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Egana-Huguet, J.

Publications and source records attributed to Egana-Huguet, J..

3 recordsLinked to original sources

Sex-Dependent Modulation of Emotional and Cognitive Processes by Prefrontal CB1 Receptors

The medial Prefrontal Cortex (mPFC) participates in emotional regulation, decision-making and behavioural flexibility. Cannabinoid receptor 1 (CB1) is widely expressed in the mPFC, particularly in GABAergic neurons, where it modulates synaptic transmission, contributing to the mPFC excitation-inhibition balance. Alteration of GABAergic activity and CB1 levels is indeed part of the pathophysiology of many psychiatric disorders, including depression, anxiety, and schizophrenia. Interestingly, both CB1 and mood disorders display important sex differences. In this work, we study the role of CB1 receptors in prefrontal GABAergic interneurons in emotional and cognitive processes in a sex-dependent manner. To achieve this objective, we deleted CB1 from all mPFC neurons and the GABAergic population in adult CB1-flox male and female mice, and GABAergic neuronal activity was assessed via calcium imaging with fiber photometry. Global CB1 deletion in mPFC neurons, specifically in GABAergic cells, altered emotional but not cognitive processes, with opposite patterns. This impairment was sex- and task-dependent. While pan-neuronal CB1 deletion had an anxiolytic effect on females, GABAergic CB1 deletion had the same effect on male mice, linked to increased GABAergic neuronal activity. By contrast, fear conditioning was primarily affected in males with neuronal CB1 depletion and in females with receptor deletion in inhibitory neurons. GABAergic CB1 deletion potentiates females freezing response during acquisition and recall 24 hours later, and is associated with decreased inhibitory neuronal activity during the tone-shock association. In conclusion, mPFC GABAergic CB1 deletion is associated with an anxiolytic phenotype but also heightened responses to conditioned cues in a sex-dependent manner.

neuroscience↗

Astrocytic morphology in the Medial Habenula: sex differences and modulatory factors

The medial habenula (MHb) is an epithalamic structure involved in aversive processing and emotional regulation, notable for its marked cellular heterogeneity and high astrocyte density. This cellular composition suggests that astrocytes may play an important role in MHb structure and plasticity, potentially contributing to the regulation of emotional states. The aim of this study is to characterize sex-dependent astrocytic morphology in the MHb and determine how it is modulated by peripheral alterations and direct central manipulations. A high-fat diet (HFD) was used as a model of metabolic stress, and systemic lipopolysaccharide (LPS) administration was used to induce a peripheral inflammatory challenge. At the central level, a chemogenetic approach using Gi-DREADDs under the GFAP promoter allowed selective modulation of astrocytic intracellular signalling independently of peripheral influences. Preliminary results indicate sex-dependent morphological differences in MHb astrocytes across all these experimental conditions, supporting the idea that MHb astrocytes are sensitive to both peripheral and central disturbances and may represent a key cellular substrate linking body-brain interactions with emotional regulation.

neuroscience↗

NEUROGLIAL CB1 RECEPTORS CONTROL NAVIGATION STRATEGIES

Navigation and memory functions are essential for survival and are regulated by the hippocampus. These processes are tightly controlled, and one of the key modulators involved is the endocannabinoid system, particularly through the cannabinoid receptor type-1 (CB1). CB1 is widely expressed in various hippocampal cell types. While it is known that CB1 participates in memory processes, its specific roles in different cell types and how these roles may differ between sexes remain unclear. This study investigates how CB1 signaling in the hippocampus, in both, cell-type-specific and sex-dependent manner, contributes to navigation and memory. To this end, we selectively deleted CB1 receptors from neurons, CAMKII-expressing neurons, and astrocytes from the hippocampus of adult male and female mice. We then assessed its effect on a broad range of behaviors, including innate emotional responses, memory, navigation, and other hippocampus-related functions such as nesting. Deletion of CB1 in CAMKII-expressing neurons produced a pronounced effect in males, leading to increased anxiety and impairments in both reference and spatial memory. These mice also showed altered performance in the Barnes maze, relying less on spatial strategies. By contrast, females were less affected by this specific deletion. Interestingly, only deletion of CB1 from astrocytes led to spatial memory impairments in females, which also showed reduced LTP and a decreased reliance on spatial strategies in the Barnes maze. In conclusion, our findings show that neuronal CB1 receptors are critical for the spatial navigation strategy in males, while astrocytic CB1 receptors play a key role in memory processes both in males and females.

neuroscience↗