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Combination of applied electric field and polyethylene glycol effectively enhance functional recovery in acute spinal cord injury of rats

机译:施加电场和聚乙二醇的结合可有效增强大鼠急性脊髓损伤的功能恢复

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Applied electric field stimulation (EFS) can reduce extracellular Ca2+ influx and consequently enhance functional recovery after spinal cord injury (SCI). However, the influx of Ca2+ continued through disrupted membranes when EFS completed. As polyethylene glycol (PEG) can reseal the damaged membranes, we proposed a hypothesis that combination therapy of EFS and PEG may effectively prevent Ca2+ influx and further promote functional recovery in rats subjected to SCI. Rats were randomly divided into three groups: saline group, treated with saline only; control group, treated with EFS and saline; and experimental group, treated with EFS and PEG. The effects of EFS combined with PEG were assessed by means of injury potential and Basso, Beattie, and Bresnahan (BBB) scores. Data showed that the injury potential at the moment of EFS termination in experimental group was significantly smaller compared with that in control group, but higher than that in saline group. Moreover, the BBB scores in experimental group were significantly higher than those in other groups. These findings suggest that combination therapy of EFS and PEG could further enhance functional recovery in acute SCI of rats.
机译:施加电场刺激(EFS)可以减少细胞外Ca2 +内流,从而增强脊髓损伤(SCI)后的功能恢复。然而,当EFS完成时,Ca2 +的流入继续通过破裂的膜。由于聚乙二醇(PEG)可以重新密封受损的膜,因此我们提出了一种假设,即EFS和PEG的联合治疗可有效预防Ca2 +流入并进一步促进SCI大鼠的功能恢复。将大鼠随机分为三组:生理盐水组,仅接受生理盐水治疗;和对照组,给予EFS和生理盐水治疗;实验组用EFS和PEG治疗。 EFS结合PEG的效果通过潜在伤害和Basso,Beattie和Bresnahan(BBB)评分进行评估。数据显示,实验组EFS终止时的损伤潜力明显低于对照组,但高于生理盐水组。此外,实验组的BBB评分明显高于其他组。这些发现表明,EFS和PEG的联合治疗可以进一步增强大鼠急性SCI的功能恢复。

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