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Biology subjects

Kardash, T.

Publications and source records attributed to Kardash, T..

2 recordsLinked to original sources

Reduced Prefrontal PRDM2 Increases Stress-Induced Reinstatement Across Sexes via a dmPFC-Nucleus Accumbens Pathway

Stress is a major driver of relapse in alcohol use disorder (AUD), partly through stress-induced dysregulation of prefrontal cortex (PFC) circuits that govern executive control, craving regulation, and adaptive behavioral responses. Such dysfunction may be partly driven by epigenetic regulation of transcriptional programs that shape PFC responses to stress. Here, we investigated the role of the histone methyltransferase PRDM2 in stress-induced relapse to alcohol seeking. Analysis of postmortem human tissue showed that PRDM2 expression in the PFC was reduced in both men and women with AUD compared with control individuals. To examine the functional significance of this reduction in alcohol-related behaviors, we used viral-mediated knockdown of Prdm2 in the dorsomedial prefrontal cortex (dmPFC) of male and female rats. Prdm2 knockdown increased vulnerability to stress-induced reinstatement of alcohol seeking in both sexes, without altering pain sensitivity or being influenced by estrous cycle stage. To determine whether this effect was mediated through specific prefrontal output pathways, we selectively reduced Prdm2 expression in dmPFC neurons projecting to the nucleus accumbens (NAc). Projection-specific knockdown also increased stress-induced reinstatement of alcohol seeking in male and female rats in a shock intensity-dependent manner. Together, these findings suggest that reduced PRDM2 expression in the PFC contribute to stress-induced relapse-like behavior and identify the dmPFC-NAc projection as a circuit through which PRDM2 influences alcohol seeking.

neuroscience↗

Personality may influence behavioral response to cannabis

The effects of cannabis reported by users range from experiences of euphoria and anxiolytic effects to paranoia, anxiety, and increased risk of depression. Attempts to reconcile the apparent contradictions in user response have not been conclusive. Here, we utilized selectively-bred stress-resilient socially dominant (Dom) and stress-sensitive socially submissive (Sub) mice to elucidate this contradiction. Following short-term, repeated treatment with delta-9-tetrahydrocannabinol (THC) at two different doses (1.5 mg/kg and 15 mg/kg), Sub mice presented significant place-aversion in a Conditioned Place Preference paradigm at a high dose, whereas Dom mice displayed no place preference or aversion. Forced Swim test conducted after 6-week of washout period, revealed differential impact of the two THC doses depending upon behavioral pattern. Specifically, the low dose alleviated depressive-like behavior in Sub mice, while the high dose produced the opposite effect in Dom mice. Interestingly, corticosterone concentration in serum was elevated at the high dose regardless of the mice-population tested. We conclude here that differences in dominance behavior and stress vulnerability are involved in the regulation of cannabis response among users and should be considered when prescribing THC-containing medications to patients.

animal behavior and cognition↗