Completed

Randomized Metabolic Response Monitoring Trial in Patients With Suspected Recurrence of Glioblastoma F-DOPA PET/CT

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What is being tested

FDOPA PET/CT

Radiation
Who is being recruted

Astrocytoma+7

+ Neoplasms

+ Neoplasms by Histologic Type

From 18 to 99 Years
+5 Eligibility Criteria
See all eligibility criteria
How is the trial designed

Diagnostic Study

Interventional
Study Start: August 2012
See protocol details

Summary

Principal SponsorJonsson Comprehensive Cancer Center
Last updated: July 27, 2020
Sourced from a government-validated database.Claim as a partner

Study start date: August 22, 2012

Actual date on which the first participant was enrolled.

Malignant gliomas are aggressive primary brain tumors that almost always lead to rapid patient deterioration and death. Timely diagnosis of recurrent disease as well as accurate monitoring of therapeutic responses is critically important in glioblastoma patients. Despite introduction of new treatment approaches patient prognosis is poor with less than half of the patients being progression-free during the first 6 months after diagnosis of disease recurrence (6-month-progression-free survival rates of 46%). The current diagnostic standard of care for diagnosing and monitoring brain tumors is contrast-enhanced, multi-planar magnetic resonance imaging (MRI). However, the ability of MRI for early detection of disease recurrence or progression is limited. Moreover, determination of treatment responses is difficult since benign tissue changes after radiation and/or chemotherapy can have the appearance of tumor recurrence or progression on MRI. Positron emission tomography (PET) is an established imaging technique that utilizes small amounts of radioactivity attached to very minimal amounts of substances (tracers) that are injected via a hand or arm vein. These substances can track certain features of cancers that can be visualized by using the PET/CT scanner. For instance, a number of different PET-tracers have been used to study brain tumor metabolism and to detect primary or recurrent tumors. These include tracers of glucose (18F-FDG) and amino acid metabolism (e.g. 18F-DOPA). Metabolic imaging of brain tumors with amino acid analogues has advantages over 18F-FDG. Since FDG assess glucose metabolism and the normal brain consumes a lot of glucose it can be difficult to detect tumors against high glucose use of normal brain tissue. 18FDOPA has been successfully used clinically for many years. The advantage of 18F-DOPA is that normal brain tissue consumes very little 18F-DOPA. Thus, tumors can be seen easily against a low background activity. 18F-DOPA PET imaging detects brain tumors with a very high accuracy and 18F-DOPA imaging affects the management of 40% of patients. However, its impact on patient outcome defined as survival, costs, and/or quality of life has not been demonstrated. Randomized trials are needed to evaluate the impact of PET on patient management and outcome. We will determine this by randomizing patients with suspected recurrence of glioblastoma into those who are managed using conventional diagnostic imaging versus those who will receive conventional imaging plus 18F-DOPA PET. Randomization is like flipping a coin. Patients will have a 50% chance to undergo standard imaging or standard imaging combined with 18F-DOPA PET. Approximately 25-40% of the patients with suspected tumor recurrence will have pseudo-progression on MRI (i.e. the images suggest that there is tumor recurrence when there is in fact no recurrence). These patients will have correctly negative 18F-DOPA PET scans. In these patient initiation of treatment can be postponed. In contrast, patients with positive 18F-DOPA PET scans will undergo some kind of treatment at the discretion of the treating physician (radiation therapy, chemotherapy or surgery). We will find out whether the management and treatment change that is based on 18FDOPA PET affects the survival of patients and affects the costs of caring for the patients.

NCT01813877
Principal SponsorJonsson Comprehensive Cancer Center
Last updated: July 27, 2020
Sourced from a government-validated database.Claim as a partner

Protocol

This section provides details of the study plan, including how the study is designed and what the study is measuring.
Design Details

37 patients to be enrolled

Total number of participants that the clinical trial aims to recruit.

Diagnostic Study

Diagnostic studies focus on improving how we detect or confirm a disease. They test new tools or techniques that could provide faster or more accurate diagnoses.



Eligibility

Researchers look for people who fit a certain description, called eligibility criteria: person's general health condition or prior treatments.
Conditions
Criteria

Any sex

Biological sex of participants that are eligible to enroll.

From 18 to 99 Years

Range of ages for which participants are eligible to join.

Healthy volunteers not allowed

If individuals who are healthy and do not have the condition being studied can participate.

Conditions

Pathology

AstrocytomaNeoplasmsNeoplasms by Histologic TypeNeoplasms, Germ Cell and EmbryonalNeoplasms, Glandular and EpithelialNeoplasms, Nerve TissueNeuroectodermal TumorsNeoplasms, NeuroepithelialGlioblastomaGlioma

Criteria

2 inclusion criteria required to participate
Age 18-99 years

Suspected first recurrence of a glioblastoma tumor by clinical measures and/or MRI

3 exclusion criteria prevent from participating
Breast feeding/ Pregnancy

Primary diagnosis of a glioblastoma

Severe psychiatric illness

Study Plan

Find out more about all the medication administered in this study, their detailed description and what they involve.
Treatment Groups
Study Objectives

2 intervention groups are designated in this study

This study does not include a placebo group 

Treatment Groups

Group I

No Intervention

Group II

Experimental
All 18F-DOPA PET/CT studies will be interpreted qualitatively during a clinical readout session. Based on a previous study scans will be classified as positive if tumor regions defined on CT exhibited tracer uptake above the level of the contra-lateral caudate nucleus. Scans will be classified as negative if tumor 18F-FDOPA uptake is lower than that of the contra lateral caudate nucleus. Uptake at the level of the contra-lateral caudate will be considered equivocal for malignancy.

Study Objectives

Primary Objectives

Secondary Objectives

Study Centers

These are the hospitals, clinics, or research facilities where the trial is being conducted. You can find the location closest to you and its status.

This study has 1 location

UCLA

Los Angeles, United StatesOpen UCLA in Google Maps
CompletedOne Study Center