首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >SELECTIVE KNOCKDOWN OF NMDA RECEPTORS IN PRIMARY AFFERENT NEURONS DECREASES PAIN DURING PHASE 2 OF THE FORMALIN TEST
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SELECTIVE KNOCKDOWN OF NMDA RECEPTORS IN PRIMARY AFFERENT NEURONS DECREASES PAIN DURING PHASE 2 OF THE FORMALIN TEST

机译:福尔马林试验第二阶段中主要传入神经元减少疼痛中的NMDA受体选择性敲除

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摘要

The role of NMDA receptors (NMDARs) expressed by primary afferent neurons in nociception remains controversial. The aim of this study was to develop mice with a tissue selective knockdown of NMDARs in these neurons and to evaluate their behavioral responses to different types of painful stimuli. Mice with floxed NMDAR NR1 subunit gene (fNR1) were crossed with mice expressing Cre recombinase under the control of the peripherin promotor (Prph-Cre). Male Prph-Cre+ floxed NR1 mice were compared to Cre-littermates. Both quantitative RT/PCR and Western blotting indicated a -75% reduction in NR1 expression in dorsal root ganglia (DRG) extracts with no effect on NR1 expression in spinal cord, brain or the enteric nervous system. Immunocy-tochemistry with antibodies to NR1 revealed decreased staining in all size classes of DRG neurons. NMDA produced a detectable increase in [Ca~(2+)]_i in 60% of DRG neurons cultured from Cre- mice, but only 15% of those from Cre+ mice. Furthermore, the peak [Ca~(2+)]_i responses were 64% lower in neurons from Cre+ mice. There was no significant difference between Cre+ and Cre- mice in response latencies to the hotplate or tail withdrawal tests of thermal nociception, nor was there a difference in withdrawal thresholds to mechanical stimuli of the tail or paw. However, compared to Cre-littermates, Cre+ knockdown mice had a 50% decrease in the phase 2 response to formalin injection (P<0.001). There was no effect on phase 1 responses. These results suggest that NMDA receptors expressed by primary afferent nerves play an important role in the development of sensitized pain states.
机译:由初级传入神经元表达的NMDA受体(NMDARs)在伤害感受中的作用仍存在争议。这项研究的目的是开发在这些神经元中具有NMDAR组织选择性敲低功能的小鼠,并评估它们对不同类型的疼痛刺激的行为反应。在外周蛋白启动子(Prph-Cre)的控制下,将具有NMDAR NR1亚基浮选基因(fNR1)的小鼠与表达Cre重组酶的小鼠杂交。将雄性Prph-Cre +亚麻NR1小鼠与Cre-littermates进行比较。定量RT / PCR和蛋白质印迹均表明背根神经节(DRG)提取物中NR1表达降低了-75%,而对脊髓,大脑或肠神经系统中的NR1表达没有影响。用NR1抗体进行的免疫组织化学分析显示,在所有大小类别的DRG神经元中,染色均降低。在Cre-小鼠培养的DRG神经元中,有60%的NMDA产生[Ca〜(2 +)] _ i的可检测的增加,但Cre +小鼠的只有15%。此外,来自Cre +小鼠的神经元的[Ca〜(2 +)] _ i峰值响应降低了64%。 Cre +和Cre-小鼠在对热伤害感受的热板或尾巴退缩测试的反应潜伏期之间无显着差异,对尾巴或爪的机械刺激的退缩阈值也无差异。但是,与Cre-littermates相比,Cre +敲低小鼠对福尔马林注射的2期反应降低了50%(P <0.001)。对第一阶段的反应没有影响。这些结果表明,初级传入神经表达的NMDA受体在致敏性疼痛状态的发展中起重要作用。

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