Improved synthesis of SV2A targeting radiotracer [11C]UCB-J

Abstract Introduction [11C]UCB-J is a tracer developed for PET (positron emission tomography) that has high affinity towards synaptic vesicle glycoprotein 2A (SV2A), a protein believed to participate in the regulation of neurotransmitter release in neurons and endocrine cells. The localisation of SV...

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Main Authors: Johanna Rokka, Eva Schlein, Jonas Eriksson
Format: Article
Language:English
Published: SpringerOpen 2019-11-01
Series:EJNMMI Radiopharmacy and Chemistry
Subjects:
PET
Online Access:https://doi.org/10.1186/s41181-019-0080-5
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spelling doaj-c4e44a00f3134109bf2055367a24ecfa2020-11-29T12:02:27ZengSpringerOpenEJNMMI Radiopharmacy and Chemistry2365-421X2019-11-014111010.1186/s41181-019-0080-5Improved synthesis of SV2A targeting radiotracer [11C]UCB-JJohanna Rokka0Eva Schlein1Jonas Eriksson2Department of Public Health and Caring Sciences/Geriatrics, Uppsala UniversityDepartment of Public Health and Caring Sciences/Geriatrics, Uppsala UniversityDepartment of Medicinal Chemistry, Uppsala Biomedical Center, Uppsala UniversityAbstract Introduction [11C]UCB-J is a tracer developed for PET (positron emission tomography) that has high affinity towards synaptic vesicle glycoprotein 2A (SV2A), a protein believed to participate in the regulation of neurotransmitter release in neurons and endocrine cells. The localisation of SV2A in the synaptic terminals makes it a viable target for in vivo imaging of synaptic density in the brain. Several SV2A targeting compounds have been evaluated as PET tracers, including [11C]UCB-J, with the aim to facilitate studies of synaptic density in neurological diseases. The original two-step synthesis method failed in our hands to produce sufficient amounts of [11C]UCB-J, but served as an excellent starting point for further optimizations towards a high yielding and simplified one-step method. [11C]Methyl iodide was trapped in a clear THF-water solution containing the trifluoroborate substituted precursor, potassium carbonate and palladium complex. The resulting reaction mixture was heated at 70 °C for 4 min to produce [11C]UCB-J. Results After semi-preparative HPLC purification and reformulation in 10% ethanol/phosphate buffered saline, the product was obtained in 39 ± 5% radiochemical yield based on [11C]methyl iodide, corresponding to 1.8 ± 0.5 GBq at EOS. The radiochemical purity was > 99% and the molar activity was 390 ± 180 GBq/μmol at EOS. The product solution contained < 2 ppb palladium. Conclusions A robust and high yielding production method has been developed for [11C]UCB-J, suitable for both preclinical and clinical PET applications.https://doi.org/10.1186/s41181-019-0080-5[11C]UCB-JSVA2Synaptic densityPETSynaptic vesicle glycoproteinSuzuki-Miyaura coupling
collection DOAJ
language English
format Article
sources DOAJ
author Johanna Rokka
Eva Schlein
Jonas Eriksson
spellingShingle Johanna Rokka
Eva Schlein
Jonas Eriksson
Improved synthesis of SV2A targeting radiotracer [11C]UCB-J
EJNMMI Radiopharmacy and Chemistry
[11C]UCB-J
SVA2
Synaptic density
PET
Synaptic vesicle glycoprotein
Suzuki-Miyaura coupling
author_facet Johanna Rokka
Eva Schlein
Jonas Eriksson
author_sort Johanna Rokka
title Improved synthesis of SV2A targeting radiotracer [11C]UCB-J
title_short Improved synthesis of SV2A targeting radiotracer [11C]UCB-J
title_full Improved synthesis of SV2A targeting radiotracer [11C]UCB-J
title_fullStr Improved synthesis of SV2A targeting radiotracer [11C]UCB-J
title_full_unstemmed Improved synthesis of SV2A targeting radiotracer [11C]UCB-J
title_sort improved synthesis of sv2a targeting radiotracer [11c]ucb-j
publisher SpringerOpen
series EJNMMI Radiopharmacy and Chemistry
issn 2365-421X
publishDate 2019-11-01
description Abstract Introduction [11C]UCB-J is a tracer developed for PET (positron emission tomography) that has high affinity towards synaptic vesicle glycoprotein 2A (SV2A), a protein believed to participate in the regulation of neurotransmitter release in neurons and endocrine cells. The localisation of SV2A in the synaptic terminals makes it a viable target for in vivo imaging of synaptic density in the brain. Several SV2A targeting compounds have been evaluated as PET tracers, including [11C]UCB-J, with the aim to facilitate studies of synaptic density in neurological diseases. The original two-step synthesis method failed in our hands to produce sufficient amounts of [11C]UCB-J, but served as an excellent starting point for further optimizations towards a high yielding and simplified one-step method. [11C]Methyl iodide was trapped in a clear THF-water solution containing the trifluoroborate substituted precursor, potassium carbonate and palladium complex. The resulting reaction mixture was heated at 70 °C for 4 min to produce [11C]UCB-J. Results After semi-preparative HPLC purification and reformulation in 10% ethanol/phosphate buffered saline, the product was obtained in 39 ± 5% radiochemical yield based on [11C]methyl iodide, corresponding to 1.8 ± 0.5 GBq at EOS. The radiochemical purity was > 99% and the molar activity was 390 ± 180 GBq/μmol at EOS. The product solution contained < 2 ppb palladium. Conclusions A robust and high yielding production method has been developed for [11C]UCB-J, suitable for both preclinical and clinical PET applications.
topic [11C]UCB-J
SVA2
Synaptic density
PET
Synaptic vesicle glycoprotein
Suzuki-Miyaura coupling
url https://doi.org/10.1186/s41181-019-0080-5
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