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首页> 外文期刊>Plasma >Endothelialization of Polyethylene Terephthalate Treated in SO2 Plasma Determined by the Degree of Material Cytotoxicity
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Endothelialization of Polyethylene Terephthalate Treated in SO2 Plasma Determined by the Degree of Material Cytotoxicity

机译:物质对细胞的毒性程度决定了在SO2血浆中对苯二甲酸乙二醇酯的内皮化作用

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Improving the biocompatibility of polyethylene terephthalate (PET) vascular grafts is an important task for avoiding thrombus formation. Therefore, SO2 plasma at various treatment periods were used to modify PET surface properties by forming sulfate functional groups. These groups were shown to act antithrombogenically, ensuring good hemocompatibility of the materials, although the biocompatibility of such materials still remains a mystery. For this reason, the adhesion and viability of HUVEC cells on SO2 plasma-modified PET surfaces were studied, and the possible toxicity of the tested material was determined using two different assays, MTT (metabolic activity assay) and SRB (in-vitro toxicology assay). Changes in chemical composition, morphology and wettability were determined as well. Improved endothelialization was observed for all plasma-treated samples, with the most optimal being the sample treated for 80 s, which can be explained by it having the best combination of surface functionalization, roughness and morphology. Furthermore, toxicity was observed to some extent on the sample treated for 160 s, indicating the lowest cell density among the plasma-treated samples. X-ray photoelectron spectroscopy showed increased oxygen and sulfur content on the surface, which was independent on treatment time. Surface roughness of the plasma-treated samples increased, reaching its maximum after 80 s of treatment, and decreased thereafter.
机译:改善聚对苯二甲酸乙二醇酯(PET)血管移植物的生物相容性是避免血栓形成的重要任务。因此,在各种处理时期的SO 2等离子体被用于通过形成硫酸盐官能团来修饰PET表面性质。这些组显示出抗血栓形成的作用,确保了材料的良好血液相容性,尽管这些材料的生物相容性仍然是一个谜。因此,研究了HUVEC细胞在经SO2等离子体改性的PET表面上的粘附力和生存力,并使用MTT(代谢活性测定)和SRB(体外毒理测定)这两种不同的测定方法确定了被测物质的可能毒性。 )。还确定了化学组成,形态和润湿性的变化。观察到所有经血浆处理的样品的内皮化均得到改善,最理想的是处理了80 s的样品,这可以用表面功能化,粗糙度和形态的最佳组合来解释。此外,在处理160 s的样品上观察到一定程度的毒性,这表明在血浆处理的样品中细胞密度最低。 X射线光电子能谱显示表面上的氧和硫含量增加,这与处理时间无关。经等离子体处理的样品的表面粗糙度增加,在处理80 s后达到其最大值,然后降低。

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