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首页> 外文期刊>Human Molecular Genetics >Docosahexaenoic acid reduces microglia phagocytic activity via miR-124 and induces neuroprotection in rodent models of spinal cord contusion injury
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Docosahexaenoic acid reduces microglia phagocytic activity via miR-124 and induces neuroprotection in rodent models of spinal cord contusion injury

机译:Docosahexoonid酸通过MiR-124减少了微胶质细胞活性,并在脊髓挫伤损伤的啮齿动物模型中诱导神经保护

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摘要

Microglia are activated after spinal cord injury (SCI), but their phagocytic mechanisms and link to neuroprotection remain incompletely characterized. Docosahexaenoic acid (DHA) has been shown to have significant neuroprotective effects after hemisection and compression SCI and can directly affect microglia in these injury models. In rodent contusion SCI, we demonstrate that DHA (500 nmol/kg) administered acutely post-injury confers neuroprotection and enhances locomotor recovery, and also exerts a complex modulation of the microglial response to injury. In rodents, at 7 days after SCI, the level of phagocytosed myelin within Iba1-positive or P2Y12-positive cells was significantly lower after DHA treatment, and this occurred in parallel with an increase in intracellular miR-124 expression. Furthermore, intraspinal administration of a miR-124 inhibitor significantly reduced the DHA-induced decrease in myelin phagocytosis in mice at 7 days post-SCI. In rat spinal primary microglia cultures, DHA reduced the phagocytic response to myelin, which was associated with an increase in miR-124, but not miR-155. A similar response was observed in a microglia cell line (BV2) treated with DHA, and the effect was blocked by a miR-124 inhibitor. Furthermore, the phagocytic response of BV2 cells to stressed neurones was also reduced in the presence of DHA. In peripheral monocyte-derived macrophages, the expression of the M1, but not the M0 or M2 phenotype, was reduced by DHA, but the phagocytic activation was not altered. These findings show that DHA induces neuroprotection in contusion injury. Furthermore, the improved outcome is via a miR-124-dependent reduction in the phagocytic response of microglia.
机译:微胶质细胞在脊髓损伤(SCI)后被激活,但它们的吞噬机制和神经保护术链接仍然存在不完全。 DOCOSahexeno酸(DHA)已被证明在半切断和压缩SCI后具有显着的神经保护作用,并且可以直接影响这些损伤模型中的微胶质。在啮齿动物的挫伤SCI中,我们证明DHA(500 NMOL / kg)急性损伤后赋予神经保护和增强运动恢复,并且还施加了对损伤的微胶质反应的复杂调节。在啮齿动物中,在SCI后7天,DHA治疗后IBA1阳性或P2Y12阳性细胞内的吞噬细胞酵母蛋白水平显着降低,这与细胞内miR-124表达的增加并行发生。此外,在SCI后7天,MIR-124抑制剂的脊柱施用显着降低了DHA诱导的小鼠髓鞘吞噬作用的降低。在大鼠脊柱原发性微胶质细胞培养物中,DHA降低了对髓鞘的吞噬作用,这与miR-124的增加有关,但不是miR-155。在用DHA处理的小胶质细胞系(BV2)中观察到类似的响应,并且通过MIR-124抑制剂阻断效果。此外,在DHA存在下,BV2细胞对应激神经元的吞噬响应也降低。在外周单核细胞衍生的巨噬细胞中,DHA减少了M1,但不是M0或M2表型的表达,但未改变吞噬细胞活化。这些发现表明,DHA诱导挫伤损伤的神经保护。此外,改善的结果是通过MiR-124依赖性降低微胶质细胞的吞噬反应。

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  • 来源
    《Human Molecular Genetics》 |2019年第14期|共22页
  • 作者单位

    Queen Mary Univ London Barts &

    London Sch Med &

    Dent Blizard Inst Ctr Neurosci Surg &

    Trauma;

    Queen Mary Univ London Barts &

    London Sch Med &

    Dent Blizard Inst Ctr Neurosci Surg &

    Trauma;

    Ohio State Univ Wexner Med Ctr Ctr Brain &

    Spinal Cord Repair Dept Neurosci Columbus OH 43210;

    Queen Mary Univ London Barts &

    London Sch Med &

    Dent Blizard Inst Ctr Neurosci Surg &

    Trauma;

    Queen Mary Univ London Barts &

    London Sch Med &

    Dent Blizard Inst Ctr Neurosci Surg &

    Trauma;

    Queen Mary Univ London Barts &

    London Sch Med &

    Dent Blizard Inst Ctr Neurosci Surg &

    Trauma;

    Queen Mary Univ London Barts &

    London Sch Med &

    Dent Blizard Inst Ctr Neurosci Surg &

    Trauma;

    Queen Mary Univ London Barts &

    London Sch Med &

    Dent Blizard Inst Ctr Neurosci Surg &

    Trauma;

    Queen Mary Univ London Barts &

    London Sch Med &

    Dent Blizard Inst Ctr Neurosci Surg &

    Trauma;

    Queen Mary Univ London Barts &

    London Sch Med &

    Dent Blizard Inst Ctr Neurosci Surg &

    Trauma;

    Queen Mary Univ London Barts &

    London Sch Med &

    Dent Blizard Inst Ctr Neurosci Surg &

    Trauma;

    Ohio State Univ Wexner Med Ctr Ctr Brain &

    Spinal Cord Repair Dept Neurosci Columbus OH 43210;

    Queen Mary Univ London Barts &

    London Sch Med &

    Dent Blizard Inst Ctr Neurosci Surg &

    Trauma;

    Queen Mary Univ London Barts &

    London Sch Med &

    Dent Blizard Inst Ctr Neurosci Surg &

    Trauma;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学;
  • 关键词

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