## Abstract 2β‐Carbomethoxy‐3β‐(4‐fluorophenyl)‐[N‐^11^C‐methyl]tropane, a potent inhibitor of dopamine transport, was prepared by N‐methylation of the appropriate nor‐methyl precursor in DMF with [^11^C]iodomethane. After derivatization of unreacted precursor with a long chain acyl halide, the rad
In vivo studies of acetylcholinesterase activity using a labeled substrate, N-[11C]methylpiperdin-4-yl propionate ([11C]PMP)
✍ Scribed by Michael R. Kilbourn; Scott E. Snyder; Phillip S. Sherman; David E. Kuhl
- Publisher
- John Wiley and Sons
- Year
- 1996
- Tongue
- English
- Weight
- 958 KB
- Volume
- 22
- Category
- Article
- ISSN
- 0887-4476
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✦ Synopsis
Two esters, N-["Clmethylpiperidyl acetate ([WIAMP) and N-["C]methylpiperidyl propionate PCIPMP), were synthesized in no-carrier-added forms and evaluated as in vivo substrates for brain acetylcholinesterase (AChE). After peripheral injection in mice, each ester showed rapid penetration into the brain and a regional retention of radioactivity (striatum > cortex, hippocampus > cerebellum) reflecting known levels of AChE activity in the brain. Regional brain distributions after [WIPMP administration showed better discrimination between regions of high, intermediate, and low AChE activities. Chromatographic analysis of blood and brain tissue extracts showed rapid and nearly complete hydrolysis of W!IPMP within 10 min after injection. For both [llC]AMP and [l'CIPMP, retention of radioactivity in all regions was reduced by pretreatment with diisopropylfluorophosphate (DFP), a specific irreversible AChE inhibitor. DFP treatment also significantly increased the proportions of unhydrolyzed ester in both blood and brain. Radioactivity localization in brain after peripheral injection was thus dependent on AChE-catalyzed hydrolysis to the hydrophilic product N-[W]methylpiperidinol. PET imaging of ["CIAMP or ['lC]PMP distributions in monkey brain showed clear accumulation of radioactivity in areas of highest AChE activity (striatum, cortex). These esters are thus in vivo substrates for brain AChE, with potential applications as in vivo imaging agents of enzyme action in the human brain. ["CIPMP, the ester with a slower rate of hydrolysis, appears to be the better candidate radiotracer for further development.
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