Preclinical evidence suggests that maternal fructose (FRU) exposure during pregnancy and lactation can shape offspring emotional development. It remains unclear whether isocaloric perinatal FRU exposure selectively alters distinct components of cocaine reinforcement, motivation, and reinstatement of cocaine-seeking behavior, and whether such effects are associated with mesostriatal receptor adaptations. Male and female Wistar rat offspring from dams fed a standard diet or an isocaloric FRU diet acquired intravenous cocaine self-administration (COC SA) under a stable fixed-ratio schedule of reinforcement across increasing doses (0.25–1.0 mg/kg/infusion), followed by a progressive-ratio (PR) test, extinction, and cue- and cocaine-induced reinstatement. Based on these behavioral findings, synaptosomal melanocortin-4 receptor (MC4R) and dopamine D1/D2 receptors (DRD1/DRD2) were assessed in the nucleus accumbens (NAc) and dorsal striatum (dSTR) of male offspring, in both cocaine-naïve and cocaine-experienced animals. Maternal FRU exposure produced sex-, dose-, and phase-dependent shifts in the session-dependent patterns of cocaine responding, without increasing cumulative cocaine intake. Notably, FRU-exposed males exhibited a lower PR breakpoint, indicating reduced effort-based motivation for cocaine. Extinction learning was preserved in both sexes, although maternal FRU exposure influenced the rate of response decline across sessions. Cue- and cocaine-induced reinstatements were not significantly altered by maternal diet. In cocaine-naïve males, maternal FRU exposure was associated with reduced DRD1 and increased MC4R in both regions, with no change in DRD2. Following COC SA and reinstatement, FRU-exposed males exhibited reduced DRD2 and a lower DRD2/DRD1 ratio in both regions, accompanied by a selective reduction of MC4R in dSTR. Together, these findings indicate that maternal isocaloric FRU exposure selectively shapes the motivational organization of COC SA, most evident under high-effort conditions, without altering reinstatement behavior, and is accompanied by experience-dependent remodeling of mesostriatal dopaminergic and melanocortin receptor profiles in male offspring. • Maternal fructose (FRU) exposure produces sex- and context-dependent modulation of cocaine-related behaviors. • Early-life FRU exposure selectively reduces effort-based cocaine motivation under a progressive ratio schedule in male offspring. • Perinatal FRU exposure does not increase cumulative cocaine intake or reinstatement of cocaine-seeking behaviors. • Maternal FRU programs mesostriatal dopaminergic (DRD1/DRD2) and melanocortin (MC4R) receptor adaptations.
Witek et al. (Wed,) studied this question.