The Abuse Potential of Novel Synthetic Phencyclidine Derivative 1-(1-(4-Fluorophenyl)Cyclohexyl)Piperidine (4'-F-PCP) in Rodents.
In Soo Ryu, Oc-Hee Kim, Young Eun Lee, Ji Sun Kim, Zhan-Hui Li, Tae Wan Kim, Ri-Na Lim, Young Ju Lee, Jae Hoon Cheong, Hee Jin Kim, Yong Sup Lee, Scott C Steffensen, Bong Hyo Lee, Joung-Wook Seo, Eun Young Jang
International journal of molecular sciences June 29, 2020 DOI: 10.3390/ijms21134631 via PubMed
Summary
AI-generated from the abstractThe designer drug 4'-F-PCP, a derivative of the dissociative anesthetic phencyclidine (PCP), shows a high potential for abuse. In rodents, a 10 mg/kg dose increased movement and rearing, and produced conditioned place preference, indicating rewarding effects. Intravenous self-administration of 1.0 mg/kg/infusion was robust, with a higher breakpoint under progressive ratio schedules, suggesting strong reinforcing properties. The drug altered dopamine transporter and D1 receptor expression in the nucleus accumbens and increased phosphorylated ERK, CREB, c-Fos, and FosB/ΔFosB, indicating activation of dopamine-related signaling pathways. These findings indicate that 4'-F-PCP has significant abuse liability.
Study at a glance
| Characteristics | Experimental study Peer reviewed |
|---|---|
| Population | Rodents (mice and rats) |
| Intervention | 4'-F-PCP |
| Dose | 10 mg/kg (intraperitoneal) for open-field and CPP; 1.0 mg/kg/infusion (intravenous) for self-administration |
| Duration | 2 h session (self-administration under fixed ratio), 6 h session (progressive ratio) |
| Keywords | Abuse potential Conditioned place preference Designer drugs Phencyclidine pcp derivatives Self-administration |
| Key finding | 4'-F-PCP has high abuse potential due to its psychomotor, rewarding, and reinforcing properties mediated by dopaminergic signaling in the nucleus accumbens. |
Abstract
The dissociative anesthetic phencyclidine (PCP) and PCP derivatives, including 4'-F-PCP, are illegally sold and abused worldwide for recreational and non-medical uses. The psychopharmacological properties and abuse potential of 4'-F-PCP have not been fully characterized. In this study, we evaluated the psychomotor, rewarding, and reinforcing properties of 4'-F-PCP using the open-field test, conditioned place preference (CPP), and self-administration paradigms in rodents. Using Western immunoblotting, we also investigated the expression of dopamine (DA)-related proteins and DA-receptor-mediated downstream signaling cascades in the nucleus accumbens (NAc) of 4'-F-PCP-self-administering rats. Intraperitoneal administration of 10 mg/kg 4'-F-PCP significantly increased locomotor and rearing activities and increased CPP in mice. Intravenous administration of 1.0 mg/kg/infusion of 4'-F-PCP significantly enhanced self-administration during a 2 h session under fixed ratio schedules, showed a higher breakpoint during a 6 h session under progressive ratio schedules of reinforcement, and significantly altered the expression of DA transporter and DA D1 receptor in the NAc of rats self-administering 1.0 mg/kg 4'-F-PCP. Additionally, the expression of phosphorylated (p) ERK, pCREB, c-Fos, and FosB/ΔFosB in the NAc was significantly enhanced by 1.0 mg/kg 4'-F-PCP self-administration. Taken together, these findings suggest that 4'-F-PCP has a high potential for abuse, given its robust psychomotor, rewarding, and reinforcing properties via activation of DAergic neurotransmission and the downstream signaling pathways in the NAc.