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首页> 外文期刊>Frontiers in Chemistry >Analysis of interaction between interfacial structure and fibrinogen at blood-compatible polymer/water interface
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Analysis of interaction between interfacial structure and fibrinogen at blood-compatible polymer/water interface

机译:血液相容性聚合物/水界面的界面结构与纤维蛋白原相互作用的分析

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摘要

The correlation between the interfacial structure and protein adsorption at a polymer/water interface was investigated. Poly(2-methoxyethyl acrylate)(PMEA), which is one of the best blood compatible polymers available, was employed. Nanometer-scale structures generated through the phase separation of polymer and water were observed at the PMEA/phosphate buffered saline interface. The interaction between the interfacial structures and fibrinogen (FNG) was measured using atomic force microscopy. Attraction was observed in the polymer-rich domains as well as in the non-blood compatible polymer. In contrast, no attractive interactions were observed, and only a repulsion occurred in the water-rich domains. The non-adsorption of FNG into the water rich domains was also clarified through topographic and phase image analyses. Furthermore, the FNG molecules adsorbed on the surface of PMEA were easily desorbed, even in the polymer-rich domains. Water molecules in the water-rich domains are anticipated to be the dominant factor in preventing FNG adsorption and thrombogenesis on a PMEA interface.
机译:研究了界面结构与蛋白质在聚合物/水界面处的吸附之间的相关性。使用了聚(2-甲氧基乙基丙烯酸酯)(PMEA),它是现有的最佳血液相容性聚合物之一。在PMEA /磷酸盐缓冲盐水界面观察到通过聚合物和水的相分离产生的纳米级结构。使用原子力显微镜测量界面结构和纤维蛋白原(FNG)之间的相互作用。在富含聚合物的区域以及非血液相容的聚合物中都观察到了吸引力。相反,未观察到有吸引力的相互作用,并且在富水域中仅发生排斥。还通过地形图和相图分析来阐明FNG在富水域中的不吸附作用。此外,即使在富含聚合物的区域中,吸附在PMEA表面的FNG分子也易于解吸。预期在富水域中的水分子是阻止FNG在PMEA界面上吸附和血栓形成的主要因素。

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