SAN 2026

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Cognition, Behavior, and Memory

Sex-specific epigenetic and molecular imprints in the prefrontal cortex following early-life stress

Jazmín Grillo Balboa1.
Ailén Alba Colapietro2.
Micaela Salvochea1.
Verónica Cantarelli3.
Marina Ponzio3.
María Eugenia Pallarés2.
Marta Cristina Antonelli2.
Mariela Chertoff1.

Presenting Author:

Jazmín

Grillo Balboa

jazmin.grillo28@gmail.com

Infant maltreatment is a major risk factor for the development of affective disorders. Using the Scarcity-Adversity Model (SAM), which limits nesting resources (PND 8–12), we previously showed that SAM-exposed dams display violent caregiving. In adulthood, male SAM offspring exhibit passive stress-coping and a blunted corticosterone response, while females show a more resilient phenotype. In this study, we explored the molecular underpinnings of these differences in the Prefrontal Cortex (PFC) and Amygdala (Amy). In male SAM adults, we observed a significant downregulation of Crh and Ppid, coupled with an upregulation of Nr3c1 in the PFC. Conversely, SAM females showed a specific increase in Bag1 expression, suggesting a potential compensatory mechanism. The most striking differences emerged in epigenetic regulators: male SAM rats showed decreased expression of Dnmt3a, Dnmt3b, and Tet1, while SAM females exhibited a coordinated upregulation of these three markers. Finally, functional connectivity analysis (c−Fos correlations) showed a strong negative correlation between the PFC and Amy in Control females that was lost in SAM females, potentially underlying the behavioral disinhibition observed in the Light-Dark Box. Together, our results suggest that infant maltreatment triggers divergent, sex-specific molecular programs, where females recruit epigenetic pathways that may confer resilience against early life adversity.