首页> 美国卫生研究院文献>Frontiers in Neurology >Activation of the Large-Conductance Voltage and Ca2+- Activated K+ (BK) Channel in Acute Spinal Cord Injury in the Wistar Rat Is Neuroprotective
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Activation of the Large-Conductance Voltage and Ca2+- Activated K+ (BK) Channel in Acute Spinal Cord Injury in the Wistar Rat Is Neuroprotective

机译:Wistar大鼠急性脊髓损伤中大电导电压和Ca2 +-激活的K +(BK)通道的激活具有神经保护作用。

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摘要

>Context/Objectives: Spinal cord injury (SCI) results in significant neuronal and glial cell death resulting in impaired neurological and motor function. Uncontrolled Ca2+ entry results in excitotoxicity and cell death. In this study, we examine the use of a BK channel activator, Isopimaric acid (ISO), as a neuroprotective agent post-SCI as this channel is involved in regulating Ca2+ entry.>Design:By using a 25-g clip compression at the T6 level, we generated a SCI event in wistar rats. At 1 h post-injury we administered ISO (BK channel activator), the BK channel inhibitor iberiotoxin (IbTx), or a vehicle control for 4 weeks via mini osmotic pump (pump capacity). For 8 weeks post-injury, gait analysis of motor function was performed. At the end of 8 weeks, the extent of myelination in the spinal cord was assessed in addition to the electrophysiological profile.>Results:Our immunohistological data suggests that ISO treatment leads to an increase or preservation of myelinated axonal tracts. This was further supported by our electrophysiological studies which demonstrate higher compound action potential amplitudes and speed of transmission in ISO-treated animals compared to inj-non-treated. Finally, treatment with ISO significantly improved motor function in our test model.>Conclusion: In conclusion, activation of the BK channel during acute SCI may be a novel therapeutic target for acute SCI.
机译:>背景/目标:脊髓损伤(SCI)导致大量神经元和神经胶质细胞死亡,导致神经和运动功能受损。不受控制的Ca 2 + 进入会导致兴奋性毒性和细胞死亡。在这项研究中,我们研究了使用BK通道激活剂异海藻酸(ISO)作为SCI后的神经保护剂,因为该通道参与调节Ca 2 + 的进入。>设计:通过在T6级别使用25 g的夹子压缩,我们在wistar大鼠中产生了SCI事件。受伤后1小时,我们通过微型渗透泵(泵容量)施用ISO(BK通道激活剂),BK通道抑制剂埃博毒素(IbTx)或媒介物对照,持续4周。受伤后8周,进行运动功能的步态分析。在8周结束时,除电生理特征外,还评估了脊髓中的髓鞘形成程度。>结果:我们的免疫组织学数据表明,ISO治疗可导致髓鞘化的轴索增加或保留。 。我们的电生理研究进一步证明了这一点,该研究表明,与未经注射处理的动物相比,经ISO处理的动物的复合动作电位振幅和传播速度更高。最后,在我们的测试模型中,使用ISO的治疗显着改善了运动功能。>结论:总之,急性SCI期间BK通道的激活可能是急性SCI的新治疗靶点。

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