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Arcego, D. M.

Publications and source records attributed to Arcego, D. M..

2 recordsLinked to original sources

Insulin modulates mPFC gene expression and emotional behavior in a sex-specific manner following fetal growth restriction

Exposure to prenatal adversity (e.g., stress, malnutrition) is a major risk factor for lifelong vulnerability to neuropsychiatric and metabolic disorders, and alterations in the function of peripheral hormones in the brain are suggested as a possible and unexplored mechanism. Although insulin is well known for its peripheral metabolic functions, it also influences brain development and emotional regulation, particularly within the medial prefrontal cortex (mPFC). Here, we identify insulin signaling as a key mechanistic link between prenatal stress and long-term alterations in brain function and behavior. Using a validated rat model of prenatal adversity (prenatal food restriction, FR), we found that insulin administration selectively modulates gene expression in FR animals at P0, P21 and P90, affecting pathways involved in neurodevelopment and stress regulation, such as Wnt/{beta}-catenin signaling. Targeted insulin infusion into the mPFC of adult animals reversed behavioral phenotypes induced by FR in a sex- and context-dependent manner, decreasing emotional reactivity to environmental cues. These findings offer novel insight into the neurodevelopmental role of insulin and suggest that insulin signaling may serve as a therapeutic target to mitigate the long-term brain and behavioral consequences of prenatal adversity.

genomics↗

Effects of prenatal maternal immune activation and exposure to circadian disruption during adolescence: exploring the two-hit model of neurodevelopmental disorders

BackgroundAround 80% of individuals with neurodevelopmental disorders (NDDs) such as schizophrenia and autism spectrum disorders experience disruptions in sleep/circadian rhythms. We explored whether prenatal infection, an established risk factor for NDDs, and environmental circadian disruption synergistically induced sex-specific deficits in mice. MethodsA maternal immune activation (MIA) protocol was used by injecting pregnant mice (at E9.5) with a viral mimic poly IC or saline. Then, juvenile/adolescent offspring (3-7 weeks old) were subjected to either standard lighting (12:12LD) or constant light (LL). ResultsWe found interactions of the two factors on behaviors related to cognition, anxiety, and sociability. Also, poly IC exposure led to a more activated profile of hippocampal microglia in males only, while LL diminished these effects. Using RNA sequencing in the dorsal hippocampus, we found that poly IC exposure led to many differentially expressed genes in males (but not females), and fewer differentially expressed genes were observed after LL exposure. Using the WGCNA analysis, we found several significant gene modules positively associated with poly IC (in comparison to saline exposure) and LL (in comparison to LD exposure) in males, and less so in females. Interestingly, many of the identified hub bottleneck genes were homologous to human genes associated with both sleep/circadian rhythms and neurodevelopmental disorders as identified by GWA studies. ConclusionsOur work demonstrates that in a mouse model of prenatal infection, disruptions in circadian rhythms induced by LL play a role in modulating the effects of MIA at behavioral, cellular, and molecular levels.

neuroscience↗