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Properties of sodium currents in neonatal and young adult mouse superficial dorsal horn neurons

机译:新生幼鼠浅表背角神经元钠电流的特性

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Background Superficial dorsal horn (SDH) neurons process nociceptive information and their excitability is partly determined by the properties of voltage-gated sodium channels. Recently, we showed the excitability and action potential properties of mouse SDH neurons change markedly during early postnatal development. Here we compare sodium currents generated in neonate (P0-5) and young adult (≥P21) SDH neurons. Results Whole cell recordings were obtained from lumbar SDH neurons in transverse spinal cord slices (CsF internal, 32°C). Fast activating and inactivating TTX-sensitive inward currents were evoked by depolarization from a holding potential of ?100 mV. Poorly clamped currents, based on a deflection in the IV relationship at potentials between ?60 and ?50 mV, were not accepted for analysis. Current density and decay time increased significantly between the first and third weeks of postnatal development, whereas time to peak was similar at both ages. This was accompanied by more subtle changes in activation range and steady state inactivation. Recovery from inactivation was slower and TTX-sensitivity was reduced in young adult neurons. Conclusions Our study suggests sodium channel expression changes markedly during early postnatal development in mouse SDH neurons. The methods employed in this study can now be applied to future investigations of spinal cord sodium channel plasticity in murine pain models.
机译:背景浅背角(SDH)神经元处理伤害性信息,其兴奋性部分取决于电压门控钠通道的特性。最近,我们显示了小鼠SDH神经元在产后早期发育过程中的兴奋性和动作电位特性发生了显着变化。在这里,我们比较了新生儿(P0-5)和年轻人(≥P21)SDH神经元中产生的钠电流。结果从横断脊髓切片(CsF内部,32°C)中的腰SDH神经元获得全细胞记录。从保持电势为100 mV的去极化引起快速激活和失活TTX敏感的内向电流。不能接受基于IV关系在φ60至φ50mV之间的挠度引起的钳位电流差的分析。在出生后第一周和第三周之间,电流密度和衰减时间显着增加,而在两个年龄段,达到峰值的时间相似。这伴随着激活范围和稳态失活的更细微变化。在年轻的成年神经元中,失活的恢复较慢且TTX敏感性降低。结论我们的研究表明,小鼠SDH神经元在出生后早期发育过程中钠通道表达明显改变。本研究中使用的方法现在可以用于将来在小鼠疼痛模型中研究脊髓钠通道可塑性。

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