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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Counteracting roles of metabotropic glutamate receptor subtypes 1 and 5 in regulation of pain-related spatial and temporal synaptic plasticity in rat entorhinal-hippocampal pathways
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Counteracting roles of metabotropic glutamate receptor subtypes 1 and 5 in regulation of pain-related spatial and temporal synaptic plasticity in rat entorhinal-hippocampal pathways

机译:抵消代谢型谷氨酸受体亚型1和5在调节大鼠内啡肽-海马途径中与疼痛相关的时空突触可塑性中的作用

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摘要

It was previously found that persistent inflammatory pain state resulted in enhancement of synaptic connections and efficacy in direct entorhinal-hippocampal (EC-HIP) pathways. In the current study, the roles of two subtypes of group I metabotropic glutamate receptors in the above processes were evaluated. Similarly, pain-related spatial and temporal synaptic enhancement model was stably achieved by the multi-electrode array (8×8) recordings in the hippocampal slices of rats pre-treated with intraplantar (i.pl.) bee venom (BV) injection. I.pl. saline injection was used as control. Inhibition of mGluR1 by a selective antagonist 7-hydroxyiminocyclopropan [b] chromen-1α-carboxylic acid ethyl ester (CPCCOEt) resulted in a dramatic increase in synaptic connections in the hippocampal slices of rats treated by BV, but not by saline. However, inhibition of mGluR5 by a selective antagonist 2-methyl-6-(phenylethynyl)-pyridine (MPEP) produced no spatial change from either of the two groups. Temporally, the BV-enhanced LTP could be further incremented by antagonism of mGluR1 with CPCCOEt perfusion when plateau LTP was well established. However, the BV-enhanced LTP was significantly suppressed by antagonism of mGluR5 with MPEP. Neither of the two drugs affected magnitude of LTP in rats treated by i.pl. saline. Taken together with our previous results, it is suggested that mGluR1 be involved in tonic inhibition of EC-HIP synaptic enhancement, while mGluR5 be involved in maintenance of persistent inflammatory pain-associated EC-HIP synaptic enhancement that is largely based upon activation of ionic glutamate receptors.
机译:先前已经发现持续的炎性疼痛状态导致突触连接的增强和直接内嗅海马(EC-HIP)途径的功效。在当前的研究中,评估了上述过程中I类代谢型谷氨酸受体的两种亚型的作用。同样,通过足底内(i.pl.)蜂毒(BV)注射预处理的大鼠海马切片中的多电极阵列(8×8)记录,稳定地实现了与疼痛相关的时空突触增强模型。 I.pl盐水注射用作对照。选择性拮抗剂7-羟基亚氨基环丙烷[b]铬-1α-羧酸乙酯(CPCCOEt)对mGluR1的抑制作用导致BV而非生理盐水处理的大鼠海马片突触连接显着增加。但是,选择性拮抗剂2-甲基-6-(苯基乙炔基)-吡啶(MPEP)对mGluR5的抑制作用在两组中均未产生空间变化。暂时地,当高原LTP建立良好时,mGluR1与CPCCOEt灌注的拮抗作用可进一步增加BV增强的LTP。但是,mGluR5与MPEP的拮抗作用显着抑制了BV增强的LTP。两种药物均未影响i.pl治疗的大鼠的LTP量。盐水。结合我们先前的结果,建议mGluR1参与强直性抑制EC-HIP突触增强,而mGluR5参与维持持久性炎症性疼痛相关的EC-HIP突触增强,这主要基于离子型谷氨酸的活化。受体。

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