ArticleThe Journal of pharmacology and experimental therapeutics2020
The Novel CYP2A6 Inhibitor, DLCI-1, Decreases Nicotine Self-Administration in Mice.
Article in The Journal of pharmacology and experimental therapeutics, 2020. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 15 papers.
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Who cites it
15 citing papers in PubMed, 19 citations in OpenAlex.
- Targeting GPR3 as a novel approach for nicotine cessation therapeutic development.Neuropsychopharmacology : official publication of the American College of Neuropsychopharmacology · 2025Article
- Methoxsalen Inhibits the Acquisition of Nicotine Self-Administration: Attenuation by Cotinine Replacement in Male Rats.Nicotine & tobacco research : official journal of the Society for Research on Nicotine and Tobacco · 2024Article
- Cannabidiol as a potential cessation therapeutic: Effects on intravenous nicotine self-administration and withdrawal symptoms in mice.Neuropharmacology · 2024Article
- Impact of Adolescent Nicotine Exposure in Pre- and Post-natal Oxycodone Exposed Offspring.Journal of neuroimmune pharmacology : the official journal of the Society on NeuroImmune Pharmacology · 2023Article
- Pharmacokinetic differences in nicotine and nicotine salts mediate reinforcement-related behavior: an animal model study.Frontiers in neuroscience · 2023Article
- Beyond the label: current evidence and future directions for the interrelationship between electronic cigarettes and mental health.Frontiers in psychiatry · 2023Review
- Non-nicotine constituents in cigarette smoke extract enhance nicotine addiction through monoamine oxidase A inhibition.Frontiers in neuroscience · 2022Article
- Nicotine self-administration and ERK signaling are altered in RasGRF2 knockout mice.Frontiers in pharmacology · 2022Article
- Nicotine e-cigarette vapor inhalation and self-administration in a rodent model: Sex- and nicotine delivery-specific effects on metabolism and behavior.Addiction biology · 2021Article
- E-cigarette vape and lung ACE2 expression: Implications for coronavirus vulnerability.Environmental toxicology and pharmacology · 2021Article
- Potentiation of (α4)2(β2)3, but not (α4)3(β2)2, nicotinic acetylcholine receptors reduces nicotine self-administration and withdrawal symptoms.Neuropharmacology · 2021Article
- Self-Administration of Cotinine in Wistar Rats: Comparisons to Nicotine.The Journal of pharmacology and experimental therapeutics · 2021Article
- Multidimensional Intersection of Nicotine, Gene Expression, and Behavior.Frontiers in behavioral neuroscience · 2021Article
- Differential Expression Patterns of Lynx Proteins and Involvement of Lynx1 in Prepulse Inhibition.Frontiers in behavioral neuroscience · 2021Article
- Advances in smoking cessation pharmacotherapy: Non-nicotinic approaches in animal models.Neuropharmacology · 2020Review
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Authors and funding
9 authors at 1 institution in 1 country.
Funding
Abstract
During tobacco and e-cigarette use, nicotine is mainly metabolized in the human liver by cytochrome P450 2A6 (CYP2A6). Given that a slower CYP2A6 metabolism has been associated with less vulnerability to develop nicotine dependence, the current studies sought to validate a novel CYP2A6 inhibitor, (5-(4-ethylpyridin-3-yl)thiophen-2-yl)methanamine (DLCI-1), for its effects on intravenous nicotine self-administration. Male and female mice were trained to self-administer nicotine across daily sessions. Once stable responding was achieved, DLCI-1 or vehicle control was administered prior to nicotine sessions. We found that the lower 25 mg/kg and moderate 50 mg/kg doses of DLCI-1 induced a significant decrease in nicotine intake for both males and females. DLCI-1 was further shown to be more effective than a moderate 1 mg/kg dose of bupropion on reducing nicotine intake and did not exert the adverse behavioral effects found with a high 75 mg/kg dose of bupropion. Although mice treated with DLCI-1 self-administered significantly less nicotine, similar nicotine-mediated behavioral effects on locomotion were observed. Together, along with the analysis of nicotine metabolites during self-administration, these findings support the contention that blocking hepatic nicotine metabolism would allow for similar activation of nicotinic acetylcholine receptors at lower nicotine doses. Moreover, these effects of DLCI-1 were specific to nicotine self-administration, as DLCI-1 did not result in any behavioral changes during food self-administration. Taken together, these studies validate DLCI-1 as a novel compound to decrease nicotine consumption, which may thereby promote tobacco and nicotine product cessation. SIGNIFICANCE STATEMENT: Current pharmacological approaches for nicotine and tobacco cessation have only been able to achieve limited efficaciousness in promoting long-term abstinence. In this work, we characterize the effects of a novel compound, (5-(4-ethylpyridin-3-yl)thiophen-2-yl)methanamine (DLCI-1), which inhibits the main enzyme that metabolizes nicotine, and we report a significant decrease in intravenous nicotine self-administration in male and female mice, supporting the potential of DLCI-1 as a novel tobacco cessation pharmacotherapeutic.
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