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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Synthesis of a novel zwitterionic biodegradable poly (α,β-l-aspartic acid) derivative with some l-histidine side-residues and its resistance to non-specific protein adsorption
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Synthesis of a novel zwitterionic biodegradable poly (α,β-l-aspartic acid) derivative with some l-histidine side-residues and its resistance to non-specific protein adsorption

机译:具有一些组氨酸侧残基的新型两性离子可生物降解的聚(α,β-1-天冬氨酸)衍生物及其对非特异性蛋白质吸附的抵抗力

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摘要

A novel zwitterionic polypeptide derivative, denoted as His-PAsp/PAsp, was successfully synthesized by amidation of Poly (α,β-l-aspartic acid) with l-histidine methyl ester. Turbidity, zeta potential and 1H NMR measurements were used to study the aggregation behaviors of His-PAsp/PAsp under different pH values. The modified polypeptide derivative composed of electro-negatively carboxylic and electro-positively imidazole residues randomly so as to bear opposite charges at pH values above or below the isoelectric point. When the zwitterionic polypeptide was coated on silicon wafer as a model substrate material, the absorption resistance of fibrinogen, a blood protein resulting in the blood coagulation cascade, on the coated surface was measured. It was found that the adsorption amount of fibrinogen on the polypeptide-coated surface depended on the dose of the polypeptide on silicon wafer. Obvious resistance of the fibrinogen adsorption on the polypeptide-coated surface was observed. Since its good biodegradability and superior anti-protein-fouling property, this pH-responsive zwitterionic polypeptide is a promising candidate for surface modification in many biomedical applications, including medical implants, drug delivery carriers, and biosensors.
机译:通过用1-组氨酸甲酯酰胺化聚(α,β-1-天冬氨酸),成功合成了一种新型的两性离子多肽衍生物,称为His-PAsp / PAsp。使用浊度,ζ电势和1 H NMR测量来研究在不同pH值下His-PAsp / PAsp的聚集行为。修饰的多肽衍生物由带负电的羧基和带正电的咪唑残基随机组成,以便在等电点以上或以下的pH值上带有相反的电荷。当将两性离子多肽作为模型基质材料涂覆在硅片上时,测量纤维蛋白原(一种导致血液凝结级联的血液蛋白)在被涂覆表面上的吸收阻力。发现纤维蛋白原在多肽包被的表面上的吸附量取决于多肽在硅片上的剂量。观察到纤维蛋白原吸附在多肽包被的表面上的明显阻力。由于其良好的生物降解性和优异的抗蛋白质结垢特性,这种对pH敏感的两性离子多肽是许多生物医学应用(包括医疗植入物,药物输送载体和生物传感器)中表面修饰的有前途的候选者。

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