Wayne State University
Detroit, Michigan, 48201, United States
NCT Number: NCT02367482
In this research study, we will track the build-up of tryptophan, a radioactive tracer, in the brain using positron emission tomography (PET) scanning. Tryptophan, in its natural state, is an amino acid (one of the building blocks of proteins) that is normally present in the brain, and is used by the brain cells to create various other compounds. This process is altered in the presence of a brain tumor. By using a form of tryptophan marked with a small amount of radiation, we will be able to track this process during the course of the PET scan. This research will help determine if AMT PET is a useful method to recognize and differentiate between various types of brain tumors. In addition, to study the mechanisms of altered tryptophan uptake in the tumor and brain, we will also measure tryptophan levels and related molecules in your blood (obtained as a part of the PET procedure) and tumor tissue (in case you will have surgery to remove the tumor). This will help us to find new approaches to treat brain tumors in the future by altering abnormal tryptophan metabolism.
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Notify Me22 year and older
All sexes
Observational
Detroit, Michigan, 48201, United States
If you agree to take part in this research study, you will be asked to have:
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Time frame: 2-3 months
To measure interval changes of tumoral metabolism, blood flow, and metabolites (NAA, choline, creatine, lipid, lactate) using AMT-PET, perfusion MRI, and 1H-MRS, respectively, in patients with recurrent GBM treated with NovoTTF.
Time frame: 2-3 months
To evaluate if interval changes of tumoral tryptophan metabolism, perfusion, and/or metabolites as well as histopathologic features (e.g., blood vessel density) have a predictive value for progression-free and overall survival in patients treated with NovoTTF.
Wayne State University
Other
Tryptophan Metabolism in Human Brain Tumors: For Patients Whose Clinical Treatment Includes NovoTTF
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