Literature DB >> 20869448

Evaluation of [(11)C]MRB for assessment of occupancy of norepinephrine transporters: Studies with atomoxetine in non-human primates.

Jean-Dominique Gallezot1, David Weinzimmer, Nabeel Nabulsi, Shu-Fei Lin, Krista Fowles, Christine Sandiego, Timothy J McCarthy, R Paul Maguire, Richard E Carson, Yu-Shin Ding.   

Abstract

[(11)C]MRB is one of the most promising radioligands used to measure brain norepinephrine transporters (NET) with positron emission tomography (PET). The objective of this study was to evaluate the suitability of [(11)C]MRB for drug occupancy studies of NET using atomoxetine (ATX), a NET uptake inhibitor used in the treatment of depression and attention-deficit hyperactivity disorder (ADHD). A second goal of the study was identification of a suitable reference region. Ten PET studies were performed in three anesthetized rhesus monkeys following an infusion of ATX or placebo. [(11)C]MRB arterial input functions and ATX plasma levels were also measured. A dose-dependent reduction of [(11)C]MRB volume of distribution was observed after correction for [(11)C]MRB plasma free fraction. ATX IC(50) was estimated to be 31 ± 10ng/mL plasma. This corresponds to an effective dose (ED(50)) of 0.13mg/kg, which is much lower than the therapeutic dose of ATX in ADHD (1.0-1.5mg/kg). [(11)C]MRB binding potential BP(ND) in the thalamus was estimated to be 1.8 ± 0.3. Defining a reference region for a NET radiotracer is challenging due to the widespread and relatively uniform distribution of NET in the brain. Three regions were evaluated for use as reference region: caudate, putamen and occipital cortex. Caudate was found to be the most suitable for preclinical drug occupancy studies in rhesus monkeys. The IC(50) estimate obtained using MRTM2 BP(ND) without arterial blood sampling was 21 ± 3ng/mL (using caudate as the reference region). This study demonstrated that [(11)C]MRB is suitable for drug occupancy studies of NET.
Copyright © 2010 Elsevier Inc. All rights reserved.

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Year:  2010        PMID: 20869448      PMCID: PMC3710586          DOI: 10.1016/j.neuroimage.2010.09.040

Source DB:  PubMed          Journal:  Neuroimage        ISSN: 1053-8119            Impact factor:   6.556


  37 in total

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Authors:  Edward L Mattiuz; G Douglas Ponsler; Robert J Barbuch; Paul G Wood; John H Mullen; Richard L Shugert; Qimin Li; William J Wheeler; Fengjiun Kuo; Preston C Conrad; John-Michael Sauer
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3.  Disposition and metabolic fate of atomoxetine hydrochloride: the role of CYP2D6 in human disposition and metabolism.

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4.  Noninvasive quantification of dopamine D2 receptors with iodine-123-IBF SPECT.

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Authors:  Alan A Wilson; David Patrick Johnson; David Mozley; Doug Hussey; Nathalie Ginovart; Jose Nobrega; Armando Garcia; Jeffery Meyer; Sylvain Houle
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8.  High-resolution imaging of brain 5-HT 1B receptors in the rhesus monkey using [11C]P943.

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3.  Ex vivo and in vivo evaluation of the norepinephrine transporter ligand [11C]MRB for brown adipose tissue imaging.

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4.  Disrupted brain functional networks in drug-naïve children with attention deficit hyperactivity disorder assessed using graph theory analysis.

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5.  Decreased norepinephrine transporter availability in obesity: Positron Emission Tomography imaging with (S,S)-[(11)C]O-methylreboxetine.

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6.  Differential involvement of brainstem noradrenergic and midbrain dopaminergic nuclei in cognitive control.

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7.  Further evaluation of [11C]MP-10 as a radiotracer for phosphodiesterase 10A: PET imaging study in rhesus monkeys and brain tissue metabolite analysis.

Authors:  Shu-Fei Lin; David Labaree; Ming-Kai Chen; Daniel Holden; Jean-Dominique Gallezot; Michael Kapinos; Jo-Ku Teng; Soheila Najafzadeh; Christophe Plisson; Eugenii A Rabiner; Roger N Gunn; Richard E Carson; Yiyun Huang
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8.  Radiosynthesis and validation of ¹⁸F-FP-CMT, a phenyltropane with superior properties for imaging the dopamine transporter in living brain.

Authors:  Paul Cumming; Simone Maschauer; Patrick J Riss; Nuska Tschammer; Stefanie K Fehler; Markus R Heinrich; Torsten Kuwert; Olaf Prante
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9.  Association of posttraumatic stress disorder with reduced in vivo norepinephrine transporter availability in the locus coeruleus.

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10.  Optimization of PET-MR registrations for nonhuman primates using mutual information measures: a Multi-Transform Method (MTM).

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