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缺氧通过重新组织细胞肌动蛋白结构扰乱内皮:一氧化氮提供的保护有限。

Hypoxia perturbs endothelium by re-organizing cellular actin architecture: Nitric oxide offers limited protection.

作者信息

Swaminathan Akila, Kasiviswanathan Dharanibalan, Balaguru Uma Maheswari, Kolluru Gopi Krishna, SuryaKumar Geetha, Chatterjee Suvro

机构信息

Vascular Biology Lab, AU-KBC Research Centre, MIT Campus of Anna University, Chennai, India.

Department of Biotechnology, Anna University, Chennai, India.

出版信息

Tissue Cell. 2018 Feb;50:114-124. doi: 10.1016/j.tice.2017.12.007. Epub 2017 Dec 23.

Abstract

Exposure to hypoxia causes structural changes in the endothelial cell (EC) monolayer that alter its permeability. There was a report earlier of impairment of nitric oxide (NO) production in endothelium. The intervention of NO in the altered cellular arrangements of actin cytoskeleton in endothelium for rectification of paracellular gaps in endothelium under hypoxia was observed. The present study demonstrates hypoxia inducing paracellular gaps in hypoxia-exposed blood capillaries in chick embryo extravascular model. Phalloidin staining confirmed significant polymerization of actin and unique cellular localization of the F-actin bands under hypoxia treatments. Addition of spermine NONOate (SPNO), a NO donor, or reoxygenation to endothelial monolayer attenuated hypoxia-mediated effects on endothelial permeability with partial recovery of endothelial integrity through actin remodeling. The present study indicates link of hypoxia-induced actin-associated cytoskeletal rearrangements and paracellular gaps in the endothelium with a low NO availability in the hypoxia milieu. The author concludes that NO confers protection against hypoxia-mediated cytoskeletal remodeling and endothelial leakiness.

摘要

暴露于低氧环境会导致内皮细胞(EC)单层结构发生变化,从而改变其通透性。早期有报告称内皮细胞中一氧化氮(NO)的生成受损。研究观察到,在低氧环境下,NO可干预内皮细胞中肌动蛋白细胞骨架的细胞排列改变,以修复内皮细胞间的间隙。本研究表明,在鸡胚血管外模型中,低氧会导致暴露于低氧环境的毛细血管出现细胞间间隙。鬼笔环肽染色证实,在低氧处理下,肌动蛋白发生了显著聚合,且F-肌动蛋白带具有独特的细胞定位。向内皮细胞单层添加NO供体精胺NONOate(SPNO)或复氧,可减轻低氧对内皮通透性的影响,并通过肌动蛋白重塑使内皮完整性部分恢复。本研究表明,低氧诱导的内皮细胞中肌动蛋白相关的细胞骨架重排和细胞间间隙与低氧环境中NO可用性降低有关。作者得出结论,NO可保护细胞免受低氧介导的细胞骨架重塑和内皮渗漏的影响。

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