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Production of [(11)C]Carbon Labelled Flumazenil and L-Deprenyl Using the iMiDEV™ Automated Microfluidic Radiosynthesizer

In the last decade, microfluidic techniques have been explored in radiochemistry, and some of them have been implemented in preclinical production. However, these are not suitable and reliable for preparing different types of radiotracers or dose-on-demand production. A fully automated iMiDEV™ micro...

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Autores principales: Mallapura, Hemantha, Tanguy, Laurent, Långström, Bengt, Meunier, Ludovic Le, Halldin, Christer, Nag, Sangram
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9788284/
https://www.ncbi.nlm.nih.gov/pubmed/36557975
http://dx.doi.org/10.3390/molecules27248843
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author Mallapura, Hemantha
Tanguy, Laurent
Långström, Bengt
Meunier, Ludovic Le
Halldin, Christer
Nag, Sangram
author_facet Mallapura, Hemantha
Tanguy, Laurent
Långström, Bengt
Meunier, Ludovic Le
Halldin, Christer
Nag, Sangram
author_sort Mallapura, Hemantha
collection PubMed
description In the last decade, microfluidic techniques have been explored in radiochemistry, and some of them have been implemented in preclinical production. However, these are not suitable and reliable for preparing different types of radiotracers or dose-on-demand production. A fully automated iMiDEV™ microfluidic radiosynthesizer has been introduced and this study is aimed at using of the iMiDEV™ radiosynthesizer with a microfluidic cassette to produce [(11)C]flumazenil and [(11)C]L-deprenyl. These two are known PET radioligands for benzodiazepine receptors and monoamine oxidase-B (MAO-B), respectively. Methods were successfully developed to produce [(11)C]flumazenil and [(11)C]L-deprenyl using [(11)C]methyl iodide and [(11)C]methyl triflate, respectively. The final products 1644 ± 504 MBq (n = 7) and 533 ± 20 MBq (n = 3) of [(11)C]flumazenil and [(11)C]L-deprenyl were produced with radiochemical purities were over 98% and the molar activity for [(11)C]flumazenil and [(11)C]L-deprenyl was 1912 ± 552 GBq/µmol, and 1463 ± 439 GBq/µmol, respectively, at the end of synthesis. All the QC tests complied with the European Pharmacopeia. Different parameters, such as solvents, bases, methylating agents, precursor concentration, and different batches of cassettes, were explored to increase the radiochemical yield. Synthesis methods were developed using 3–5 times less precursor than conventional methods. The fully automated iMiDEV™ microfluidic radiosynthesizer was successfully applied to prepare [(11)C]flumazenil and [(11)C]L-deprenyl.
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spelling pubmed-97882842022-12-24 Production of [(11)C]Carbon Labelled Flumazenil and L-Deprenyl Using the iMiDEV™ Automated Microfluidic Radiosynthesizer Mallapura, Hemantha Tanguy, Laurent Långström, Bengt Meunier, Ludovic Le Halldin, Christer Nag, Sangram Molecules Article In the last decade, microfluidic techniques have been explored in radiochemistry, and some of them have been implemented in preclinical production. However, these are not suitable and reliable for preparing different types of radiotracers or dose-on-demand production. A fully automated iMiDEV™ microfluidic radiosynthesizer has been introduced and this study is aimed at using of the iMiDEV™ radiosynthesizer with a microfluidic cassette to produce [(11)C]flumazenil and [(11)C]L-deprenyl. These two are known PET radioligands for benzodiazepine receptors and monoamine oxidase-B (MAO-B), respectively. Methods were successfully developed to produce [(11)C]flumazenil and [(11)C]L-deprenyl using [(11)C]methyl iodide and [(11)C]methyl triflate, respectively. The final products 1644 ± 504 MBq (n = 7) and 533 ± 20 MBq (n = 3) of [(11)C]flumazenil and [(11)C]L-deprenyl were produced with radiochemical purities were over 98% and the molar activity for [(11)C]flumazenil and [(11)C]L-deprenyl was 1912 ± 552 GBq/µmol, and 1463 ± 439 GBq/µmol, respectively, at the end of synthesis. All the QC tests complied with the European Pharmacopeia. Different parameters, such as solvents, bases, methylating agents, precursor concentration, and different batches of cassettes, were explored to increase the radiochemical yield. Synthesis methods were developed using 3–5 times less precursor than conventional methods. The fully automated iMiDEV™ microfluidic radiosynthesizer was successfully applied to prepare [(11)C]flumazenil and [(11)C]L-deprenyl. MDPI 2022-12-13 /pmc/articles/PMC9788284/ /pubmed/36557975 http://dx.doi.org/10.3390/molecules27248843 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mallapura, Hemantha
Tanguy, Laurent
Långström, Bengt
Meunier, Ludovic Le
Halldin, Christer
Nag, Sangram
Production of [(11)C]Carbon Labelled Flumazenil and L-Deprenyl Using the iMiDEV™ Automated Microfluidic Radiosynthesizer
title Production of [(11)C]Carbon Labelled Flumazenil and L-Deprenyl Using the iMiDEV™ Automated Microfluidic Radiosynthesizer
title_full Production of [(11)C]Carbon Labelled Flumazenil and L-Deprenyl Using the iMiDEV™ Automated Microfluidic Radiosynthesizer
title_fullStr Production of [(11)C]Carbon Labelled Flumazenil and L-Deprenyl Using the iMiDEV™ Automated Microfluidic Radiosynthesizer
title_full_unstemmed Production of [(11)C]Carbon Labelled Flumazenil and L-Deprenyl Using the iMiDEV™ Automated Microfluidic Radiosynthesizer
title_short Production of [(11)C]Carbon Labelled Flumazenil and L-Deprenyl Using the iMiDEV™ Automated Microfluidic Radiosynthesizer
title_sort production of [(11)c]carbon labelled flumazenil and l-deprenyl using the imidev™ automated microfluidic radiosynthesizer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9788284/
https://www.ncbi.nlm.nih.gov/pubmed/36557975
http://dx.doi.org/10.3390/molecules27248843
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