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Poly(ethylene oxide) Layers Grafted to Dopamine-melanin Anchoring Layer: Stability and Resistance to Protein Adsorption

机译:嫁接到多巴胺-黑色素固定层的聚环氧乙烷层:稳定性和对蛋白质吸附的抵抗力

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摘要

In this study, we propose substrate-independent modification for creating a protein-repellent surface based on dopamine-melanin anchoring layer used for subsequent binding of poly(ethylene oxide) (PEO) from melt. We verified that the dopamine-melanin layer can be formed on literally any substrate and could serve as the anchoring layer for subsequent grafting of PEO chains. Grafting of PEO from melt in a temperature range 70—110 °C produces densely packed PEO layers showing exceptionally low protein adsorption when exposed to the whole blood serum or plasma. The PEO layers prepared from melt at 110 °C retained the protein repellent properties for as long as 10 days after their exposure to physiological-like conditions. The PEO-dopamine-melanin modification represents a simple and universal surface modification method for the preparation of protein repellent surfaces that could serve as a nonfouling background in various applications, such as optical biosensors and tissue engineering.
机译:在这项研究中,我们提出了基于多巴胺-黑色素锚固层的基于蛋白的表面排斥反应的底物独立修饰,该锚定层用于随后的熔体中聚环氧乙烷(PEO)的结合。我们证实,多巴胺-黑色素层实际上可以在任何基材上形成,并且可以用作随后接枝PEO链的锚定层。在70-110°C的温度范围内从熔体中接枝PEO会产生紧密堆积的PEO层,当暴露于全血清或血浆中时,蛋白质吸附极低。在暴露于生理条件后,由110°C的熔体制备的PEO层保留了拒蛋白性能长达10天。 PEO-多巴胺-黑色素修饰代表一种简单而通用的表面修饰方法,用于制备蛋白质排斥表面,该表面可在各种应用(例如光学生物传感器和组织工程)中用作无污染背景。

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