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首页> 外文期刊>Surface & Coatings Technology >Anti-fouling and anti-coagulation capabilities of PEDOT-biopolymer coating by in-situ electrochemical copolymerization
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Anti-fouling and anti-coagulation capabilities of PEDOT-biopolymer coating by in-situ electrochemical copolymerization

机译:原位电化学共聚抗污染和抗凝固能力探测器 - 生物聚合物涂层

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摘要

In this study, 3,4-ethylenedioxythiophene (EDOT), polystyrene sulfonate (PSS), chondroitin sulfate (CHS), and carboxymethyl-hexanoyl chitosan (CHC) nanohybrids were coated on nitrogen plasma pre-treated SUS316L stainless steel using in-situ electrochemically copolymerization. The negatively charged PSS, CHS, and CHC were used to repel the negatively charged proteins, platelets, and cell walls of bacteria (E. coli) to achieve anti-fouling and anti-clotting capabilities. The anti-fouling capabilities of the poly-3,4-ethylenedioxythiophene (PEDOT) derivative coatings had the following order: PEDOT/CHC/CHS > PEDOT/CHS > PEDOT/CHS/PSS > PEDOT/PSS > pristine SUS316L. In particular, with the addition of CHC, the PEDOT/CHC/CHS coating could decrease the adhesion of platelets and bacteria using the functional group (-COOH) of CHC. The blood clotting time (activated partial thromboplastin time) of the PEDOT/CHC/CHS substrates was prolonged to 48 s, compared to the 32 s required for the pristine SUS316L stainless steel, showing the good hemocompatibility. Furthermore, cytotoxicity tests showed that PEDOT and its derivatives exhibited very good biocompatibility. Thus, they could potentially be applied in anti-clotting, anti-fouling, and anti-bacterial biomedical devices such as cardiovascular stents.
机译:在该研究中,将3,4-亚乙二醇硫代噻吩(编排),聚苯乙烯磺酸盐(PSS),软骨素硫酸盐(CHS)和羧甲基 - 己酰基壳聚糖(CHC)纳米冬次用在氮等离子体预处理的SUS316L不锈钢上涂覆在氮等离子化上共聚。使用带负电的PSS,CHS和CHC来排斥带负电的蛋白质,血小板和细菌(大肠杆菌)的细胞壁以实现抗污垢和抗凝血能力。聚-3,4-亚乙二氧基噻吩(PEDOT)衍生物涂层的抗污染能力具有以下顺序:PEDOT / CHC / CHS> PEDOT / CHS> PEDOT / CHS / PSS> PEDOT / PSS>原始SUS316L。特别地,随着CHC的添加,PEDOT / CHC / CHS涂层可以使用CHC的官能团(-COOH)来降低血小板和细菌的粘附性。与原始SUS316L不锈钢所需的32秒相比,延长了PEDOT / CHC / CHS底物的血液凝血时间(活化的部分血小板蛋白时间)至48s,显示出良好的血液相容性。此外,细胞毒性试验表明,PEDOT及其衍生物表现出非常好的生物相容性。因此,它们可能适用于抗凝血,防污,抗菌生物医学装置,例如心血管支架。

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