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Effects of hydrogen-occluding-silica microparticles on wound repair and cell migratory behavior of normal human esophageal epitheliocytes

机译:吸氢二氧化硅微粒对正常人食管上皮细胞伤口修复和细胞迁移行为的影响

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摘要

Many conventional studies on molecular hydrogen have not examined cell migration ability and the relationship between apoptosis and the cytoskeleton. Here we investigated the influence of hydrogen-occluding silica microparticles (H2-silica) on cell migration motility and changes of the cytoskeleton (F-actin) in normal human esophageal epithelial cells (HEEpiCs). As the results, cell migration was promoted, and formation of microvilli was activated in the 100 ppm (low concentration) scratched group. After performing a wound healing assay, cells exhibited migration after 48 hours and 72 hours for both 10 ppm and 100 ppm groups, suggesting that the wound-repairing effects could be attributed to the antioxidant ability of H2-silica. In scratched groups, high levels of activated caspase-3 were relatively expressed and presented a tendency to increase the observed Bax/Bcl-2 ratio at more than 300 ppm groups. The above-mentioned results show that H2-silica induced apoptosis in HEEpiCs, especially in the scratched cells. Toxicity may cause an exaggerated apoptosis. Furthermore, since the ratio of fascin/tubulin in the 100, 300, and 600 ppm groups tended to increase in both the scratched and the non-scratched control groups, H2-silica was thought to be able to promote fascin action on normal cells and may be have a proliferative effect.
机译:关于分子氢的许多常规研究尚未检查细胞迁移能力以及细胞凋亡与细胞骨架之间的关系。在这里,我们研究了正常人食管上皮细胞(HEEpiCs)中吸氢的二氧化硅微粒(H2-二氧化硅)对细胞迁移运动和细胞骨架(F-actin)变化的影响。结果,促进了细胞迁移,并且在100ppm(低浓度)抓挠组中激活了微绒毛的形成。进行伤口愈合测定后,对于10 ppm和100 ppm组,细胞在48小时和72小时后均出现迁移,这表明伤口修复效果可能归因于H2-二氧化硅的抗氧化能力。在抓挠的组中,较高水平的活化的caspase-3被相对表达,并且在超过300 ppm的组中呈现出增加观察到的Bax / Bcl-2比率的趋势。上述结果表明,H 2-二氧化硅诱导了HEEpiC中的细胞凋亡,特别是在被刮擦的细胞中。毒性可能导致细胞凋亡过大。此外,由于挠性和非挠性对照组中100、300和600 ppm组中的fascin /微管蛋白的比例均趋于增加,因此,人们认为H2-二氧化硅能够促进fascin对正常细胞和肌动蛋白的作用。可能有增生作用。

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