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首页> 外文期刊>Journal of biomedical materials research, Part A >A ferulic acid (FA)-eluting system for biodegradable magnesium stent: Cells response of HUVECs
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A ferulic acid (FA)-eluting system for biodegradable magnesium stent: Cells response of HUVECs

机译:可生物降解镁支架的阿魏酸(FA)洗脱系统:HUVEC的细胞反应

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摘要

A new drug-eluting system was designed for biodegradable magnesium stents, in which ferulic acid (FA) was used as drug due to its promotion function to endothelial cells and PHBHHx as drug delivery due to its biodegradability and biocompatibility. A 5 and 10% FA were added in PHBHHx to prepare FA containing PHBHHX films. The cell adhesion, spreading and proliferation on these films was investigated in order to assess cell response of HUVECs. It was also found that FA enhanced the adhesion, spreading and proliferation of HUVECs in a dose-dependent manner. Cell viability after H2O2 injury and NO production of HUVECs were also studied. The results indicated that FA effectively inhibited H2O2-induced injury and promotes NO production. It was also shown that alkali treatment improved the cell adhesion, spreading and proliferation while the treatment reduces the FA release and in turn reduces the inhibition on H2O2-induced injury and NO production. However, alkali treatment itself had no influence on the H2O2 induced injure and NO production. The tensile shear strength between the FA containing coating and Mg substrate was also tested. All results demonstrated that FA containing PHBHHx films exhibited strong promotion to the endothelialization and could be a choice for surface modification of magnesium stent. (c) 2015 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 103A: 2758-2769, 2015.
机译:针对可生物降解的镁支架设计了一种新的药物洗脱系统,其中阿魏酸(FA)由于其对内皮细胞的促进功能而被用作药物,而PHBHHx由于其可生物降解性和生物相容性而作为药物递送。在PHBHHx中添加5%和10%的FA以制备含有FA的PHBHHX膜。为了评估HUVEC的细胞反应,研究了在这些膜上的细胞粘附,扩散和增殖。还发现FA以剂量依赖的方式增强了HUVEC的粘附,扩散和增殖。还研究了H2O2损伤后细胞活力和HUVEC的NO生成。结果表明,FA有效抑制H2O2诱导的损伤并促进NO的产生。还显示了碱处理改善了细胞粘附,扩散和增殖,而该处理减少了FA的释放,进而减少了对H 2 O 2诱导的损伤和NO产生的抑制。但是,碱处理本身对H2O2引起的伤害和NO的产生没有影响。还测试了含FA的涂层和Mg基材之间的拉伸剪切强度。所有结果表明,含FA的PHBHHx膜对内皮化有很强的促进作用,并且可能是镁支架表面改性的选择。 (c)2015 Wiley Periodicals,Inc. J Biomed Mater Res Part A:103A:2758-2769,2015年。

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