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Pifithrin‐μ modulates microglial activation and promotes histological recovery following spinal cord injury

机译:Pifithrin-μ可调节小胶质细胞活化并促进脊髓损伤后的组织学恢复

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Background Treatments immediately after spinal cord injury (SCI) are anticipated to decrease neuronal death, disruption of neuronal connections, demyelination, and inflammation, and to improve repair and functional recovery. Currently, little can be done to modify the acute phase, which extends to the first 48?hours post‐injury. Efforts to intervene have focused on the subsequent phases — secondary (days to weeks) and chronic (months to years) — to both promote healing, prevent further damage, and support patients suffering from SCI. Methods We used a contusion model of SCI in female mice, and delivered a small molecule reagent during the early phase of injury. Histological and behavioral outcomes were assessed and compared. Results We find that the reagent Pifithrin‐μ (PFT‐μ) acts early and directly on microglia in vitro, attenuating their activation. When administered during the acute phase of SCI, PFT‐μ resulted in reduced lesion size during the initial inflammatory phase, and reduced the numbers of pro‐inflammatory microglia and macrophages. Treatment with PFT‐μ during the early stage of injury maintained a stable anti‐inflammatory environment. Conclusions Our results indicate that a small molecule reagent PFT‐μ has sustained immunomodulatory effects following a single dose after injury.
机译:背景技术脊髓损伤(SCI)后立即进行的治疗有望减少神经元死亡,神经元连接中断,脱髓鞘和炎症,并改善修复和功能恢复。目前,几乎没有什么可以改变急性期,急性期一直持续到受伤后的最初48小时。干预的工作重点放在随后的阶段-继发阶段(几天到几周)和慢性阶段(几个月到几年),以促进愈合,防止进一步的损害并支持患有SCI的患者。方法我们在雌性小鼠中使用了SCI挫伤模型,并在损伤的早期阶段提供了一种小分子试剂。组织学和行为结果进行了评估和比较。结果我们发现,试剂Pifithrin-μ(PFT-μ)可以在体外直接作用于小胶质细胞,从而减弱其激活作用。在SCI的急性期给药时,PFT-μ可导致炎性初期的病变缩小,并减少炎前小胶质细胞和巨噬细胞的数量。在受伤早期使用PFT-μ进行治疗可保持稳定的抗炎环境。结论我们的结果表明,小分子试剂PFT-μ在受伤后单次给药后具有持续的免疫调节作用。

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