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Rahman, S. R. M. U.

Publications and source records attributed to Rahman, S. R. M. U..

2 recordsLinked to original sources

Impact of Sex on Heroin Intravenous Self-Administration by Heterogeneous Stock Rats

BackgroundIntravenous self-administration (IVSA) of opioids by rats has been shown frequently to exhibit no sex differences, in many cases a higher intake of females, and only rarely higher rates in males. A diversity of methodological parameters (opioid identity, training doses, rat strain, session duration) makes it difficult to identify consistent contributions to these outcomes. ObjectiveTo determine if Heterogeneous Stock (HS) rats derived from 8 founder strains differ by sex in the IVSA of opioids. MethodsMale and female Heterogeneous Stock (N=7-8 per sex) rats were permitted to self-administer heroin (20 {micro}g/kg/infusion) in 2 hour sessions under a Fixed Ratio 1 schedule of reinforcement. After acquisition, animals completed sessions in which different infusion doses of heroin (0, 15, 30, 60, 120 {micro}g/kg/infusion), oxycodone (0, 30, 60, 150, 300 {micro}g/kg/infusion) and fentanyl (0, 0.625, 1.25, 2.5, 5.0 {micro}g/kg/infusion) were assessed. Next, animals were evaluated on doses of heroin (15, 30, 60, 120 {micro}g/kg/infusion), oxycodone (30, 60, 150, 300 {micro}g/kg/infusion) and fentanyl (0.625, 1.25, 2.5, 5.0 {micro}g/kg/infusion) under a Progressive Ratio schedule. Anti-nociceptive effects of heroin (0.56-2.4 mg/kg, s.c.) were examined with a warm water tail-withdrawal assay. ResultsFemale HS rats consistently self-administered more infusions of opioids, including heroin during acquisition, all three opioids during FR-1 dose substitution and of oxycodone and fentanyl in the PR procedure. Male rats were moderately more sensitive to the anti-nociceptive effects of heroin. ConclusionsFemale rats drawn at random from a genetically diverse population self-administer opioids at higher rates than their male counterparts.

pharmacology and toxicology↗

Perinatal Fentanyl Exposure Drives Enduring Addiction Risk and Central Amygdala Gene Dysregulation

The use of fentanyl and other opioids during pregnancy is a pressing public health issue due to its association with Neonatal Opioid Withdrawal Syndrome (NOWS) and long-term neurobehavioral deficits. Human epidemiologic studies are confounded by both genetic and environmental factors that differ between exposed and unexposed children. We developed a novel rat model of perinatal fentanyl exposure to characterize NOWS symptoms and investigate enduring behavioral and molecular outcomes. Offspring born to fentanyl-exposed dams exhibited reduced survival, lower body weight, spontaneous withdrawal symptoms, and mechanical hypersensitivity. In adolescence, these rats displayed negative affect, while in adulthood, they showed increased fentanyl self-administration, heightened drug-seeking during reinstatement, and elevated corticosterone levels during withdrawal. To explore the molecular underpinnings of these physiological and behavioral outcomes, we conducted RNA-seq in the central amygdala of adult rats, revealing dysregulated pathways related to GPCR signaling, adaptive immune response and neurodevelopmental processes. These transcriptional changes provide insights into the mechanisms driving addiction vulnerability and stress-related behaviors following early fentanyl exposure. Our findings highlight the lasting impact of perinatal opioid exposure in an experimental system that avoids many of the confounds that plague studies in humans, underscoring the need for preclinical models to study NOWS and its long-term consequences. This model offers translational relevance for developing therapeutic strategies to mitigate NOWS and reduce neuropsychiatric risks associated with prenatal opioid exposure.

animal behavior and cognition↗