Description Module

Description Module

The Description Module contains narrative descriptions of the clinical trial, including a brief summary and detailed description. These descriptions provide important information about the study's purpose, methodology, and key details in language accessible to both researchers and the general public.

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Description Module


Ignite Creation Date: 2025-12-25 @ 2:24 AM
Ignite Modification Date: 2025-12-25 @ 2:24 AM
NCT ID: NCT00996034
Brief Summary: This is a molecular imaging research study designed to examine how much nicotine gets into the brain before and after vaccination with NicVAX, a nicotine vaccine developed by Nabi Biopharmaceuticals. NicVAX (Nicotine Conjugate Vaccine) is an investigational vaccine designed as an aid to smoking cessation and long-term abstinence, as well as an aid to prevent relapses of a treated smoker. In this project we want to understand the degree to which NicVAX administration changes how much nicotine enters the brain in smokers.
Detailed Description: The purpose of the present study is to examine the occupancy of brain β2-containing nicotinic acetylcholine receptors (β2-nAChR) by nicotine both at baseline and following administration of a nicotine vaccine. The number of brain β2-nAChR and the amount of nicotine occupancy both before and after vaccination will be measured using the nicotinic agonist \[123I\]5-IA-85380 (\[123I\]5-IA) and single photon emission computed tomography (SPECT). \[123I\]5-IA will be administered using the bolus plus constant infusion paradigm to smokers abstinent for 4-9 days (time period necessary for nicotine and pharmacological active metabolites to clear from brain). Three baseline SPECT images will be obtained after equilibrium has been reached (\~6 hours into the \[123I\]5-IA infusion). Then, IV nicotine will be administered (0.5-1.5 mg/70 kg will be infused over 10 minutes). Following a series of 4 nicotine vaccine shots, the same procedure will be repeated for a second \[123I\]5-IA scan day. We hypothesize that occupancy of β2-nAChR will be significantly lower, and take longer to plateau, following nicotine vaccine administration.
Study: NCT00996034
Study Brief:
Protocol Section: NCT00996034