Normalization of Prefrontal Network Dynamics Prevents Cognitive Impairments After Developmental Insult
Khalife, M. R.; Jasinski, P.; Abed Rabbo, K.; Ouardouz, M.; Mahoney, J. M.; Scott, R.; Hernan, A.
Show abstract
The neurodevelopmental period is highly sensitive; insults during this period impair neural network connectivity, causing lasting cognitive deficits associated with many neuropsychiatric disorders. Medial prefrontal cortex (mPFC) networks subserve flexible behavior, but the mechanisms underlying their disruption after developmental insults remain unclear. We used an early-life seizure (ELS) model to investigate how mPFC networks become impaired and tested whether adrenocorticotropic hormone (ACTH), a clinically relevant neuroprotective peptide, could restore network function. Using in-vivo single-unit recordings during baseline and fear extinction learning, we found ELS-induced dysfunction was characterized by reduced neuronal firing, rigid spike-timing, and weakened functional connectivity, all predicting impaired extinction learning. ACTH treatment prevented these deficits, preserving dynamic spike-timing, flexible connectivity, and network organization. Advanced graph neural network modeling identified neuronal features predictive of cognitive outcomes, revealing potential biomarkers broadly relevant to other developmental disorders. These findings highlight fundamental mechanisms of mPFC network dysfunction and emphasize the translational potential of targeting network dynamics to restore cognition in neurodevelopmental disorders.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Alterations of adult prefrontal circuits induced by early postnatal fluoxetine treatment mediated by 5-HT7 receptors. 95%
- A critical role for trkB signaling in the adult function of parvalbumin interneurons and prefrontal network dynamics 94%
- Scaling of ventral hippocampal activity during anxiety 94%
Similar papers in this journal
- p75 neurotrophin receptor in pre-adolescent prefrontal PV interneurons promotes cognitive flexibility in adult mice 95%
- Cumulative effects of social stress on reward-guided actions and prefrontal cortical activity 95%
- Transcriptomic Evaluation of Stress Vulnerability Network using Single Cell RNA-Seq in mouse Prefrontal Cortex 94%
Similar papers in this journal
- Learning Fast and Slow: Increased cortical plasticity leads to memory interference and enhanced hippocampal-cortical interactions 94%
- Time-Encoding Migrates from Prefrontal Cortex to Dorsal Striatum During Learning of a Self-Timed Response Duration Task 94%
- Natural forgetting reversibly modulates engram expression 94%
Similar papers in this journal
- Neurobehavioral precursors of compulsive cocaine-seeking in dual fronto-striatal circuits 94%
- Partial or complete loss of norepinephrine differentially alters contextual fear and catecholamine release dynamics in hippocampal CA1 94%
- Hyperexcitability in human MECP2 null neuronal networks manifests as calcium-dependent reverberating super bursts 94%
Similar papers in this journal
- Region-specific, maladaptive, gray matter myelination is associated with differential susceptibility to stress-induced behavior in rats and humans 94%
- Lost in translation: No effect of repeated optogenetic cortico-striatal stimulation on compulsivity in rats 94%
- Reduced Hippocampal Inhibition and Enhanced Autism-Epilepsy Comorbidity in Mice Lacking Neuropilin 2 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.