PIXSIC, a pixelated β⁺-sensitive probe for radiopharmacological investigations in rat brain: binding studies with [¹⁸F]MPPF.

Purpose: The aim of this work was to demonstrate the pharmacokinetic potential of a wireless pixelated β(+)-sensitive probe (PIXSIC).Procedures: The binding of 2'-methoxyphenyl-(N-2'-pyridinyl)-p-[(18)F]fluoro-benzamidoethylpiperazine ([(18)F]MPPF), a 5-HT1A serotonin receptor radiopharmaceutical, w...

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Detalles Bibliográficos
Publicado en:Molecular Imaging & Biology Vol. 17; no. 2; pp. 163 - 168
Autores principales: Balasse, L, Maerk, J, Pain, F, Genoux, A, Fieux, S, Morel, C, Gisquet-Verrier, P, Zimmer, L, Lanièce, P
Formato: research Journal Article
Publicado: Springer Nature Apr2015
Acceso en línea:Ver este registro en EBSCOhost
Descripción
Sumario:Purpose: The aim of this work was to demonstrate the pharmacokinetic potential of a wireless pixelated β(+)-sensitive probe (PIXSIC).Procedures: The binding of 2'-methoxyphenyl-(N-2'-pyridinyl)-p-[(18)F]fluoro-benzamidoethylpiperazine ([(18)F]MPPF), a 5-HT1A serotonin receptor radiopharmaceutical, was measured in anesthetized rats and compared to microPET data. The effects of a 5-HT1A antagonist injection on in vivo [(18)F]MPPF binding were monitored by PIXSIC.Results: PIXSIC allowed differentiating the radioactive kinetics according to the location of its pixels in the hippocampus, cortex, corpus callosum, and cerebellum. The device accurately detected the changes in [(18)F]MPPF binding, after 5-HT1A antagonist blockade. The time-activity curves were reproducible and consistent with kinetics obtained simultaneously with a microPET camera.Conclusions: These results demonstrate the ability of the PIXSIC device to record reliably the binding of PET ligands, with a high spatiotemporal resolution in anesthetized rodents. These first in vivo results are a key stage on the path to its implementation in awake freely moving animals.