Low frequency optogenetic deep brain stimulation of nucleus accumbens dopamine D1 or D2 receptor-containing neurons attenuates cocaine seeking selectively in male rats in part by reversing synaptic plasticity deficits
Swinford-Jackson, S. E.; Rich, M. T.; Huffman, P. J.; Knouse, M. C.; Thomas, A. S.; Mankame, S.; Worobey, S. J.; Pierce, R. C.
Show abstract
BackgroundClinically, deep brain stimulation (DBS) utilizes relatively high frequencies (>100 Hz). In preclinical models, 160 Hz stimulation of the nucleus accumbens in rodents prevents relapse of drug seeking. However, the ability of varied frequencies of accumbens DBS to attenuate drug seeking, and the neuronal subtype specificity of this effect, is unclear. MethodsThe present study examined the effect of DBS in the nucleus accumbens on neuronal plasticity and cocaine-primed reinstatement of cocaine seeking behavior in rats. ResultsElectrical DBS of the accumbens shell attenuated cocaine primed reinstatement across a range of frequencies in male rats, including as low as 12 Hz. The majority of nucleus accumbens neurons are medium spiny neurons (MSNs), which can be differentiated in terms of projections and effects on cocaine-related behaviors by expression of dopamine D1 receptors (D1DRs) or D2DRs. In slice electrophysiology experiments, 12 Hz electrical stimulation evoked long term potentiation (LTP) in eYFP labeled D1DR-MSNs and D2DR-MSNs from cocaine naive male and female rats. However, in rats that self-administered cocaine and underwent extinction training, a paradigm identical to our reinstatement experiments, electrical DBS only elicited LTP in D2DR-MSNs from male rats; this effect was replicated by optical stimulation in rats expressing Cre-dependent ChR2 in D2DR-MSNs. Low-frequency optogenetic-DBS in D1DR-containing or D2DR-containing neurons attenuated cocaine-primed reinstatement of cocaine seeking in male but not female rats. ConclusionsThese results suggest that administering DBS in the nucleus accumbens shell at lower frequencies effectively, but sex-specifically, suppresses cocaine craving, perhaps in part by reversing synaptic plasticity deficits selectively in D2DR-MSNs.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- High frequency DBS-like optogenetic stimulation of nucleus accumbens dopamine D2 receptor-containing neurons attenuates cocaine reinstatement in male rats 96%
- Optogenetic stimulation of lateral hypothalamic orexin/dynorphin inputs in the ventral tegmental area potentiates mesolimbic dopamine neurotransmission and promotes reward-seeking behaviours. 96%
- Dopamine transmission at D1 and D2 receptors in the nucleus accumbens contributes to the expression of incubation of cocaine craving 95%
Similar papers in this journal
- Chemogenetic activation of mesoaccumbal {Gamma}-Aminobutyric Acid projections selectively tunes responses to predictive cues when reward value is abruptly decreased 95%
- Histone deacetylase 5 in prelimbic prefrontal cortex limits context-associated cocaine seeking 94%
- G protein Inactivation as a Mechanism for Addiction Treatment 94%
Similar papers in this journal
- Circadian- and sex-dependent increases in intravenous cocaine self-administration in Npas2 mutant mice 95%
- Infralimbic projections to the nucleus accumbens shell and amygdala regulate the encoding of cocaine extinction learning 95%
- Prior cocaine exposure increases firing to immediate reward while attenuating cue and context signals related to reward value in anterior insula 95%
Similar papers in this journal
Similar papers in this journal
"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.