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首页> 外文期刊>Biochemistry >Aging Enhances the Production of Reactive Oxygen Species and Bactericidal Activity in Peritoneal Macrophages by Upregulating Classical Activation Pathways
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Aging Enhances the Production of Reactive Oxygen Species and Bactericidal Activity in Peritoneal Macrophages by Upregulating Classical Activation Pathways

机译:通过上调经典活化途径,衰老增强了腹膜巨噬细胞的活性氧物质和杀菌活性的产生

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摘要

Maintenance of macrophages in their basal state and their rapid activation in response to pathogen detection are central to the innate immune system, acting to limit nonspecific oxidative damage and promote pathogen killing following infection. To identify possible age-related alterations in macrophage function, we have assayed the function of peritoneal macrophages from young (3-4 months) and aged (14-15 months) Balb/c mice. In agreement with prior suggestions, we observe age-dependent increases in the extent of recruitment of macrophages into the peritoneum, as well as ex vivo functional changes involving enhanced nitric oxide production under resting conditions that contribute to a reduction in the time needed for full activation of senescent macrophages following exposure to lipopolysaccharides (LPS). Further, we observe enhanced bactericidal activity following Salmonella uptake by macrophages isolated from aged Balb/c mice in comparison with those isolated from young animals. Pathways responsible for observed phenotypic changes were interrogated using tandem mass spectrometry, which identified age-dependent increases in levels of proteins linked to immune cell pathways under basal conditions and following LPS activation. Immune pathways upregulated in macrophages isolated from aged mice include proteins critical to the formation of the immunoproteasome. Detection of these latter proteins is dramatically enhanced following LPS exposure for macrophages isolated from aged animals; in comparison, the identification of immunoproteasome subunits is insensitive to LPS exposure for macrophages isolated from young animals. Consistent with observed global changes in the proteome, quantitative proteomic measurements indicate that there are age-dependent abundance changes involving specific proteins linked to immune cell function under basal conditions. LPS exposure selectively increases the levels of many proteins involved in immune cell function in aged Balb/c mice. Collectively, these results indicate that macrophages isolated from old mice are in a preactivated state that enhances their sensitivities to LPS exposure. The hyper-responsive activation of macrophages in aged animals may act to minimize infection by general bacterial threats that arise due to age-dependent declines in adaptive immunity. However, this hypersensitivity and the associated increase in the level of formation of reactive oxygen species are likely to contribute to observed age-dependent increases in the level of oxidative damage that underlie many diseases of the elderly.
机译:在基础状态下维持巨噬细胞及其响应于病原体检测的快速激活是先天免疫系统的核心,用于限制非特异性氧化损伤并促进感染后杀伤病原体杀伤。为了确定巨噬细胞功能中可能的年龄相关的改变,我们已经测定了腹膜巨噬细胞的功能来自年轻(3-4个月)和年龄(14-15个月)Balb / C小鼠。在与现有建议的同意中,我们观察血液募集程度的年龄依赖性增加,以及涉及增强的一氧化氮产生的静态氧化氮产生,这些变化有助于减少全激活所需的时间暴露于脂多糖(LPS)后的衰老巨噬细胞。此外,我们观察到从老年BALB / C小鼠中分离的巨噬细胞的沙门氏菌摄取后的增强的杀菌活性与从幼小动物分离的那些相比。使用串联质谱法询问负责观察到的表型变化的途径,其鉴定在基础条件下和LPS激活下与免疫细胞途径相关的蛋白质水平依赖性增加。从老年小鼠中分离的巨噬细胞上调的免疫途径包括蛋白质,其对ImMunokoteAme的形成至关重要。在从老年动物中分离的巨噬细胞的LPS暴露后,显着增强了这些后一种蛋白质的检测;相比之下,免疫促蛋白酶体亚基对从幼小动物分离的巨噬细胞的LPS暴露不敏感。与观察到的蛋白质组中的全局变化一致,定量蛋白质组学测量表明,涉及在基础条件下与免疫细胞功能相关的特异性蛋白质存在年龄依赖性的丰富变化。 LPS曝光选择性地增加了在老年BALB / C小鼠中参与免疫细胞功能中所涉及的许多蛋白质的水平。总的来说,这些结果表明,从旧小鼠中分离的巨噬细胞处于预活化状态,其增强其对LPS暴露的敏感性。老年动物中巨噬细胞的超敏敏激活可以使由于年龄依赖性免疫因年龄依赖性下降而产生的一般细菌威胁的感染最小化。然而,这种超敏反应和反应性氧物质形成水平的相关增加可能有助于观察到的年龄依赖性增加,氧化损伤水平的增加的老年人的疾病。

著录项

  • 来源
    《Biochemistry》 |2011年第45期|共12页
  • 作者单位

    Biological Sciences Division Pacific Northwest National Laboratory Richland Washington 99354 United States;

    Biological Sciences Division Pacific Northwest National Laboratory Richland Washington 99354 United States;

    Biological Sciences Division Pacific Northwest National Laboratory Richland Washington 99354 United States;

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

    Production; Oxygen; Pathways;

    机译:生产;氧气;途径;

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