首页> 美国卫生研究院文献>The Journal of Neuroscience >Spinal Cord Injury Induces Changes in Electrophysiological Properties and Ion Channel Expression of Reticulospinal Neurons in Larval Lamprey
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Spinal Cord Injury Induces Changes in Electrophysiological Properties and Ion Channel Expression of Reticulospinal Neurons in Larval Lamprey

机译:脊髓损伤诱导幼虫Lamp鱼网状脊髓神经元电生理特性和离子通道表达的变化

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摘要

In larval lamprey, hemitransections were performed on the right side of the rostral spinal cord to axotomize ipsilateral reticulospinal (RS) neurons. First, at short recovery times (2–3 weeks), uninjured RS neurons contralateral to hemitransections fired a smooth train of action potentials in response to sustained depolarization, whereas axotomized neurons fired a single short burst or short repetitive bursts. For uninjured RS neurons, the afterpotentials of action potentials had three components: fast afterhyperpolarization (fAHP), afterdepolarizing potential (ADP), and slow AHP (sAHP) that was attributable to calcium influx via high-voltage-activated (HVA) (N- and P/Q-type) calcium channels and calcium-activated potassium channels (SKKCa). For axotomized RS neurons, the fAHP was significantly larger than for uninjured neurons, and the ADP and sAHP were absent or significantly reduced. Second, at relatively long recovery times (12–16 weeks), axotomized RS neurons displayed firing patterns and afterpotentials that were similar to those of uninjured neurons. Third, mRNA levels of lamprey HVA calcium and SKKCa channels in axotomized RS neurons were significantly reduced at short recovery times and restored at long recovery times. Fourth, blocking calcium channels in uninjured RS neurons resulted in altered firing patterns that resembled those produced by axotomy. We demonstrated previously that lamprey RS neurons in culture extend neurites, and calcium influx results in inhibition of neurite outgrowth or retraction. Together, these results suggest that the downregulation of Ca2+ channels in axotomized RS neurons, and the associated reduction in calcium influx, maintain intracellular calcium levels in a range that is permissive for axonal regeneration.
机译:在幼虫七lamp鳗中,在鼻状脊髓的右侧进行半横切,以切除同侧网状脊髓(RS)神经元。首先,在短的恢复时间(2-3周)内,与半断面对侧未损伤的RS神经元响应持续的去极化而激发出一系列顺畅的动作电位,而无轴突神经元则激发了一个短脉冲或短重复脉冲。对于未受伤的RS神经元,动作电位的后电位具有三个组成部分:快速超极化(fAHP),去极化后电位(ADP)和缓慢的AHP(sAHP),这归因于通过高压激活(HVA)引起的钙流入(N-和P / Q型)钙通道和钙激活钾通道(SKKCa)。对于轴突切除的RS神经元,fAHP明显大于未受伤的神经元,而ADP和sAHP则不存在或明显减少。其次,在相对较长的恢复时间(12-16周),无轴突切除的RS神经元显示的放电方式和后电位类似于未受伤的神经元。第三,轴突切除的RS神经元中七lamp鳗HVA钙和SKKCa通道的mRNA水平在较短的恢复时间内显着降低,并在较长的恢复时间内恢复。第四,阻断未受伤的RS神经元中的钙通道会导致改变发射方式,类似于轴切术产生的发射方式。以前我们证明了培养中的七lamp鳗RS神经元会延伸神经突,而钙的流入会抑制神经突的生长或收缩。总之,这些结果表明,在轴突切除的RS神经元中Ca 2 + 通道的下调以及钙内流的相关减少将细胞内钙水平维持在允许轴突再生的范围内。

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