in cognitive functioning (composite score from CANTAB-tests) at 2 years5 months and 2, 5, 10 and 15 yearsObjective examination
Overall survivalMedian and at 2, 5, 10 and 15 yearsSurvival
FIFSMedian, 5, 10 and 15 yearsSurvival
Progression-free survivalMedian and at 2, 5, 10 and 15 yearsSurvival
Change in neurological function as assessed by the NANO scale2, 5, 10 and 15 yearsObjective examination
Global cognitive impairment index2, 5, 10 and 15 yearsNeuropsychological endpoint
Rate of local, distant and combined recurrences2, 5, 10 and 15 yearsDisease development
Rate of patients without epileptic seizures5 months and 2, 5, 10 and 15 yearsSymptom
EORTC QLQ C30-based algorithm score2, 5, 10 and 15 yearsQuality of life
Incremental cost effectiveness ratio2, 5, 10 and 15 yearsHealth economics
Rate of adverse eventsAt 6 weeks, 3 and 5 months and 1 year, 2 , 5, 10 and 15 yearsToxicity
Costs in Norwegian kroner related to loss of production caused by disease and treatment2, 5, 10 and 15 yearsHealth economics

Countries

Norway

Contacts

CONTACTPetter Brandal, MD PhD
petter.brandal@ous-hf.no+47 22934000
CONTACTDanielle Hagen
carvan@ous-hf.no+4722934000
PRINCIPAL_INVESTIGATORPetter Brandal, MD PhD

Head of Neurooncology

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: May 2, 2026