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Evidence for a protective role of the CX3CL1/CX3CR1 axis in a model of amyotrophic lateral sclerosis

机译:CX3Cl1 / CX3CR1轴在肌营养的侧面硬化模型中的证据

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摘要

Aberrant microglial activation and neuroinflammation is a pathological hallmark of amyotrophic lateral sclerosis (ALS). Fractalkine (CX3CL1) is mostly expressed on neuronal cells. The fractalkine receptor (CX3CR1) is predominantly expressed on microglia. Many progressive neuroinflammatory disorders show disruption of the CX3CL1/CX3CR1 communication system. But the exact role of the CX3CL1/CX3CR1 in ALS pathology remains unknown. F1 nontransgenic/CX3CR1+/? females were bred with SOD1G93A/CX3CR1+/? males to produce F2 SOD1G93A/CX3CR1?/?, SOD1G93A/CX3CR1+/+. We analyzed end-stage (ES) SOD1G93A/CX3CR1?/? mice and progression-matched SOD1G93A/CX3CR1+/+ mice. Our study showed that the male SOD1G93A/CX3CR1?/? mice died sooner than male SOD1G93A/CX3CR1+/+ mice. In SOD1G93A/CX3CR1?/? mice demonstrated more neuronal cell loss, more microglial activation and exacerbated SOD1 aggregation at the end-stage of ALS. The NF-κB pathway was activated; the autophagy-lysosome degradation pathway and the autophagosome maturation were impaired. Our results indicated that the absence of CX3CR1/CX3CL1 signaling in the central nervous system (CNS) may worsen neurodegeneration. The CX3CL1/CX3CR1 communication system has anti-inflammatory and neuroprotective effects and plays an important role in maintaining autophagy activity. This effort may lead to new therapeutic strategies for neuroprotection and provide a therapeutic target for ALS patients.
机译:异常的小胶质激活和神经炎症是肌营养的侧面硬化症(ALS)的病理标志。弗伐胺(CX3Cl1)大多在神经元细胞上表达。抗碎裂受体(CX3CR1)主要在小胶质细胞上表达。许多渐进神经胰腺炎疾病显示CX3CL1 / CX3CR1通信系统的破坏。但CX3CL1 / CX3CR1在ALS病理学中的确切作用仍然未知。 f1 nontranscenic / cx3cr1 + /?女性用SOD1G93A / CX3CR1 + /?男性生产F2 SOD1G93A / CX3CR1?/α,SOD1G93A / CX3CR1 + / +。我们分析了最终阶段(ES)SOD1G93A / CX3CR1?/?小鼠和进展匹配的SOD1G93A / CX3CR1 / +小鼠。我们的研究表明,雄性SOD1G93A / CX3CR1?/?小鼠比雄性SOD1G93A / CX3CR1 + / +小鼠迅速死亡。在SOD1G93A / CX3CR1中?/?小鼠在ALS的最终阶段显示出更多的神经元细胞损失,更多的小胶质激活和加剧SOD1聚集。 NF-κB途径被激活;自噬 - 溶酶体降解途径和自噬体现效果受到损害。我们的结果表明,中枢神经系统(CNS)中没有CX3CR1 / CX3CL1信号传导可能恶化。 CX3Cl1 / CX3CR1通信系统具有抗炎和神经保护作用,并在维持自噬作用方面发挥重要作用。这项努力可能导致新的神经保护症的新治疗策略,并为ALS患者提供治疗靶标。

著录项

  • 来源
    《Biological chemistry》 |2019年第5期|共11页
  • 作者单位

    Department of Neurology The Second Hospital of Hebei Medical University Shijiazhuang 050000;

    Department of Neurology The Second Hospital of Hebei Medical University Shijiazhuang 050000;

    Department of Neurology Hebei Province People’s Hospital Shijiazhuang 050000 Hebei People’s;

    Department of Rehabilitation Medicine The Second Hospital of Hebei Medical University;

    Neurological Laboratory of Hebei Province Shijiazhuang 050000 Hebei People’s Republic of China;

    Neurological Laboratory of Hebei Province Shijiazhuang 050000 Hebei People’s Republic of China;

    Department of Neurology The Second Hospital of Hebei Medical University Shijiazhuang 050000;

    Department of Neurology The Second Hospital of Hebei Medical University Shijiazhuang 050000;

    Neurological Laboratory of Hebei Province Shijiazhuang 050000 Hebei People’s Republic of China;

    Neurological Laboratory of Hebei Province Shijiazhuang 050000 Hebei People’s Republic of China;

    Department of Neurology The Second Hospital of Hebei Medical University Shijiazhuang 050000;

    Department of Neurology The Second Hospital of Hebei Medical University Shijiazhuang 050000;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

    amyotrophic lateral sclerosis (ALS); autophagy; CX3CR1; inflammatory;

    机译:肌营养的外侧硬化症(ALS);自噬;CX3CR1;炎症;

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