The Sleep-Mood Connection: Temperament Modulates Neuroinflammation, Clock Genes, and Dopaminergic Receptors Expression in Rats
Carvalho, C.; Silva, F. E.; Carvalho, M.; Lima, J. E. C.; Chaves Filho, A. J.; Fries, G.; Sobreira-Neto, M.; Costa, D.; Fonteles, M.; Macedo, D. S.
Show abstract
Temperament may influence mood disorder risk under sleep disturbances. Using high- and low-exploratory rats as a temperament model, we examined the effects of paradoxical sleep deprivation (PSD) on mood behaviors, neuroinflammation, oxidative stress, clock genes, and dopamine receptor expression. Eighty male Wistar rats were screened for exploratory activity, while 20 were classified as high (HE) and 21 as low (LE) exploratory based on open-field performance. HE and LE rats were subjected to PSD or remained undisturbed (controls). Behavioral assessments included impulsivity, risk-taking, anhedonia, and forced swim test (FST) performance. Neurobiological analyses measured hippocampal lipid peroxidation, pro-inflammatory markers (IL-6, TLR4), gene expression of Clock, Tph2, Tdo2, and protein expression of D1, and D2, which regulate, respectively, circadian rhythms, serotonin synthesis, tryptophan metabolism, and dopaminergic signaling--key pathways implicated in mood disorders. HE rats showed increased impulsivity, risk-taking, and exploratory behaviors, resembling mania, while LE rats exhibited avoidance. PSD intensified these traits, heightening risk-taking in HE rats and inducing depressive-like behaviors in LE rats, including anhedonia and FST immobility linked to reduced Tph2 expression. Both groups had post-PSD working memory deficits. Neurobiologically, HE+PSD rats showed increased lipid peroxidation, neuroinflammation (IL-6, TLR4), and upregulation of Clock and DRD1 genes, while LE+PSD rats had elevated hippocampal Tdo2 expression. Temperament shapes PSD-induced behavioral and neurobiological effects. HE rats showed mania-like traits, while LE rats exhibited depressive behaviors. PSD impaired working memory in both. Oxidative stress, inflammation, and gene expression changes highlight distinct vulnerabilities and potential therapeutic targets for mood disorders.
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Synergistic Behavioral and Neuroplastic Effects of Psilocybin-NMDAR Modulator Administration. 95%
- Early neuroadaptations to an obesogenic diet identify the schizophrenia-related ErbB4 receptor in obesity-induced hippocampal abnormalities 94%
- Correspondence between sleep patterns and anhedonia in adult male mice exposed to early-life stress 94%
Similar papers in this journal
- The effects of predator odor (TMT) exposure and mGlu3 NAM pretreatment on lasting behavioral and molecular adaptations in the insular cortex and BNST 96%
- Unexpected short- and long-term effects of chronic adolescent HU-210 exposure on emotional behavior 95%
- Fluoxetine rescues rotarod motor deficits in Mecp2 heterozygous mouse model of Rett syndrome via brain serotonin 94%
Similar papers in this journal
- Purinergic P2X7 Receptor-mediated inflammation precedes PTSD-related Behaviors in Rats 94%
- Differential effects of postpartum sleep restriction on maternal and offspring immunity in the rat 94%
- Traumatic stress history interacts with chronic peripheral inflammation to alter mitochondrial function of synaptosomes in a sex-specific manner 93%
Similar papers in this journal
Similar papers in this journal
- Premorbid Characteristics of the SAPAP3-Mouse Model of Obsessive-Compulsive Disorder: Behavior, Neuroplasticity, and Psilocybin Treatment 95%
- Chronic Stress Alters Astrocyte Morphology in Mouse Prefrontal Cortex 94%
- Effects of taurine in mice and zebrafish behavioral assays with translational relevance to schizophrenia 93%
"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.