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Synthesis and Biological Evaluation of Thiophene-Based Cannabinoid Receptor Type 2 Radiotracers for PET Imaging
by
Mensah Ametamey, Simon
, Slavik, Roger
, Mu, Linjing
, Haider, Achi
, Müller Herde, Adrienne
, Ligresti, Alessia
, Weber, Markus
, Mugnaini, Claudia
, Schibli, Roger
in
Alzheimer's disease
/ Amyotrophic lateral sclerosis
/ Autoradiography
/ Brain research
/ Cannabinoid CB2 receptors
/ Cannabinoid receptor type 2
/ Central nervous system
/ Chemistry
/ Chromatography
/ Endocannabinoid system
/ Esters
/ High-performance liquid chromatography
/ Inflammation
/ Intermediates
/ Microglia
/ Neurodegeneration
/ Neurodegenerative diseases
/ Neurodegenerative disorders
/ Neuroimaging
/ Neuroinflammation
/ NMR
/ Nuclear magnetic resonance
/ Pain management
/ Physiology
/ Positron Emission 13 Tomography
/ Positron emission tomography
/ Psychiatry
/ Purification
/ Radioactive tracers
/ Spinal cord
/ Spleen
/ Thiophene-Based Structures
2016
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Synthesis and Biological Evaluation of Thiophene-Based Cannabinoid Receptor Type 2 Radiotracers for PET Imaging
by
Mensah Ametamey, Simon
, Slavik, Roger
, Mu, Linjing
, Haider, Achi
, Müller Herde, Adrienne
, Ligresti, Alessia
, Weber, Markus
, Mugnaini, Claudia
, Schibli, Roger
in
Alzheimer's disease
/ Amyotrophic lateral sclerosis
/ Autoradiography
/ Brain research
/ Cannabinoid CB2 receptors
/ Cannabinoid receptor type 2
/ Central nervous system
/ Chemistry
/ Chromatography
/ Endocannabinoid system
/ Esters
/ High-performance liquid chromatography
/ Inflammation
/ Intermediates
/ Microglia
/ Neurodegeneration
/ Neurodegenerative diseases
/ Neurodegenerative disorders
/ Neuroimaging
/ Neuroinflammation
/ NMR
/ Nuclear magnetic resonance
/ Pain management
/ Physiology
/ Positron Emission 13 Tomography
/ Positron emission tomography
/ Psychiatry
/ Purification
/ Radioactive tracers
/ Spinal cord
/ Spleen
/ Thiophene-Based Structures
2016
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Synthesis and Biological Evaluation of Thiophene-Based Cannabinoid Receptor Type 2 Radiotracers for PET Imaging
by
Mensah Ametamey, Simon
, Slavik, Roger
, Mu, Linjing
, Haider, Achi
, Müller Herde, Adrienne
, Ligresti, Alessia
, Weber, Markus
, Mugnaini, Claudia
, Schibli, Roger
in
Alzheimer's disease
/ Amyotrophic lateral sclerosis
/ Autoradiography
/ Brain research
/ Cannabinoid CB2 receptors
/ Cannabinoid receptor type 2
/ Central nervous system
/ Chemistry
/ Chromatography
/ Endocannabinoid system
/ Esters
/ High-performance liquid chromatography
/ Inflammation
/ Intermediates
/ Microglia
/ Neurodegeneration
/ Neurodegenerative diseases
/ Neurodegenerative disorders
/ Neuroimaging
/ Neuroinflammation
/ NMR
/ Nuclear magnetic resonance
/ Pain management
/ Physiology
/ Positron Emission 13 Tomography
/ Positron emission tomography
/ Psychiatry
/ Purification
/ Radioactive tracers
/ Spinal cord
/ Spleen
/ Thiophene-Based Structures
2016
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Synthesis and Biological Evaluation of Thiophene-Based Cannabinoid Receptor Type 2 Radiotracers for PET Imaging
Journal Article
Synthesis and Biological Evaluation of Thiophene-Based Cannabinoid Receptor Type 2 Radiotracers for PET Imaging
2016
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Overview
Over the past two decades, our understanding of the endocannabinoid system has greatly improved due to the wealth of results obtained from exploratory studies. Currently, two cannabinoid receptor subtypes have been well-characterized. The cannabinoid receptor type 1 (CB 1 ) is widely expressed in the central nervous system, while the levels of the cannabinoid receptor type 2 (CB 2 ) in the brain and spinal cord of healthy individuals are relatively low. However, recent studies demonstrated a CB 2 upregulation on activated microglia upon neuroinflammation, an indicator of neurodegeneration. Our research group aims to develop a suitable positron emission tomography (PET) tracer to visualize the CB 2 receptor in patients suffering from neurodegenerative diseases. Herein we report two novel thiophene-based 11 C-labeled PET ligands designated [ 11 C]AAT-015 and [ 11 C]AAT-778. The reference compounds were synthesized using Gewald reaction conditions to obtain the aminothiophene intermediates, followed by amide formation. Saponification of the esters provided their corresponding precursors. Binding affinity studies revealed K i -values of 3.3 ± 0.5 nM (CB 2 ) and 1.0 ± 0.2 μM (CB 1 ) for AAT-015. AAT-778 showed similar K i -values of 4.3 ± 0.7 nM (CB 2 ) and 1.1 ± 0.1 μM (CB 1 ). Radiosynthesis was carried out under basic conditions using [ 11 C]iodomethane as methylating agent. After semi-preparative HPLC purification both radiolabeled compounds were obtained in 99% radiochemical purity and the radiochemical yields ranged from 12 to 37%. Specific activity was between 96 and 449 GBq/μmol for both tracers. In order to demonstrate CB 2 specificity of [ 11 C]AAT-015 and [ 11 C]AAT-778, we carried out autoradiography studies using CB 2 -positive mouse/rat spleen tissues. The obtained results revealed unspecific binding in spleen tissue that was not blocked by an excess of CB 2 -specific ligand GW402833. For in vivo analysis, [ 11 C]AAT-015 was administered to healthy rats via tail-vein injection. Evaluation of the CB 2 -positive spleen, however, showed no accumulation of the radiotracer. Despite the promising in vitro binding affinities, specific binding of [ 11 C]AAT-015, and [ 11 C]AAT-778 could not be demonstrated.
Publisher
Frontiers Research Foundation,Frontiers Media S.A
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