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首页> 外文期刊>Analytical chemistry >Fluorescence-Based Tool To Detect Endogenous Peroxynitrite in M1-Polarized Murine J774.2 Macrophages
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Fluorescence-Based Tool To Detect Endogenous Peroxynitrite in M1-Polarized Murine J774.2 Macrophages

机译:基于荧光的工具检测M1-偏振鼠J774.2巨噬细胞中的内源性过氧化物

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Oxidative stress and inflammation are intrinsically linked to each other. In addition, they are implicated in the evolution and progression of noncommunicable diseases (NCDs). Large amounts of reactive oxygen species (ROS) are generated as part of the immune response toward NCDs. Among all of the ROS species, peroxynitrite (ONOO-) has the shortest half-life with 20 ms under typical physiological conditions. Hence, detecting ONOO- and studying its generation in vitro allows for a better understanding of inflammatory processes. We demonstrate that peroxyresorufin-1 (PR1) is a selective and sensitive ONOO- fluorescence-based sensor in J774.2 macrophages. PR1 was able to detect changes in ONOO- production upon investigation of different factors: enhanced generation of ONOO- through LPS and IFN-gamma as well as diminished ONOO- production with the introduction of superoxide scavengers and nitric oxide synthase inhibitors. Our study validates PR1 as an effective tool for the detection of ONOO- in J774.2 murine macrophages and should allow for further elucidation of ROS biology and chemistry.
机译:氧化应激和炎症本质上彼此连接。此外,它们涉及非传染性疾病(NCD)的演变和进展。产生大量的活性氧(ROS)作为对NCD的免疫应答的一部分产生。在所有ROS种类中,过氧基酯(ONOO-)具有最短的半衰期,在典型的生理条件下具有最短的半衰期。因此,检测在体外的内部和研究其生成允许更好地理解炎症过程。我们证明Peroxyresorufin-1(Pr1)是J774.2巨噬细胞中的基于选择性和敏感的ONOO-荧光传感器。 PR1能够在调查不同因素时检测onoo-生产的变化:通过引入超氧化物清除剂和一氧化氮合酶抑制剂,增强了ONOO-通过LPS和IFN-GAMMA的产生以及减少的onoo-生产。我们的研究将PR1验证为检测ONOO-在J774.2鼠巨噬细胞中的有效工具,并应允许进一步阐明ROS生物学和化学。

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