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扣带回皮质纹状体终末及其突触后靶点中NMDA型谷氨酸受体的存在。

Presence of NMDA-type glutamate receptors in cingulate corticostriatal terminals and their postsynaptic targets.

作者信息

Wang H, Pickel V M

机构信息

Division of Neurobiology, Department of Neurology and Neuroscience, Joan and Sanford I. Weill Medical College of Cornell University, New York, New York 10021, USA.

出版信息

Synapse. 2000 Mar 15;35(4):300-10. doi: 10.1002/(SICI)1098-2396(20000315)35:4<300::AID-SYN8>3.0.CO;2-C.

DOI:10.1002/(SICI)1098-2396(20000315)35:4<300::AID-SYN8>3.0.CO;2-C
PMID:10657040
Abstract

The glutamatergic projection from the anterior cingulate cortex to the medial caudate-putamen nucleus (CPN) has been implicated in motor and cognitive functions, many of which are potently modulated by activation of N-methyl-D-aspartate subtype of glutamate receptors (NMDARs). To determine the functional sites for NMDAR activation within this circuitry, we combined anterograde transport of biotinylated dextran amine (BDA) from deep layers of the rat anterior cingulate cortex with immunogold labeling of NMDAR subunit, NMDAR1, in the dorsomedial CPN. BDA-containing axons were seen in patch-like clusters in a neuropil that showed more uniform immunogold-silver labeling for NMDAR1. Electron microscopy of these regions showed that BDA-labeling was present exclusively in axons and terminals, 23% (98 of 421) of which also contained NMDAR1-immunoreactivity (IR). BDA-labeled terminals often apposed NMDAR1-immunoreactive neuronal and glial profiles. These terminals also formed asymmetric excitatory-type synapses with dendritic spines. Of 155 anterogradely labeled axon terminals forming asymmetric synapses, 34% were with NMDAR1-labeled, and 66% with unlabeled dendritic spines. These results provide ultrastructural evidence for the involvement of NMDARs in presynaptic regulation of glutamate transmission, and in postsynaptic modulation of the excitability of spiny neurons in patch-like compartments of the dorsomedial CPN. These dual NMDAR-mediated actions are likely to play a major role in the acquisition of new behaviors and reward-related processes that have been associated with cortical input to the striatal patch compartments.

摘要

从前扣带回皮质到内侧尾状核-壳核(CPN)的谷氨酸能投射与运动和认知功能有关,其中许多功能受到谷氨酸受体N-甲基-D-天冬氨酸亚型(NMDARs)激活的有效调节。为了确定该神经回路中NMDAR激活的功能位点,我们将生物素化葡聚糖胺(BDA)从大鼠前扣带回皮质深层的顺行运输与背内侧CPN中NMDAR亚基NMDAR1的免疫金标记相结合。在神经毡中可见含BDA的轴突呈斑块状簇集,对NMDAR1的免疫金银标记更为均匀。这些区域的电子显微镜检查显示,BDA标记仅存在于轴突和终末中,其中23%(421个中的98个)也含有NMDAR1免疫反应性(IR)。BDA标记的终末常常与NMDAR1免疫反应性神经元和神经胶质形态相邻。这些终末还与树突棘形成不对称兴奋性突触。在形成不对称突触的155个顺行标记轴突终末中,34%与NMDAR1标记的树突棘形成突触,66%与未标记的树突棘形成突触。这些结果提供了超微结构证据,表明NMDARs参与谷氨酸能传递的突触前调节以及背内侧CPN斑块状区域中棘状神经元兴奋性的突触后调节。这些由NMDAR介导的双重作用可能在新行为的习得以及与纹状体斑块区域的皮质输入相关的奖赏相关过程中起主要作用。

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