Compromised neuroplasticity in cigarette smokers under nicotine withdrawal is restituted by the nicotinic alpha(4)beta(2)-receptor partial agonist varenicline

2017 | Zeitschriftenartikel. Eine Publikation mit Affiliation zur Georg-August-Universität Göttingen.

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​Compromised neuroplasticity in cigarette smokers under nicotine withdrawal is restituted by the nicotinic alpha(4)beta(2)-receptor partial agonist varenicline​
Batsikadze, G.; Paulus, W. J.; Hasan, A.; Grundey, J.; Kuo, M.-F. & Nitsche, M. A.​ (2017) 
Scientific Reports7 art. 1387​.​ DOI: https://doi.org/10.1038/s41598-017-01428-6 

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Attribution 4.0 CC BY 4.0

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Autor(en)
Batsikadze, Giorgi; Paulus, Walter J.; Hasan, Alkomiet; Grundey, Jessica; Kuo, M.-F.; Nitsche, M. A.
Zusammenfassung
Nicotine modulates neuroplasticity and improves cognitive functions in animals and humans. In the brain of smoking individuals, calcium-dependent plasticity induced by non-invasive brain stimulation methods such as transcranial direct current stimulation (tDCS) and paired associative stimulation (PAS) is impaired by nicotine withdrawal, but partially re-established after nicotine re-administration. In order to investigate the underlying mechanism further, we tested the impact of the alpha(4)beta(2)-nicotinic receptor partial agonist varenicline on focal and non-focal plasticity in smokers during nicotine withdrawal, induced by PAS and tDCS, respectively. We administered low (0.3 mg) and high (1.0 mg) single doses of varenicline or placebo medication before stimulation over the left motor cortex of 20 healthy smokers under nicotine withdrawal. Motor cortex excitability was monitored by single-pulse transcranial magnetic stimulation-induced motor evoked potential amplitudes for 36 hours after plasticity induction. Stimulation-induced plasticity was absent under placebo medication, whereas it was present in all conditions under high dose. Low dose restituted only tDCS-induced non-focal plasticity, producing no significant impact on focal plasticity. High dose varenicline also prolonged inhibitory plasticity. These results are comparable to the impact of nicotine on withdrawal-related impaired plasticity in smokers and suggest that alpha(4)beta(2) nicotinic receptors are relevantly involved in plasticity deficits and restitution in smokers.
Erscheinungsdatum
2017
Status
published
Herausgeber
Nature Publishing Group
Zeitschrift
Scientific Reports 
ISSN
2045-2322
Förderer
DFG grant [NI 683/4-2]; Open Access Fund of the Leibniz Association

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