Journal Article
Reduced GIRK expression in midbrain dopamine neurons during prolonged abstinence from fentanyl self-administration
Narges Pachenari; Amy L. Channell; Andrew J. Belilos; Samuel J. Dienel; Khaled Moussawi
Psychopharmacology · Vol. 242, Issue 7 · pp. 1653-1666 · 2025
Abstract
Rationale Despite decades of research and medical development, relapse to drug seeking continues to be a significant challenge in the treatment of substance use disorders. GABA B receptor (GABA B -R) agonists have been shown preclinically to inhibit relapse by acting on midbrain dopamine (DA) neurons and are sometimes used off-label for the treatment of alcohol use disorder. Studies in rodent models show reduced GABA B -R signaling in DA neurons after exposure to stimulants. Similarly, our recent data demonstrated reduced GABA B -R currents in DA neurons during prolonged abstinence from fentanyl vapor self-administration (SA). However, the mechanism of opioid-induced changes in GABA B -R currents is not well understood. In addition, GABA B -R agonists are plagued with a plethora of side effects limiting their potential clinical use. Objectives In this study we aimed to answer the following questions: first, can we use GABA B -R positive allosteric modulators (PAMs) to inhibit relapse to opioid seeking? Secondly, how do opioids result in reduced GABA B -R signaling during prolonged abstinence? Approach To this end, we tested the effects of a novel GABA B -R PAM (KK-92A) on reinstatement of drug seeking in a rat model of intravenous (IV) fentanyl SA. Using in situ hybridization with RNAscope, we examined the effects of opioids on mRNA levels of various genes involved in GABA B -R signaling, in two rodent models of opioid addiction including a rat model of IV fentanyl SA and a mouse model of fentanyl vapor SA. Results Our results show that KK-92A inhibits relapse to fentanyl but not sucrose-seeking in rats, and fentanyl SA results in reduced mRNA levels of the G protein-coupled inwardly rectifying potassium channel subtypes 2 and 3 (GIRK 2/3 ). Conclusion These findings suggest that PAMs like KK-92A are a potential therapeutic strategy for opioid use disorder and their effect is likely due to rectifying GABA B -R mediated inhibition of midbrain DA neurons, which is reduced after opioid SA due to reduced GIRK 2/3 expression.