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Effects of context-drug learning on synaptic connectivity in the basolateral nucleus of the amygdala in rats

机译:上下文药物学习对大鼠杏仁核基底外侧核突触连通性的影响

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Context-drug learning produces structural and functional synaptic changes in the circuitry of the basolateral nucleus of the amygdala (BLA). However, how the synaptic changes translated to the neuronal targets was not established. Thus, in the present study, immunohistochemistry with a cell-specific marker and the stereological quantification of synapses was used to determine if context-drug learning increases the number of excitatory and inhibitory/modulatory synapses contacting the gamma-aminobutyric acid (GABA) interneurons and/or the pyramidal neurons in the BLA circuitry. Amphetamine-conditioned place preference increased the number of asymmetric (excitatory) synapses contacting the spines and dendrites of pyramidal neurons and the number of multisynaptic boutons contacting pyramidal neurons and GABA interneurons. Context-drug learning increased asymmetric (excitatory) synapses onto dendrites of GABA interneurons and increased symmetric (inhibitory or modulatory) synapses onto dendrites but not perikarya of these same interneurons. The formation of context-drug associations alters the synaptic connectivity in the BLA circuitry, findings that have important implications for drug-seeking behavior.
机译:上下文药物学习在杏仁核(BLA)的基底外侧核的电路中产生结构和功能的突触变化。然而,尚未建立突触变化如何转化为神经元靶标。因此,在本研究中,使用具有细胞特异性标记物的免疫组织化学和突触的立体定量来确定上下文药物学习是否增加了接触γ-氨基丁酸(GABA)中间神经元和神经元的兴奋性和抑制性/调节性突触的数量。 /或BLA电路中的锥体神经元。苯丙胺调节的位置偏爱增加了接触锥体神经元的棘和树突的不对称(兴奋性)突触的数量,以及接触锥体神经元和GABA间神经元的多突触钮扣的数量。上下文药物学习增加了GABA中间神经元的树突上的不对称(兴奋性)突触,而增加了这些相同中间神经元的树突而不是周核上的对称(抑制性或调节性)突触。上下文-药物关联的形成改变了BLA回路中的突触连通性,这些发现对寻求药物的行为具有重要意义。

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