Advances in the automated synthesis of 6-[18F]Fluoro-L-DOPA

Abstract The neurotracer 6-[18F] FDOPA has been, for many years, a powerful tool in PET imaging of neuropsychiatric diseases, movement disorders and brain malignancies. More recently, it also demonstrated good results in the diagnosis of other malignancies such as neuroendocrine tumours, pheochromoc...

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Main Authors: Ângela C. B. Neves, Ivanna Hrynchak, Inês Fonseca, Vítor H. P. Alves, Mariette M. Pereira, Amílcar Falcão, Antero J. Abrunhosa
Format: Article
Language:English
Published: SpringerOpen 2021-03-01
Series:EJNMMI Radiopharmacy and Chemistry
Subjects:
PET
Online Access:https://doi.org/10.1186/s41181-021-00126-z
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spelling doaj-1c01afc15ef04c6397a64225cdc1ab922021-03-11T11:14:35ZengSpringerOpenEJNMMI Radiopharmacy and Chemistry2365-421X2021-03-016111910.1186/s41181-021-00126-zAdvances in the automated synthesis of 6-[18F]Fluoro-L-DOPAÂngela C. B. Neves0Ivanna Hrynchak1Inês Fonseca2Vítor H. P. Alves3Mariette M. Pereira4Amílcar Falcão5Antero J. Abrunhosa6ICNAS/CIBIT — Institute for Nuclear Sciences Applied to Health, University of Coimbra, Pólo das Ciências da SaúdeICNAS/CIBIT — Institute for Nuclear Sciences Applied to Health, University of Coimbra, Pólo das Ciências da SaúdeICNAS/CIBIT — Institute for Nuclear Sciences Applied to Health, University of Coimbra, Pólo das Ciências da SaúdeICNAS/CIBIT — Institute for Nuclear Sciences Applied to Health, University of Coimbra, Pólo das Ciências da SaúdeCoimbra Chemistry Center, Chemistry Department, University of CoimbraICNAS/CIBIT — Institute for Nuclear Sciences Applied to Health, University of Coimbra, Pólo das Ciências da SaúdeICNAS/CIBIT — Institute for Nuclear Sciences Applied to Health, University of Coimbra, Pólo das Ciências da SaúdeAbstract The neurotracer 6-[18F] FDOPA has been, for many years, a powerful tool in PET imaging of neuropsychiatric diseases, movement disorders and brain malignancies. More recently, it also demonstrated good results in the diagnosis of other malignancies such as neuroendocrine tumours, pheochromocytoma or pancreatic adenocarcinoma. The multiple clinical applications of this tracer fostered a very strong interest in the development of new and improved methods for its radiosynthesis. The no-carrier-added nucleophilic 18F-fluorination process has gained increasing attention, in recent years, due to the high molar activities obtained, when compared with the other methods although the radiochemical yield remains low (17–30%). This led to the development of several nucleophilic synthetic processes in order to obtain the product with molar activity, radiochemical yield and enantiomeric purity suitable for human PET studies. Automation of the synthetic processes is crucial for routine clinical use and compliance with GMP requirements. Nevertheless, the complexity of the synthesis makes the production challenging, increasing the chance of failure in routine production. Thus, for large-scale clinical application and wider use of this radiopharmaceutical, progress in the automation of this complex radiosynthesis is of critical importance. This review summarizes the most recent developments of 6-[18F]FDOPA radiosynthesis and discusses the key issues regarding its automation for routine clinical use.https://doi.org/10.1186/s41181-021-00126-z6-[18F]FDOPAAutomated synthesisPETRadiochemistryNonproteinogenic amino acid
collection DOAJ
language English
format Article
sources DOAJ
author Ângela C. B. Neves
Ivanna Hrynchak
Inês Fonseca
Vítor H. P. Alves
Mariette M. Pereira
Amílcar Falcão
Antero J. Abrunhosa
spellingShingle Ângela C. B. Neves
Ivanna Hrynchak
Inês Fonseca
Vítor H. P. Alves
Mariette M. Pereira
Amílcar Falcão
Antero J. Abrunhosa
Advances in the automated synthesis of 6-[18F]Fluoro-L-DOPA
EJNMMI Radiopharmacy and Chemistry
6-[18F]FDOPA
Automated synthesis
PET
Radiochemistry
Nonproteinogenic amino acid
author_facet Ângela C. B. Neves
Ivanna Hrynchak
Inês Fonseca
Vítor H. P. Alves
Mariette M. Pereira
Amílcar Falcão
Antero J. Abrunhosa
author_sort Ângela C. B. Neves
title Advances in the automated synthesis of 6-[18F]Fluoro-L-DOPA
title_short Advances in the automated synthesis of 6-[18F]Fluoro-L-DOPA
title_full Advances in the automated synthesis of 6-[18F]Fluoro-L-DOPA
title_fullStr Advances in the automated synthesis of 6-[18F]Fluoro-L-DOPA
title_full_unstemmed Advances in the automated synthesis of 6-[18F]Fluoro-L-DOPA
title_sort advances in the automated synthesis of 6-[18f]fluoro-l-dopa
publisher SpringerOpen
series EJNMMI Radiopharmacy and Chemistry
issn 2365-421X
publishDate 2021-03-01
description Abstract The neurotracer 6-[18F] FDOPA has been, for many years, a powerful tool in PET imaging of neuropsychiatric diseases, movement disorders and brain malignancies. More recently, it also demonstrated good results in the diagnosis of other malignancies such as neuroendocrine tumours, pheochromocytoma or pancreatic adenocarcinoma. The multiple clinical applications of this tracer fostered a very strong interest in the development of new and improved methods for its radiosynthesis. The no-carrier-added nucleophilic 18F-fluorination process has gained increasing attention, in recent years, due to the high molar activities obtained, when compared with the other methods although the radiochemical yield remains low (17–30%). This led to the development of several nucleophilic synthetic processes in order to obtain the product with molar activity, radiochemical yield and enantiomeric purity suitable for human PET studies. Automation of the synthetic processes is crucial for routine clinical use and compliance with GMP requirements. Nevertheless, the complexity of the synthesis makes the production challenging, increasing the chance of failure in routine production. Thus, for large-scale clinical application and wider use of this radiopharmaceutical, progress in the automation of this complex radiosynthesis is of critical importance. This review summarizes the most recent developments of 6-[18F]FDOPA radiosynthesis and discusses the key issues regarding its automation for routine clinical use.
topic 6-[18F]FDOPA
Automated synthesis
PET
Radiochemistry
Nonproteinogenic amino acid
url https://doi.org/10.1186/s41181-021-00126-z
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