首页> 外文期刊>Bioelectromagnetics. >A Low-Frequency Pulsed Magnetic Field Reduces Neuropathic Pain by Regulating NaV1.8 and NaV1.9 Sodium Channels at the Transcriptional Level in Diabetic Rats
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A Low-Frequency Pulsed Magnetic Field Reduces Neuropathic Pain by Regulating NaV1.8 and NaV1.9 Sodium Channels at the Transcriptional Level in Diabetic Rats

机译:低频脉冲磁场通过调节糖尿病大鼠转录水平的Nav1.8和Nav1.9钠通道来减少神经性疼痛

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Low-frequency pulsed magnetic field (LF-PMF) application is a non-invasive, easy, and inexpensive treatment method in pain management. However, the molecular mechanism underlying the effect of LF-PMF on pain is not fully understood. Considering the obvious dysregulations of gene expression observed in certain types of voltage-gated sodium channels (VGSCs) in pain conditions, the present study tested the hypothesis that LF-PMF shows its pain-relieving effect by regulating genes that code VGSCs proteins. Five experimental rat groups (Control, Streptozotocin-induced experimental painful diabetic neuropathy (PDN), PDN Sham, PDN 10 Hz PMF, and PDN 30 Hz PMF) were established. After the pain formation in PDN groups, the magnetic field groups were exposed to 10/30 Hz, 1.5 mT PMF for 4 weeks, an hour daily. Progression of pain was evaluated using behavioral pain tests during the entire experimental processes. After the end of PMF treatment, SCN9A (NaV1.7), SCN10A (NaV1.8), SCN11A (NaV1.9), and SCN3A (NaV1.3) gene expression level changes were determined by analyzing real-time polymerase chain reaction results. We found that 10 Hz PMF application was more effective than 30 Hz on pain management. In addition, NaV1.7 and NaV1.3 transcriptions were upregulated while NaV1.8 and NaV1.9 were downregulated in painful conditions. Notably, the downregulated expression of the genes encoding NaV1.8 and NaV1.9 were re-regulated and increased to control level by 10 Hz PMF application. Consequently, it may be deduced that 10 Hz PMF application reduces pain by modulating certain VGSCs at the transcriptional level. (c) 2021 Bioelectromagnetics Society.
机译:低频脉冲磁场(LF-PMF)应用是疼痛管理中的非侵入性,简单,廉价的处理方法。然而,LF-PMF对疼痛的影响的分子机制尚不完全理解。考虑到在疼痛条件下在某些类型的电压门控钠通道(VGSC)中观察到的基因表达的明显失调,本研究测试了LF-PMF通过调节代码VGSCs蛋白的基因显示其疼痛缓解效果的假设。建立了五种实验大鼠基团(对照,链脲佐菌素诱导的实验疼痛糖尿病神经病变(PDN),PDN假,PDN 10Hz PMF和PDN 30Hz PMF)。在PDN组疼痛形成后,将磁场基团暴露于10/30Hz,1.5mt PMF,每日一小时。在整个实验过程中使用行为疼痛试验评估疼痛的进展。在PMF处理结束后,通过分析实时聚合酶链反应结果确定SCN9A(NAV1.7),SCN10A(NAV1.8),SCN10A(NAV1.8),SCN11A(NAV1.9)和SCN3A(NAV1.3)基因表达水平变化。我们发现,在疼痛管理中,10 Hz PMF应用程序比30 Hz更有效。此外,NAV1.7和NAV1.3转录在NAV1.8和NAV1.9中在痛苦的条件下下调。值得注意的是,将编码NAV1.8和NAV1.9的基因的下调表达被重新调节并增加至控制水平10 Hz PMF应用。因此,可以推导出10Hz PMF申请通过调节转录水平的某些VGSC来降低疼痛。 (c)2021生物电磁学会。

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