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首页> 外文期刊>Physiological Research >Lidocaine suppresses subthreshold oscillations by inhibiting persistent Na+ current in injured dorsal root ganglion neurons
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Lidocaine suppresses subthreshold oscillations by inhibiting persistent Na+ current in injured dorsal root ganglion neurons

机译:利多卡因通过抑制受伤的背根神经节神经元中持续的Na +电流来抑制亚阈值振荡

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摘要

The aim of this study was to determine the effect and mechanism of low concentration of lidocaine on subthreshold membrane potential oscillations (SMPO) and burst discharges in chronically compressed dorsal root ganglion (DRG) neurons. DRG neurons were isolated by enzymatic dissociation method. SMPO, burst discharges and single spike were elicited by whole cell patch-clamp technique in current clamp mode. Persistent Na+ current (I-NaP) and transient Na+ current (I-NaT) were elicited in voltage clamp mode. The results showed that SMPO was suppressed and burst discharges were eliminated by tetrodotoxin (TTX, 0.2 mu mol/l) in current clamp mode, I-NaP was blocked by 0.2 mu mol/l TTX in voltage clamp mode. SMPO, burst discharges and I-NaP were also suppressed by low concentration of lidocaine (10 mu mol/l) respectively. However, single spike and INaT could only be blocked by high concentration of lidocaine (5 mmol/l). From these results, it is suggested that I-NaP mediates the generation of SMPO in injured DRG neurons. Low concentration of lidocaine (10 mu mol/l) suppresses SMPO by selectively inhibiting I-NaP, but not I-NaT, in chronically compressed DRG neurons.
机译:这项研究的目的是确定低浓度利多卡因对慢性压缩背根神经节(DRG)神经元的亚阈膜电位振荡(SMPO)和爆发放电的作用和机制。通过酶解法分离DRG神经元。通过全细胞膜片钳技术在电流钳模式下引发SMPO,突发放电和单个尖峰。在电压钳模式下产生持久性Na +电流(I-NaP)和瞬态Na +电流(I-NaT)。结果表明,在电流钳模式下,河豚毒素(TTX,0.2μmol/ l)抑制了SMPO并消除了突发放电,在电压钳模式下,I-NaP被0.2μmol/ l TTX阻断。低浓度的利多卡因(10μmol/ l)分别抑制了SMPO,爆发放电和I-NaP。但是,只有高浓度的利多卡因(5 mmol / l)才能阻止单峰和INaT。从这些结果表明,I-NaP介导了受损DRG神经元中SMPO的产生。低浓度的利多卡因(10μmol / l)通过选择性抑制慢性压缩DRG神经元中的I-NaP而非I-NaT来抑制SMPO。

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