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Distinct gene alterations between Fos-expressing striatal and thalamic neurons after withdrawal from methamphetamine self-administration. | LitMetric

AI Article Synopsis

  • This study investigated the changes in gene expression of neurons in the dorsomedial striatum (DMS) and anterior intralaminar nucleus of thalamus (AIT) during Methamphetamine-seeking behavior after a withdrawal period, highlighting the role of these brain regions in craving.
  • Increased mRNA levels of specific immediate early genes and other neural markers were observed in activated (Fos-positive) DMS neurons compared to non-activated ones, suggesting a more pronounced molecular response in this area.
  • Interestingly, similar gene expression changes were also noted in drug-naïve control rats, indicating that these alterations are not solely linked to Meth exposure but may reflect broader neural adaptations.

Article Abstract

Background: Methamphetamine (Meth) seeking progressively increases after withdrawal (incubation of Meth craving). We previously demonstrated a role of anterior intralaminar nucleus of thalamus (AIT) to dorsomedial striatum (DMS) projections in this incubation. Here, we examined molecular alterations in DMS and AIT neurons activated (identified by neuronal activity marker Fos) during "incubated" Meth-seeking relapse test after prolonged withdrawal.

Methods: We trained male rats to self-administer Meth or saline (control condition) for 10 days (6 hr/day). Using fluorescence-activated cell sorting, we examined gene expression in Fos-positive (activated during a 2-hr relapse test) and Fos-negative (nonactivated) DMS and AIT neurons.

Results: In DMS, we found increased mRNA expressions of immediate early genes (IEGs) (Arc, Egr1, Npas4, Fosb), Trkb, glutamate receptors subunits (Gria3, Grin1, Grin2b, Grm1), and epigenetic enzymes (Hdac3, Hdac5, Crebbp) in Fos-positive neurons, compared with Fos-negative neurons. In AIT, we found that fewer genes (Egr1, Fosb, TrkB, Grin1, and Hdac5) exhibited increased mRNA expression in Fos-positive neurons. Unexpectedly, in both brain regions, gene alterations described above also occurred in drug-naïve saline self-administration control rats.

Conclusions: These results demonstrated that transcriptional regulations in Fos-positive neurons activated during the relapse tests are brain region-specific but are not uniquely associated with drug exposure during the self-administration training.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6749486PMC
http://dx.doi.org/10.1002/brb3.1378DOI Listing

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