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FET-PET Directed Simultaneous In-field Boost for Primary GBM

Safety and Preliminary Efficacy of Hipofractionated Irradiation Based on Dual FET-PET in Patients With Primary Glioblastoma Multiforme With Concomitant Temozolomide

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04790097
Acronym
dualFETboost
Enrollment
17
Registered
2021-03-10
Start date
2017-02-21
Completion date
2020-12-30
Last updated
2021-05-06

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

Conditions

Glioblastoma Multiforme

Keywords

FET-PET, Boost, Glioblastoma, Dose-intesification, Dose-escalation

Brief summary

The combination of anatomical MRI examination with functional examination of tissue metabolic activity such as FET-PET (PET using the radiotracer - 18F-fluoro-ethyl-tyrosine) is a valuable tool to determine the actual tumor infiltration. The FET-PET examination can be performed using the dual-time point aqusition of FET for exact treatment planning. It has also been proven that using the dual FET-PET method, it is possible to obtain a precise image of the glioblastoma infiltration corresponding to the location and shape of the recurrence, and the tumor volumes in dual FET-PET are significantly larger than in MRI. Moreover, tumor defined in dual FET-PET is different than that of the tumor defined in single FET-PET acquisition. In the DualFETboosT trial we plan to assess the safety and preliminary efficacy of hypofractionated irraditon using simultaneous in-field boost directed on dual FET-PET based tumor volumes for treatment of primary glioblastoma multiforme with concomitant temozolomide.

Detailed description

In the case of the treatment of glioblastoma multiforme, as a standard, radiotherapy lasts 6 weeks, and the extension of treatment may adversely affect the tumor cells death, the patient's well-being and treatment costs (prolonged hospitalization). In turn, escalating the dose may increase the toxicity of radiation therapy by increasing DNA damage in healthy brain tissue. Using of dual FET-PET images for treatment planning allow to reduce volumes of healthy tissue irradiated. Dose-intensification proposed in the study using simultaneous in-field boost allows the dose escalation without increasing the overall treatment time. All patient will be treated with moderately hypofractionated radiotherapy (2.6 Gy per fraction) directed on PET positive volumes and conventional fractionation (60Gy in 30 fractions) on tumor margin.

Interventions

RADIATIONModerately Hypofractionated Radiotherapy using Simultaneous In-Field Boost

78Gy in 30 fractions on FET-PET based target volumes; 60Gy in 30 fractions on 2cm margin from MRI based target volumes; all patients will be treated with concomitant and adjuvant temozolomide

Sponsors

Prof. Franciszek Lukaszczyk Memorial Oncology Center
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
TREATMENT
Masking
NONE

Eligibility

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

Inclusion criteria

* Histopathological confirmation of glioblastoma (WHO grade IV) * Age between 18-75 years of age * General condition according to the Zubrod scale 0 or 2 * The results of the blood counts are normal * Liver enzyme parameters normal * The results of the parameters of the patient's functions are normal * Informed consent to participate in the category

Exclusion criteria

* Coexistence of another cancer * The location of the tumor in the area of the brain stem or cerebellum * Prior brain radiation therapy * No uptake visible in the FET-PET imaging * Contraindications for MRI * Contraindications to radiotherapy or chemotherapy * Pregnancy, lack of consent to the use of protection against pregnancy, puerperium * Alcohol addiction * Mental illness * Claustrophobia

Design outcomes

Primary

MeasureTime frameDescription
Overall survivalassessed up to 24 monthsFrom date of surgery until the date of death from any cause, percent of patient that are alive 1 and 2 years after surgery

Secondary

MeasureTime frameDescription
Progression Free Survivalup to 24 monthsfrom the date of surgery until progression of the disease or the date of death from any cause assessed
Objective responseup to 9 monthsaccording to Rano criteria; from the end of radiation therapy
Side effectsup to 6 monthsfrom the end of radiation therapy up to progression until progression of the disease or the date of death from any cause; CTCAE grade 3 or higher
Location of treatment failureup to 24 monthsfrom the end of radiation therapy up to progression until progression of the disease or the date of death from any cause; according to irradiation field
Radiation necrosisassessed up to 24 monthsfrom the end of radiation therapy up to progression until progression of the disease or the date of death from any cause; histopathological diagnosis of radiation necrosis

Other

MeasureTime frameDescription
FET predictive valueup to 24 monthsFrom date of surgery until the date of death from any cause, Correlation between FET uptake and survival

Countries

Poland

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026