首页> 美国卫生研究院文献>Journal of Pain Research >Decreased expression of lncRNA Malat1 in rat spinal cord contributes to neuropathic pain by increasing neuron excitability after brachial plexus avulsion
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Decreased expression of lncRNA Malat1 in rat spinal cord contributes to neuropathic pain by increasing neuron excitability after brachial plexus avulsion

机译:臂丛神经撕脱伤后神经元兴奋性增加导致大鼠脊髓中lncRNA Malat1表达的降低导致神经性疼痛

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摘要

>Purpose: Neuropathic pain (NP) is a challenging clinical problem due to its complex pathogenesis. In our previous study using microarray, we found that the levels of lncRNA Malat1 were decreased in the spinal cord of NP rat after brachial plexus avulsion, but its contribution to NP remain unclear. The purpose of this study was to investigate its role in the pathogenesis of NP.>Methods: In the NP model of complete brachial plexus avulsion rat, spinal cords were harvested, and fluorescence in situ hybridization (FISH) was used to test the spatial expression of Malat1 and qRT-PCR was used to confirm the quantitative expression of Malat1. In primary cultured neurons, Malat1 expression interfered with adenovirus. Spontaneous electric activities of neurons were tested using multi-electrode arrays and apoptosis of neurons was tested using TUNEL method. The change of intracellular calcium concentration was analyzed using calcium imaging method.>Results: Decreased Malat1 expression was confirmed using qRT-PCR, and Malat1 was identified in the cytoplasm of neurons in spinal cord, but not in glia. In vitro, the decrease of Malat1 resulted in an increase in the frequency of spontaneous electric activity in neurons but had no effect on neuronal apoptosis. Further analysis indicated during glutamate stimulation, the change of intracellular calcium concentration in neurons with downregulated Malat1 expression was significantly greater than that in normal neurons.>Conclusion: Reduced Malat1 expression may induce NP by increasing neuronal excitability in the spinal cord via regulation of calcium flux.
机译:>目的:由于其复杂的发病机制,神经性疼痛(NP)是一个具有挑战性的临床问题。在我们先前使用微阵列的研究中,我们发现臂丛神经撕脱后NP大鼠脊髓中lncRNA Malat1的水平降低,但其对NP的作用仍不清楚。 >方法:在完全臂丛神经撕脱大鼠的NP模型中,收集脊髓,并进行荧光原位杂交(FISH)。用于测试Malat1的空间表达,并使用qRT-PCR确认Malat1的定量表达。在原代培养的神经元中,Malat1表达干扰腺病毒。使用多电极阵列测试神经元的自发电活动,并使用TUNEL方法测试神经元的凋亡。用钙显像法分析细胞内钙浓度的变化。>结果: qRT-PCR证实了Malat1表达的降低,并且在脊髓神经元胞浆中发现了Malat1,但在胶质细胞中未发现。在体外,Malat1的减少导致神经元自发电活动的频率增加,但对神经元凋亡没有影响。进一步的分析表明,在谷氨酸刺激过程中,Malat1表达下调的神经元细胞内钙浓度的变化明显大于正常神经元。>结论:降低的Malat1表达可能通过增加脊髓神经元兴奋性来诱导NP。调节钙通量。

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