Rat thalamic α4β2 neuronal nicotinic acetylcholine receptor occupancy assay using LC–MS/MS

In vivo brain receptor occupancy has been the key assay in driving preclinical drug discovery program and there is a need to hasten this screening step. Radiolabeled methods, which are time consuming and expensive, are most widely employed to measure receptor occupancy. Thus we sought to develop and...

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Published inJournal of pharmacological and toxicological methods Vol. 65; no. 3; pp. 136 - 141
Main Authors Nirogi, Ramakrishna, Kandikere, Vishwottam, Bhyrapuneni, Gopinadh, Saralaya, Ramanatha, Muddana, Nageswararao, Ajjala, Devender Reddy
Format Journal Article
LanguageEnglish
Published United States Elsevier Inc 01.05.2012
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Summary:In vivo brain receptor occupancy has been the key assay in driving preclinical drug discovery program and there is a need to hasten this screening step. Radiolabeled methods, which are time consuming and expensive, are most widely employed to measure receptor occupancy. Thus we sought to develop and validate an alternative novel approach for measuring rat brain α4β2 neuronal nicotinic acetylcholine receptor occupancy using high performance liquid chromatography combined with tandem mass spectrometric detector (LC–MS/MS). Tracer optimization studies like in vivo dose and time dependent brain regional distribution; saturation binding and blocking study with nicotine and atropine were carried out for ZW-104 in rats. Assay validity was tested by pretreatment with potent α4β2 ligands; TC-1734, cytisine, ABT-089, ABT-594 and A-366833. Receptor occupancy along with plasma and brain exposure levels of α4β2 ligand was measured in the same set of animals. The regional distribution of ZW-104 in rat was found to be, thalamus>frontal cortex>striatum>hippocampus>cerebellum, and is in accordance with the distribution and regional densities of α4β2 nAChRs measured using [18F]ZW-104 in mice and baboons. Pretreatment with nicotine and α4β2 ligands dose dependently reduced the binding of ZW-104 in the thalamus. Non-nicotinic antagonist atropine did not alter the binding of ZW-104 in the thalamus, indicating the tracer specificity. The ED50 values calculated for occupancy were found to be 3.01, 0.83, 14.81, 0.001 and 0.11mg/kg for TC-1734, cytisine, ABT-089, ABT-594, and A-366833, respectively. These findings demonstrate that non-radiolabeled ZW-104 is suitable for determining the α4β2 receptor occupancy in rat brain. The LC–MS/MS based receptor occupancy assay is a rapid method and allows the generation of occupancy data along with the brain and plasma concentration in the same group of animals.
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ISSN:1056-8719
1873-488X
DOI:10.1016/j.vascn.2012.04.007