Selective and regulated trapping of nicotinic receptor weak base ligands and relevance to smoking cessation.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 28718768.
- Also identified by DOI 10.7554/eLife.25651 and PMC identifier 5546804.
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Abstract
To better understand smoking cessation, we examined the actions of varenicline (Chantix) during long-term nicotine exposure. Varenicline reduced nicotine upregulation of α4β2-type nicotinic receptors (α4β2Rs) in live cells and neurons, but not for membrane preparations. Effects on upregulation depended on intracellular pH homeostasis and were not observed if acidic pH in intracellular compartments was neutralized. Varenicline was trapped as a weak base in acidic compartments and slowly released, blocking <sup>125</sup>I-epibatidine binding and desensitizing α4β2Rs. Epibatidine itself was trapped; <sup>125</sup>I-epibatidine slow release from acidic vesicles was directly measured and required the presence of α4β2Rs. Nicotine exposure increased epibatidine trapping by increasing the numbers of acidic vesicles containing α4β2Rs. We conclude that varenicline as a smoking cessation agent differs from nicotine through trapping in α4β2R-containing acidic vesicles that is selective and nicotine-regulated. Our results provide a new paradigm for how smoking cessation occurs and suggest how more effective smoking cessation reagents can be designed.
Medical subject headings
- Nicotinic Agonists
- Receptors, Nicotinic
- Smoking Cessation
- Varenicline