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首页> 外文期刊>Antioxidants and redox signalling >Spatial coordination of cell-adhesion molecules and redox cycling of iron in the microvascular inflammatory response to pulmonary injury.
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Spatial coordination of cell-adhesion molecules and redox cycling of iron in the microvascular inflammatory response to pulmonary injury.

机译:在肺损伤的微血管炎症反应中,细胞粘附分子的空间协调和铁的氧化还原循环。

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Transmigration of phagocytic leukocytes (PLCs) from the peripheral blood into injured lung requires a conversion of the microvascular endothelial cells (ECs) to the proinflammatory phenotypes and spatiotemporal interplay of different types of cell adhesion molecules (CAMs) on PLC and endothelium. The present report is focused on involvement of iron-dependent redox signaling in spatial coordination of lung CAM due to either a pulmonary trauma or endotracheal iron administration in rats. Redox alterations, deposition of 3-nitrotyrosine, expression of VE-cadherin, ICAM-1, and the PLC integrins, and the status of thioredoxin, Ref-1, NF-kappaB and Nrf2 redox-sensitive elements in the alveolar microvasculature were assessed with EPR spectroscopy, immunobloting, and confocal microscopy. We demonstrated for the first time in vivo that the presence of catalytically active iron, deposition of myeloperoxidase, and induction of the oxidative stress in the lung-injury models were accompanied by (a) downregulation of VE-cadherin, (b) upregulation and polarization of ICAM-1 and the PLC integrins, and (c) nuclear translocation and interaction of thioredoxin, Ref-1, and NF-kappaB and complex structural changes in EC and PLC at the sites of their contacts. The studies suggested that a part of the proinflammatory action of iron in the lung resulted from its stimulation of the redox-sensitive factors.
机译:吞噬白细胞(PLC)从外周血向受损肺的迁移需要将微血管内皮细胞(EC)转化为促炎表型,并在PLC和内皮细胞上不同类型的细胞粘附分子(CAM)发生时空相互作用。本报告的重点是在大鼠中由于肺外伤或气管内施用铁而导致的铁依赖性氧化还原信号参与了肺CAM的空间协调。评估了肺泡微脉管系统中氧化还原的变化,3-硝基酪氨酸的沉积,VE-钙黏着蛋白,ICAM-1和PLC整联蛋白的表达以及硫氧还蛋白,Ref-1,NF-κB和Nrf2氧化还原敏感元件的状态。 EPR光谱,免疫印迹和共聚焦显微镜。我们首次在体内证明了肺损伤模型中催化活性铁的存在,髓过氧化物酶的沉积以及氧化应激的诱导伴随着(a)VE-钙黏着蛋白的下调,(b)上调和极化ICAM-1和PLC整合素的结构,以及(c)硫氧还蛋白,Ref-1和NF-κB的核转运和相互作用,以及EC和PLC接触部位的复杂结构变化。研究表明,铁在肺中的部分促炎作用是由铁对氧化还原敏感因子的刺激引起的。

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