Environmental Enrichment Attenuates Fentanyl-Seeking Behavior and Protects Against Stress-Induced Reinstatement in Both Male and Female Rats
Higginbotham, J. A.; Dearman, J. J.; Maqbool, H.; Pujol, M.; Moron, J. A.
Show abstract
Environmental enrichment (EE) reduces vulnerability to multiple drugs of abuse, yet its impact on fentanyl use and relapse-like behavior remains unclear. Here, we tested whether long-term, non-social, object-based EE alters fentanyl self-administration, extinction, and stress-induced reinstatement in male and female rats. Rats were individually housed in either standard non-enriched (NE) conditions or in EE cages containing a rotating set of novel objects beginning at least three days prior to self-administration. EE did not impact acquisition of fentanyl self-administration but reduced fentanyl intake during maintenance of self-administration and reduced the persistence of drug-seeking in extinction. Following extinction, yohimbine robustly reinstated drug-seeking behavior in NE rats but reinstatement in EE rats was markedly attenuated, indicating reduced sensitivity to stress-induced relapse triggers. Circulating corticosterone levels were lower in EE rats across the experiment and were positively correlated with reinstatement responding, suggesting that enrichments protective effects may be mediated in part by reduced hypothalamic-pituitary-adrenal (HPA) axis activation. These findings demonstrate that object-based EE, even in the absence of social enrichment, is sufficient to blunt fentanyl use, facilitate extinction, and constrain stress-induced reinstatement. The results highlight the role of environmental context and stress regulation in fentanyl vulnerability and suggest that enrichment-inspired, non-social interventions may offer a scalable strategy to reduce opioid use and relapse risk. Significance StatementThis study demonstrates that long-term, object-based environmental enrichment in the absence of social peers is sufficient to reduce fentanyl intake and blunt stress-induced reinstatement in male and female rats. These findings identify a simple, scalable environmental intervention capable of dampening both drug use and vulnerability to relapse triggers. Given the prevalence of individuals exposed to periods of social isolation or with limited access to support, understanding how non-peer-based enrichment influences maladaptive opioid use and stress reactivity is of timely and translational importance. The ability of enrichment to reduce corticosterone, fentanyl consumption, and drug-cue reactivity highlights the importance of environmental context in shaping opioid misuse liability and implicates novel and practical avenues for relapse prevention
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