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Bioorg Med Chem ; 20(9): 2889-96, 2012 May 01.
Article in English | MEDLINE | ID: mdl-22483590

ABSTRACT

The histamine H(3) receptor (H(3)R) plays a role in cognition and memory processes and is implicated in different neurological disorders, including Alzheimer's disease, schizophrenia, and narcolepsy. In vivo studies of the H(3)R occupancy using a radiolabeled PET tracer would be very useful for CNS drug discovery and development. We report here the radiosynthesis, in vitro and in vivo evaluation of a novel (18)F-labeled high-affinity H(3)R antagonist (18)F-ST889. The radiosynthesis was accomplished via nucleophilic substitution of the mesylate leaving group with a radiochemical yield of 8-20%, radiochemical purity >99%, and specific radioactivity > 65 GBq/µmol. (18)F-ST889 exhibited high in vivo stability and rather low lipophilicity (logD(7.4)=0.35 ± 0.09). In vitro autoradiography showed specific binding in H(3)R-rich brain regions such as striatum and cortex. However, in vivo PET imaging of the rat brain with (18)F-ST889 was not successful. Possible reasons are discussed.


Subject(s)
Histamine H3 Antagonists/chemical synthesis , Piperidines/chemical synthesis , Radiopharmaceuticals/chemical synthesis , Receptors, Histamine H3/chemistry , ATP Binding Cassette Transporter, Subfamily B, Member 1/metabolism , Animals , Brain/diagnostic imaging , Cell Line , Dogs , Drug Stability , Fluorine Radioisotopes/chemistry , Histamine H3 Antagonists/chemistry , Humans , Isotope Labeling , Male , Microsomes, Liver/metabolism , Piperidines/chemistry , Positron-Emission Tomography , Protein Binding , Radiopharmaceuticals/chemistry , Rats , Rats, Sprague-Dawley , Receptors, Histamine H3/metabolism
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