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首页> 外文期刊>Brain structure & function >Ultrastructural analysis of prefrontal cortical inputs to the rat amygdala: spatial relationships to presumed dopamine axons and D1 and D2 receptors.
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Ultrastructural analysis of prefrontal cortical inputs to the rat amygdala: spatial relationships to presumed dopamine axons and D1 and D2 receptors.

机译:大鼠杏仁核的前额叶皮层输入的超微结构分析:与假定的多巴胺轴突以及D1和D2受体的空间关系。

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Projections from the prefrontal cortex (PFC) to the amygdala (AMG) regulate affective behaviors in a manner that is modulated by dopamine (DA). Although PFC and DA inputs overlap within the basolateral nucleus (BLA) and intercalated cell masses (ICMs), the spatial relationship between these afferents has not been investigated, nor is it known how DA D1 (D1R) and D2 (D2R) receptors are localized in relationship to PFC terminals. We therefore combined tract-tracing from the rat PFC to the AMG with immunocytochemical labeling of tyrosine hydroxylase (TH) to identify presumed DA axons or D1R and D2R. In both the ICMs and BLA, PFC terminals formed asymmetric synapses onto spines that typically did not receive secondary synaptic inputs. TH-immunoreactive (-ir) fibers in the adjacent neuropil typically contacted different structures. Although PFC and TH-ir axons were sometimes apposed to the same dendrites or to each other, PFC terminals only rarely synapsed onto dendrites that also received synapses from TH-ir axons. D1R-ir spines and dendrites were observed commonly within the ICMs but less frequently within the BLA, and PFC axons in the ICMs occasionally synapsed onto D1R-ir spines. Within both regions, D2R-ir spines, dendrites, and axons were observed. PFC terminals occasionally contained presynaptic labeling for D2R but were not observed to synapse onto D2R-ir targets. The infrequent observation of synaptic convergence between PFC and presumed DA terminals within the AMG suggests that DA modulates PFC inputs primarily via extrasynaptic mechanisms, a conclusion supported by the localization of D2R within and D1R postsynaptic to PFC terminals.
机译:从前额叶皮层(PFC)到杏仁核(AMG)的投射以多巴胺(DA)调节的方式调节情感行为。尽管PFC和DA输入在基底外侧核(BLA)和插层细胞团(ICM)内重叠,但尚未研究这些传入分子之间的空间关系,也不知道DA D1(D1R)和D2(D2R)受体如何定位与PFC端子有关。因此,我们结合了从大鼠PFC到AMG的区域追踪和酪氨酸羟化酶(TH)的免疫细胞化学标记,以鉴定推测的DA轴突或D1R和D2R。在ICM和BLA中,PFC末端在通常不接收次级突触输入的刺上形成非对称突触。相邻神经纤维中的TH免疫反应(-ir)纤维通常接触不同的结构。尽管PFC和TH-ir轴突有时并置在相同的树突上或彼此并置,但PFC末端仅很少突触到也接受TH-ir轴突突触的树突上。在ICM中通常观察到D1R-ir棘和树突,而在BLA中则较不常见,ICM中的PFC轴突有时会突触到D1R-ir棘上。在两个区域内,观察到了D2R-ir的棘,树突和轴突。 PFC末端偶尔包含D2R的突触前标记,但未观察到突触到D2R-ir靶标上。很少观察到PFC和AMG中假定的DA末端之间的突触收敛,这表明DA主要通过突触外机制调节PFC输入,这一结论得到D2R在PFC末端内的定位以及D1R在突触后定位的支持。

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