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Dynamic Changes in the MicroRNA Expression Profile Reveal Multiple Regulatory Mechanisms in the Spinal Nerve Ligation Model of Neuropathic Pain

机译:MicroRNA表达谱的动态变化揭示了神经性疼痛的脊神经结扎模型中的多种调控机制。

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摘要

Neuropathic pain resulting from nerve lesions or dysfunction represents one of the most challenging neurological diseases to treat. A better understanding of the molecular mechanisms responsible for causing these maladaptive responses can help develop novel therapeutic strategies and biomarkers for neuropathic pain. We performed a miRNA expression profiling study of dorsal root ganglion (DRG) tissue from rats four weeks post spinal nerve ligation (SNL), a model of neuropathic pain. TaqMan low density arrays identified 63 miRNAs whose level of expression was significantly altered following SNL surgery. Of these, 59 were downregulated and the ipsilateral L4 DRG, not the injured L5 DRG, showed the most significant downregulation suggesting that miRNA changes in the uninjured afferents may underlie the development and maintenance of neuropathic pain. TargetScan was used to predict mRNA targets for these miRNAs and it was found that the transcripts with multiple predicted target sites belong to neurologically important pathways. By employing different bioinformatic approaches we identified neurite remodeling as a significantly regulated biological pathway, and some of these predictions were confirmed by siRNA knockdown for genes that regulate neurite growth in differentiated Neuro2A cells. In vitro validation for predicted target sites in the 3′-UTR of voltage-gated sodium channel Scn11a, alpha 2/delta1 subunit of voltage-dependent Ca-channel, and purinergic receptor P2rx ligand-gated ion channel 4 using luciferase reporter assays showed that identified miRNAs modulated gene expression significantly. Our results suggest the potential for miRNAs to play a direct role in neuropathic pain.
机译:由神经损伤或功能障碍引起的神经性疼痛代表了最具挑战性的神经疾病之一。更好地理解引起这些适应不良反应的分子机制可以帮助开发新的治疗策略和神经性疼痛的生物标志物。我们进行了脊髓神经结扎(SNL)(一种神经性疼痛模型)后四周的大鼠背根神经节(DRG)组织的miRNA表达谱研究。 TaqMan低密度阵列可鉴定出63种miRNA,这些蛋白的表达水平在SNL手术后明显改变。其中59个被下调,同侧L4 DRG(而不是受伤的L5 DRG)表现出最显着的下调,这表明未损伤的传入体中的miRNA变化可能是神经性疼痛发生和维持的基础。使用TargetScan预测这些miRNA的mRNA靶标,发现具有多个预测靶标位点的转录本属于神经学重要途径。通过采用不同的生物信息学方法,我们确定了神经突重塑是一个显着调节的生物学途径,其中某些预测被siRNA敲除证实了调节分化的Neuro2A细胞中神经突生长的基因。使用萤光素酶报告基因检测技术体外验证了电压门控钠通道Scn11a,电压依赖性Ca通道的alpha 2 / delta1亚基和嘌呤能受体P2rx配体门控离子通道4的3'-UTR中预测的靶位点,结果表明,鉴定出的miRNA显着调节基因表达。我们的结果表明,miRNA在神经性疼痛中起直接作用的潜力。

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