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首页> 外文期刊>The Journal of Comparative Neurology >Differential postsynaptic compartments in the laterocapsular division of the central nucleus of amygdala for afferents from the parabrachial nucleus and the basolateral nucleus in the rat.
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Differential postsynaptic compartments in the laterocapsular division of the central nucleus of amygdala for afferents from the parabrachial nucleus and the basolateral nucleus in the rat.

机译:杏仁核中央核的后囊区中的突触后突触室,用于大鼠大鼠臂旁核和基底外侧核的传入。

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Neurons in the laterocapsular division of the central nucleus of the amygdala (CeC), which is known as the "nociceptive amygdala," receive glutamatergic inputs from the parabrachial nucleus (PB) and the basolateral nucleus of amygdala (BLA), which convey nociceptive information from the dorsal horn of the spinal cord and polymodal information from the thalamus and cortex, respectively. Here, we examined the ultrastructural properties of PB- and BLA-CeC synapses identified with EGFP-expressing lentivirus in rats. In addition, the density of synaptic AMPA receptors (AMPARs) on CeC neurons was studied by using highly sensitive SDS-digested freeze-fracture replica labeling (SDS-FRL). Afferents from the PB made asymmetrical synapses mainly on dendritic shafts (88%), whereas those from the BLA were on dendritic spines (81%). PB-CeC synapses in dendritic shafts were significantly larger (median 0.072 mum(2)) than BLA-CeC synapses in spines (median 0.058 mum(2); P = 0.02). The dendritic shafts that made synapses with PB fibers were also significantly larger than those that made synapses with BLA fibers, indicating that the PB fibers make synapses on more proximal parts of dendrites than the BLA fibers. SDS-FRL revealed that almost all excitatory postsynaptic sites have AMPARs in the CeC. The density of AMPAR-specific gold particles in individual synapses was significantly higher in spine synapses (median 510 particles/mum(2)) than in shaft synapses (median 427 particles/mum(2); P = 0.01). These results suggest that distinct synaptic impacts from PB- and BLA-CeC pathways contribute to the integration of nociceptive and polymodal information in the CeC.
机译:杏仁核(CeC)中央核的后囊膜区中的神经元,被称为“伤害感受性杏仁核”,从臂旁核(PB)和杏仁核的基底外侧核(BLA)接收谷氨酸能输入,从而传达伤害性信息分别来自脊髓背角和丘脑和皮质的多峰信息。在这里,我们检查了在大鼠中用表达EGFP的慢病毒鉴定的PB和BLA-CeC突触的超微结构特性。此外,通过使用高度敏感的SDS消化的冷冻断裂复制标记(SDS-FRL)研究了CeC神经元上突触AMPA受体(AMPAR)的密度。 PB的传入者主要在树突状干上产生不对称突触(88%),而BLA的传入者在树突状刺上(81%)。树突干中的PB-CeC突触比棘中的BLA-CeC突触(中位数0.058 mum(2); P = 0.02)大得多(中位数为0.072 mum(2))。与PB纤维形成突触的树突柄也明显大于与BLA纤维形成突触的树突柄,这表明PB纤维比BLA纤维在树突的近端部分形成突触。 SDS-FRL显示,几乎所有兴奋性突触后位点在CeC中都有AMPAR。在脊柱突触中,中枢神经突触中位AMPAR特异性金颗粒的密度显着高于中枢突触(中位数为510微粒/母亲(2);中位数510微粒/母亲(2); P = 0.01)。这些结果表明,PB-和BLA-CeC途径产生的不同突触影响促成CeC中伤害感受和多峰信息的整合。

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