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Medina-Rodriguez, L.

Publications and source records attributed to Medina-Rodriguez, L..

2 recordsLinked to original sources

Integrated 5-HT2A-TrkB and G protein signaling in serotonergic psychedelic responses

Serotonergic psychedelics have attracted considerable interest as promising therapeutic agents. However, the molecular mechanisms linking their acute hallucinogenic-like effects to longer-lasting neuroplastic responses remain incompletely understood, partly because of the scarcity of native neural models suitable for mechanistic studies. Here, we developed a neural stem cell-derived in vitro model capable of differentiating into neuronal and glial lineages and, after characterization, used it to investigate the molecular pharmacology of serotonergic psychedelics. A panel comprising tryptamines, phenethylamines and ergolines, including psychedelic compounds and selected non-psychedelic analogues, was evaluated alongside ketamine and TrkB agonists. Endpoints included dendritogenesis, synaptogenesis, immediate-early gene induction, BDNF expression and lactate production. TrkB silencing abolished dendritogenic responses to serotonergic psychedelics, ketamine and TrkB agonists, whereas 5-HT2A receptor silencing selectively impaired serotonergic psychedelic-induced plasticity and altered TrkB-dependent responses. Most serotonergic compounds also increased synaptogenesis and induced c-Fos and Egr-2 expression, although ligand-specific differences were evident, particularly for psilocin and the phenethylamines DOI and Ariadne. Uncoupling of Gq/11 or Gi/o protein-dependent signaling differentially modified neuroplastic and transcriptional responses, indicating a ligand and endpoint dependent contribution of both pathways. Serotonergic psychedelics further induced a 5-HT2A receptor dependent lactate response that was generally sensitive to disruption of either Gq/11 or Gi/o protein coupling. Taken together, these findings support a model in which serotonergic psychedelics recruit an integrated 5-HT2A-TrkB signaling network with distinct structural, transcriptional and metabolic outputs, and establish this neural stem cell-derived system as a valuable platform for screening and dissecting the signaling basis of psychedelic action.

neuroscience↗

A persistent increase in gut permeability correlates with emotional dysregulation following maternal separation in male and female mice.

Early life stress (ELS) can significantly influence vulnerability to the development of psychiatric disorders in adulthood. One of the most widely used preclinical models for investigating ELS is maternal separation with early weaning (MSEW), which mimics early-life neglect. The objective of this study was to evaluate the impact of ELS induced by MSEW on the emotional behaviour of male and female mice, as well as its relationship with intestinal permeability and neuroinflammatory markers in the hippocampus. Our results show that MSEW leads to increased anxiety-like behaviours in the adulthood, particularly in females, and exacerbates depression-like behaviours and anhedonia in both sexes. Notably, increased intestinal permeability was observed, which correlated with higher anxiety and depression-like responses, suggesting that gut health plays a crucial role in emotional regulation. These alterations in intestinal permeability were long-lasting, indicating persistent effects on gut function following ELS. Additionally, we observed that MSEW animals showed higher BDNF expression in the hippocampus, particularly in males. However, we did not find significant differences in the long-term survival of adult-born hippocampal cells, as measured by BrdU+ labeling. Furthermore, upon exposure to MSEW, both sexes showed increased NF-{kappa}B protein levels. However, only MSEW male mice exhibited changes in TNF- and BDNF levels, suggesting a sex-specific regulatory mechanism in response to chronic stress. The novel contribution of this study is its exploration of intestinal permeability as a mechanism linking ELS to emotional and behavioural dysregulation, particularly anxiety and depression. By showing a long-lasting increase in intestinal permeability and its correlation with mood disorders, our study extends the gut-brain axis hypothesis to ELS. Additionally, the inclusion of both male and female mice offers a more comprehensive understanding of the sex-specific effects of early stress, often overlooked in other studies. These findings suggest that intestinal permeability could serve as a biomarker for stress-related psychiatric conditions. HIGHLIGHTSO_LIMSEW increases anxiety and depression-like behaviours, especially in females. C_LIO_LIMaternal separation leads to long-lasting gut permeability changes into adulthood. C_LIO_LIIncreased gut permeability directly correlates with anxiety and anhedonia-like responses. C_LIO_LINeuroinflammation via NF-kB may link gut permeability to mood disorders. C_LIO_LIDifferential regulation of early-life stress is observed between males and females. C_LI

neuroscience↗