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首页> 外文期刊>ACS applied materials & interfaces >Dual Thermo- and pH-Responsive Behavior of Double Zwitterionic Graft Copolymers for Suppression of Protein Aggregation and Protein Release
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Dual Thermo- and pH-Responsive Behavior of Double Zwitterionic Graft Copolymers for Suppression of Protein Aggregation and Protein Release

机译:双倍离子接枝共聚物进行双层热和pH响应性,用于抑制蛋白质聚集和蛋白质释放

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摘要

Graft copolymers consisting of two different zwitterionic blocks were synthesized via reversible addition fragmentation chain transfer polymerization. These polymers showed dual properties of thermo- and pH-responsiveness in an aqueous solution. Ultraviolet–visible spectroscopy and dynamic light scattering were employed to study the phase behavior under varying temperatures and pH values. Unlike the phase transition temperatures of other graft copolymers containing nonionic blocks, the phase transition temperature of these polymers was easily tuned by changing the polymer concentration. Owing to the biocompatible and stimuli-responsive nature of the polymers, this system was shown to effectively release proteins (lysozyme) while simultaneously protecting them against denaturation. The positively charged lysozyme was shown to bind with the negatively charged polymer at the physiological pH (pH 7.4). However, it was subsequently released at pH 3, at which the polymer exhibits a positive charge. Protein aggregation studies using a residual enzymatic activity assay, circular dichroism, and a Thioflavin T assay revealed that the secondary structure of the lysozyme was retained even after harsh thermal treatment. The addition of these polymers helped the lysozyme retain its enzymatic activity and suppressed its fibrillation. Both polymers showed excellent protein protection properties, with the negatively charged polymer exhibiting slightly superior protein protection properties to those of the neutral polymer. To the best of the authors’ knowledge, this is the first study to develop a graft copolymer system consisting of two different zwitterionic blocks that shows dual thermo- and pH-responsive properties. The presence of the polyampholyte structure enables these polymers to act as protein release agents, while simultaneously protecting the proteins from severe stress.
机译:通过可逆添加碎裂链转移聚合合成由两种不同的两性离子嵌段组成的接枝共聚物。这些聚合物在水溶液中显示出热量和pH-反应性的双重性质。采用紫外 - 可见光光谱和动态光散射研究不同温度和pH值下的相位行为。与含有非离子嵌段的其他接枝共聚物的相转变温度不同,通过改变聚合物浓度容易调节这些聚合物的相转变温度。由于聚合物的生物相容性和刺激响应性,显示该系统有效地释放蛋白质(溶菌酶),同时保护它们免受变性。显示带正电荷的溶菌酶在生理pH(pH7.4)下与带负电荷的聚合物结合。然而,随后在pH 3释放,聚合物表现出阳性电荷。使用残余酶活性测定,圆形二色性和硫蛋白T测定的蛋白质聚集研究表明,即使在苛刻的热处理后,将保留溶菌酶的二次结构。添加这些聚合物有助于溶菌酶保留其酶活性并抑制其原纤化。两种聚合物显示出优异的蛋白质保护性能,带有带负电的聚合物对中性聚合物的蛋白质保护性略有优异的聚合物。据作者所知,这是第一次开发由两种不同的两性离子嵌段组成的接枝共聚物系统,其显示出双重热和pH-响应性。聚酰胺结构的存在使这些聚合物能够充当蛋白质释放剂,同时保护蛋白质免受严重应激。

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