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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 abstract

The 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.

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