首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Polydopamine-polyethylene glycol-albumin antifouling coatings on multiple substrates
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Polydopamine-polyethylene glycol-albumin antifouling coatings on multiple substrates

机译:多氨黄胺 - 聚乙二醇 - 白蛋白在多个基材上的防污涂层

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摘要

Aqueous-based coatings using combinations of polydopamine (PDA) (as bioadhesive) and grafted polyethylene glycol (PEG) (as antifouling agent) have been reported to reduce biofouling on multiple material surfaces. However, the achievable PEG grafting density and antifouling performance are limited, leaving exposed PDA to provide sites for attachment of proteins and cells. In the present work, we investigate the polymerization of dopamine on three substrate materials, polycarbonate membrane (PC), polydimethyl siloxane (PDMS), and soda lime glass, to evaluate the utility of the PDA coatings for application to multiple materials. Additionally, we propose that the PDA-PEG method may be improved by "backfilling'' with bovine serum albumin (BSA) as a blocker covering exposed PDA. AFM and ellipsometry studies revealed substantial differences in PDA thickness and roughness on each material despite their being modified under the same conditions. X-ray photoelectron spectroscopy (XPS) and water contact angle data revealed differences in PEG grafting on these materials as a consequence of varying PDA surface roughness, with the highest PEG coverage achieved on PC-PDA surfaces of intermediate roughness and lower PEG attachment on smoother PDMS-PDA surfaces. Fibrinogen adsorption experiments showed significantly less fouling on PDA-BSA surfaces compared to PDA-PEG for all three substrates, the larger BSA molecules presumably providing greater coverage of the PDA. On the PC and PDMS substrates, backfilling the PDA-PEG surfaces with BSA gave significant reductions in fibrinogen adsorption, with the lowest adsorption of 75 ng cm(-2) achieved on PC-PDA-PEG/BSA.
机译:据报道,使用聚二胺(PDA)(作为生物粘附)和接枝的聚乙二醇(PEG)(作为防污剂)的含水基涂层以减少多种材料表面上的生物污垢。然而,可实现的PEG移植密度和防污性能受到限制,留下暴露的PDA以提供用于附着蛋白质和细胞的部位。在本作本作中,我们研究了多巴胺对三种底物材料,聚碳酸酯膜(PC),聚二甲基硅氧烷(PDMS)和钠钙玻璃的聚合,以评估PDA涂层的用途涂覆到多种材料中。另外,我们提出通过用牛血清白蛋白(BSA)作为暴露的PDA的阻挡剂,通过“回填”(BSA)来改善PDA-PEG方法。AFM和椭偏测量研究表明,尽管它们存在,但尽管它们呈现了每种材料上的PDA厚度和粗糙度的显着差异在相同的条件下修饰。X射线光电子体光谱(XPS)和水接触角数据显示出由于不同的PDA表面粗糙度而导致这些材料上的PEG接枝的差异,并且在中间粗糙度的PC-PDA表面上实现了最高的PEG覆盖率和较低的PEG附着在更平滑的PDMS-PDA表面上。与所有三个基板的PDA-PEG相比,纤维蛋白原吸附实验在PDA-BSA表面上显示出显着较小,这是较大的BSA分子,可能提供更大的PDA覆盖。在PC和PDMS上底物,用BSA回填PDA-PEG表面,使纤维蛋白原吸附的显着减少,最低吸附75在PC-PDA-PEG / BSA上实现了NG CM(-2)。

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    McMaster Univ Sch Biomed Engn Hamilton ON Canada;

    Soochow Univ Coll Chem Chem Engn &

    Mat Sci Suzhou Jiangsu Peoples R China;

    Soochow Univ Coll Chem Chem Engn &

    Mat Sci Suzhou Jiangsu Peoples R China;

    Soochow Univ Coll Chem Chem Engn &

    Mat Sci Suzhou Jiangsu Peoples R China;

    McMaster Univ Sch Biomed Engn Hamilton ON Canada;

    McMaster Univ Dept Biol Hamilton ON Canada;

    McMaster Univ Sch Biomed Engn Hamilton ON Canada;

    Soochow Univ Coll Chem Chem Engn &

    Mat Sci Suzhou Jiangsu Peoples R China;

    McMaster Univ Sch Biomed Engn Hamilton ON Canada;

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  • 正文语种 eng
  • 中图分类 分析化学;
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