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Effect of optogenetic manipulation of accumbal medium spiny neurons expressing dopamine D2 receptors in cocaine-induced behavioral sensitization

机译:对骨髓介质刺刺神经元表达多巴胺D2受体在可卡因诱导的行为致敏中的影响

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摘要

Repetitive exposure to addictive drugs causes synaptic modification in the mesocorticolimbic dopamine (DA) system. Dopamine D1 receptors (D1R) or D2 receptors (D2R) expressed in the medium spiny neurons (MSNs) of the nucleus accumbens (NAc) play critical roles in the control of addictive behaviors. Optogenetic activation of D2R-expressing MSNs (D2R-MSNs) in the NAc previously demonstrated that these neurons play a key role in withdrawal-induced plasticity. Here, we examined the effect of optogenetic inhibition of D2R-MSNs in the NAc on cocaine-induced behavioral sensitization. Adeno-associated viral vectors encoding archaerhodopsin (ArchT) were delivered into the NAc of D2-Cre transgenic mice. Activation of ArchT produced photoinhibition of D2R-MSNs and caused disinhibition of neighboring MSNs in the NAc. However, such optogenetic silencing of D2R-MSNs in the NAc invivo affected neither the initiation nor the expression of cocaine-induced behavioral sensitization. Similarly, photoinhibition of NAc D2R-MSNs in the NAc during the drug withdrawal period did not affect the expression of cocaine-induced behavioral sensitization. More detailed analysis of the effects of optogenetic activation of D2R-MSNs suggests that D2R-MSNs in the NAc exert important modulatory effects on neighboring MSN neurons, which may control the balanced output of NAc MSNs to control addictive behaviors.
机译:重复性暴露于上瘾药物导致脱髓鞘多巴胺(DA)系统中的突触修饰。在细胞核尿嘧啶(NAC)的中刺神经元(NAC)中表达的多巴胺D1受体(D2R)在升值行为的控制中起重要作用。在NAC中,NAC中D2R-CSIS(D2R-MSNS)的致敏活化以前证明这些神经元在取出诱导的可塑性中起关键作用。在这里,我们检查了对NAC对可卡因诱导的行为敏化的NAC中D2R-MSN的致敏抑制作用。将编码archaerhodopsin(Archt)的腺相关病毒载体递送到D2-CRE转基因小鼠的NAc中。 ARCHT激活产生D2R-MSN的光抑制,并导致NAC中的邻近MSN。然而,NAC Invivo中D2R-MSN的这种致敏沉默既不影响,也不影响可卡因诱导的行为敏化的表达。类似地,在药物戒断期间NAC的NAC D2R-MSN的光抑制不影响可卡因诱导的行为敏化的表达。更详细地分析D2R-MSNS的致敏活化的影响表明,NAC中的D2R-MSN对相邻的MSN神经元产生了重要的调节作用,这可以控制NAC MSN的平衡输出来控制上瘾行为。

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