Martha Martínez-Degollado, Andrea C Medina, Paola C Bello-Medina, Roberto A Prado-Alcalá
Corticosterone (CORT) modulates aversive memory through glucocorticoid receptor signaling. Although classical models emphasize intracellular receptors and transcriptional mechanisms, glucocorticoids can also produce rapid, non-genomic effects through membrane-associated signaling. The dorsomedial striatum (DMS) is critical for goal-directed learning, but its contribution to the extinction of aversive memory remains unclear. Here, we investigated whether membrane-associated glucocorticoid signaling in the DMS modulates inhibitory avoidance (IA) consolidation and extinction as a function of learning strength. Immediately after IA training, rats received bilateral intra-DMS infusions of corticosterone conjugated to bovine serum albumin (CORT-BSA), a membrane-impermeable ligand commonly used to activate membrane-associated glucocorticoid signaling. In a dose-response experiment, post-training intra-DMS CORT-BSA enhanced IA retention, with maximal efficacy at an intermediate dose, consistent with an inverted-U function. Using this effective dose, we then examined extinction across training intensities. CORT-BSA increased resistance to extinction after low-intensity training (0.5 mA), produced a transient effect after moderate training (1.0 mA), and facilitated extinction after intense training (3.0 mA). These findings suggest that rapid membrane-associated glucocorticoid signaling in the DMS modulates the persistence of aversive memory as a function of learning strength, extending current models of striatal involvement in extinction.