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Deuterium Kinetic Isotope Effect Studies of a Potential in Vivo Metabolic Trapping Agent for Monoamine Oxidase B.

Authors :
Drake LR
Brooks AF
Mufarreh AJ
Pham JM
Koeppe RA
Shao X
Scott PJH
Kilbourn MR
Source :
ACS chemical neuroscience [ACS Chem Neurosci] 2018 Dec 19; Vol. 9 (12), pp. 3024-3027. Date of Electronic Publication: 2018 Aug 17.
Publication Year :
2018

Abstract

Visualizing the in vivo activity of monoamine oxidase B (MAO-B) is a valuable tool in the ongoing investigation of astrogliosis in neurodegeneration. Existing strategies for imaging changes in MAO enzyme expression or activity have utilized the irreversible suicide inhibitors or high-affinity reversibly binding inhibitors as positron emission tomography (PET) ligands. As an alternative approach, we developed 4-methyl-7-[(1-[ <superscript>11</superscript> C]methyl-1,2,3,6-tetrahydropyridin-4-yl)oxy]-2 H-chromen-2-one ([ <superscript>11</superscript> C]Cou) as a metabolic trapping agent for MAO-B. Trapping of [ <superscript>11</superscript> C]Cou in rhesus monkey brain demonstrated MAO-B selectivity. In this work, we have attempted to improve on the in vivo pharmacokinetics of [ <superscript>11</superscript> C]Cou by using the deuterium kinetic isotope effect (KIE) to slow the MAO-B-mediated oxidation step and thus reduce the rate of trapping in brain tissues. However, in vitro assays of enzyme kinetics and in vivo PET imaging of pharmacokinetics in primate brain showed no effects of deuterium substitution on the tetrahydropyridine ring of [ <superscript>11</superscript> C]Cou. The results are possibly due to masking of the KIE by a second step in the overall metabolism of the new imaging agent.

Details

Language :
English
ISSN :
1948-7193
Volume :
9
Issue :
12
Database :
MEDLINE
Journal :
ACS chemical neuroscience
Publication Type :
Academic Journal
Accession number :
30074755
Full Text :
https://doi.org/10.1021/acschemneuro.8b00219