首页> 外文期刊>Toxicology in vitro: an international journal published in association with BIBRA >Surface modification by argon plasma treatment improves antioxidant defense ability of CHO-k1 cells on titanium surfaces
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Surface modification by argon plasma treatment improves antioxidant defense ability of CHO-k1 cells on titanium surfaces

机译:氩等离子体处理的表面改性提高了钛表面上CHO-k1细胞的抗氧化防御能力

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摘要

Titanium is one of the most used materials in implants and changes in its surface can modify the cellular functional response to better implant fixation. An argon plasma treatment generates a surface with improved mechanical proprieties without modifying its chemical composition. Oxidative stress induced by biomaterials is considered one of the major causes of implant failure and studies in this field are fundamental to evaluate the biocompatibility of a new material. Therefore, in this work, induction of oxidative stress by titanium surfaces subjected to plasma treatment (PTTS) was evaluated. The viability of CHO-k1 cells was higher on PTTS discs. Cells grown on titanium surfaces are subjected to intracellular oxidative stress. Titanium discs subjected to the plasma treatment induced less oxidative stress than the untreated ones, which resulted in improved cellular survival. These were associated with improved cellular antioxidant response in Plasma Treated Titanium Surface (PTTS). Furthermore, a decrease in protein and DNA oxidative damage was observed on cells grown on the roughed surface when compared to the smooth one. In conclusion, our data suggest that the treatment of titanium with argon plasma may improve its biocompatible, thus improving its performance as implants or as a scaffold in tissue engineering.
机译:钛是植入物中最常用的材料之一,其表面的变化可以改变细胞的功能性反应,从而更好地固定植入物。氩等离子体处理产生具有改善的机械性能的表面,而没有改变其化学组成。生物材料引起的氧化应力被认为是植入失败的主要原因之一,该领域的研究对于评估新材料的生物相容性至关重要。因此,在这项工作中,评估了经过等离子体处理(PTTS)的钛表面引起的氧化应激。在PTTS光盘上,CHO-k1细胞的活力更高。在钛表面生长的细胞受到细胞内氧化应激。进行了等离子处理的钛圆盘比未处理的钛圆盘诱导更少的氧化应激,从而提高了细胞存活率。这些与在等离子体处理的钛表面(PTTS)中改善的细胞抗氧化反应有关。此外,与光滑表面相比,在粗糙表面上生长的细胞中蛋白质和DNA氧化损伤减少。总之,我们的数据表明,用氩等离子体处理钛可以改善其生物相容性,从而改善其作为植入物或组织工程中的支架的性能。

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