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首页> 外文期刊>Journal of Microscopy >Independent trafficking of flavocytochrome b558 and myeloperoxidase to phagosomes during phagocytosis visualised by energy‐filtering and energy‐dispersive spectroscopy‐scanning transmission electron microscopy
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Independent trafficking of flavocytochrome b558 and myeloperoxidase to phagosomes during phagocytosis visualised by energy‐filtering and energy‐dispersive spectroscopy‐scanning transmission electron microscopy

机译:通过能量滤波和能量分散光谱扫描透射电子显微镜观察吞噬作用期间黄鳞皮B558和MyeloperoxiDase对吞噬作用的吞噬作用

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摘要

Summary When polymorphonuclear leukocytes (PMNs) phagocytose opsonised zymosan particles (OPZ), free radicals and reactive oxygen species (ROS) are formed in the phagosomes. ROS production is mediated by NADPH oxidase (Nox), which transfers electrons in converting oxygen to superoxide (O 2 ? ). Nox‐generated O 2 ? is rapidly converted to other ROS. Free radical‐forming secretory vesicles containing the Nox redox center flavocytochrome b558, a membrane protein, and azurophil granules with packaged myeloperoxidase (MPO) have been described. Presuming the probable fusion of these vesicular and granular organelles with phagosomes, the translation process of the enzymes was investigated using energy‐filtering and energy‐dispersive spectroscopy‐scanning transmission electron microscopy. In this work, the primary method for imaging cerium (Ce) ions demonstrated the localisation of H 2 O 2 generated by phagocytosing PMNs. The MPO activity of the same PMNs was continuously monitored using 0.1% 3,3′‐diaminobenzidine‐tetrahydrochloride (DAB) and 0.01% H 2 O 2 . A detailed view of these vesicular and granular structures was created by overlaying each electron micrograph with pseudocolors: blue for Ce and green for nitrogen (N).
机译:发明内容当多核白细胞(PMNS)吞噬噬菌体OPSONIACE Zymosan颗粒(OPZ),在吞噬体中形成自由基和反应性氧物质(ROS)。 ROS生产由NADPH氧化酶(NOx)介导,该氧化酶(NOx)将电子转移到超氧化物(O 2 2)中转换氧气。 nox生成的o 2?快速转换为其他ROS。已经描述了含有NOx氧化还原中心黄酮核B558,膜蛋白和具有包装髓过氧化物酶(MPO)的自由基形成分泌囊泡。使用能量滤波和能量分散光谱扫描透射电子显微镜研究酶的翻译过程,预测这些囊泡和粒状细胞器的可能融合,研究了酶的翻译过程。在这项工作中,对铈(Ce)离子的主要方法证明了通过吞噬PMN产生的H 2 O 2的定位。使用0.1%3,3'-二氨基苯甲酸四氯化物(DAB)和0.01%H 2 O 2连续监测相同PMN的MPO活性。通过将每个电子显微照片与伪菌器覆盖来创建这些囊泡和粒状结构的详细视图:用于CE和氮气的蓝色,用于氮气(n)。

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