| Literature DB >> 23660705 |
Anat Maoz1, Martin J Hicks, Shankar Vallabhjosula, Michael Synan, Paresh J Kothari, Jonathan P Dyke, Douglas J Ballon, Stephen M Kaminsky, Bishnu P De, Jonathan B Rosenberg, Diana Martinez, George F Koob, Kim D Janda, Ronald G Crystal.
Abstract
Cocaine addiction is a major problem for which there is no approved pharmacotherapy. We have developed a vaccine to cocaine (dAd5GNE), based on the cocaine analog GNE linked to the capsid proteins of a serotype 5 adenovirus, designed to evoke anti-cocaine antibodies that sequester cocaine in the blood, preventing access to the CNS. To assess the efficacy of dAd5GNE in a large animal model, positron emission tomography (PET) and the radiotracer [(11)C]PE2I were used to measure cocaine occupancy of the dopamine transporter (DAT) in nonhuman primates. Repeat administration of dAd5GNE induced high anti-cocaine titers. Before vaccination, cocaine displaced PE2I from DAT in the caudate and putamen, resulting in 62±4% cocaine occupancy. In contrast, dAd5GNE-vaccinated animals showed reduced cocaine occupancy such that when anti-cocaine titers were >4 × 10(5), the cocaine occupancy was reduced to levels of <20%, significantly below the 47% threshold required to evoke the subjective 'high' reported in humans.Entities:
Mesh:
Substances:
Year: 2013 PMID: 23660705 PMCID: PMC3773666 DOI: 10.1038/npp.2013.114
Source DB: PubMed Journal: Neuropsychopharmacology ISSN: 0893-133X Impact factor: 7.853