Author/Authors :
Pasi, Francesca Department of Oncohaematology - Radiotherapy Unit - Fondazione IRCCS Policlinico San Matteo - Viale Golgi - Pavia, Italy , Giovanni Persico, Marco Department of Oncohaematology - Nuclear Medicine Unit - Fondazione IRCCS Policlinico San Matteo - Viale Golgi - Pavia, Italy , Eleonora Buroni, Federica Department of Oncohaematology - Nuclear Medicine Unit - Fondazione IRCCS Policlinico San Matteo - Viale Golgi - Pavia, Italy , Aprile, Carlo Department of Oncohaematology - Nuclear Medicine Unit - Fondazione IRCCS Policlinico San Matteo - Viale Golgi - Pavia, Italy , Hodolic, Marina Nuclear Medicine Research Department - IASON GmbH - Graz, Austria , Corbella, Franco Department of Oncohaematology - Radiotherapy Unit - Fondazione IRCCS Policlinico San Matteo - Viale Golgi - Pavia, Italy , Nano, Rosanna Department of Biology and Biotechnology “Lazzaro Spallanzani” - University of Pavia - Via Ferrata - Pavia, Italy , Facoetti, Angelica National Centre for Oncological Hadrontherapy (CNAO) - Via Campeggi - Pavia, Italy , Lodola, Lorenzo Department of Oncohaematology - Nuclear Medicine Unit - Fondazione IRCCS Policlinico San Matteo - Viale Golgi - Pavia, Italy
Abstract :
The differential diagnosis between recurrence of gliomas or brain metastases and this phenomenon is important in order to choose
the best therapy and predict the prognosis but is still a big problem for physicians. The new emerging MRI, CT, and PET diagnostic
modalities still lack sufficient accuracy. Radiolabeled choline and amino acids have been reported to show great tumor specificity.
We studied the uptake kinetics of [18F]fluoromethyl-choline (FCH) and O-(2-[18F]fluoroethyl)-L-tyrosine (FET) by the T98G
human glioblastoma cells from 20 to 120 min after irradiation either with photons at 2-10-20 Gy or with carbon ions at 2 Gy (at the
National Centre for Oncological Hadrontherapy (CNAO), Pavia, Italy). We also evaluated the cell death and morphology changes
induced by radiation treatment. Both FET and FCH are able to trace tumor behavior in terms of higher uptake for increased doses
of radiation treatment, due to the upregulation of cells attempts to repair nonlethal damage. Our data suggest that both FCH and
FET could be useful to analyze the metabolic pathways of glioblastoma cells before and after radiotherapy. Physicians will have to
consider the different kinetics pathways of uptake concerning the two radiopharmaceuticals.
Keywords :
18F-FET , Glioblastoma , 18F-FCH , T98G , Cell , Photons