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Plasma surface modification effects on biodegradability and protein adsorption properties of chitosan films

机译:等离子体表面改性对壳聚糖膜生物降解性和蛋白质吸附性能的影响

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摘要

This study investigates how plasma surface modification influences chitosan film biodegradability and protein adsorption properties. Plasma-modified chitosan films exhibit significantly more hydroxyl and carboxylic acid absorption bands in infrared spectra, and therefore exhibit superior hydrophilicity to that of unmodified chitosan films. The plasma-modified chitosan films exhibit rougher surface morphologies and higher swelling ratios in comparison to unmodified chitosan films. The plasma-modified chitosan films possess enhanced biodegradability in comparison to unmodified chitosan films, because more hydroxyl and carboxylic acid groups are metabolized during biodegradation. The plasma-modified chitosan films exhibit less bovine serum albumin (BSA) adsorption in bicinchoninic acid protein assays because the carboxylic acid group in bovine serum albumin is charge-charge repulsed from the abundant carboxylic acid group on the film surface. The 120 s plasma-modified chitosan film possesses optimal hydrophilicity, swelling property, biodegradability, and the lowest BSA protein adsorption, because prolonged plasma treatment time may cause films surface damage.
机译:这项研究调查了血浆表面改性如何影响壳聚糖膜的生物降解性和蛋白质吸附性能。等离子体改性的壳聚糖膜在红外光谱中表现出明显更多的羟基和羧酸吸收带,因此与未改性的壳聚糖膜相比,亲水性更高。与未改性的壳聚糖膜相比,等离子体改性的壳聚糖膜表现出更粗糙的表面形态和更高的溶胀率。与未改性的壳聚糖膜相比,等离子体改性的壳聚糖膜具有增强的生物降解性,因为在生物降解过程中代谢了更多的羟基和羧酸基团。血浆修饰的壳聚糖膜在二辛可宁酸蛋白测定中显示出较少的牛血清白蛋白(BSA)吸附,因为牛血清白蛋白中的羧酸基团被膜表面上丰富的羧酸基团排斥而电荷排斥。 120 s等离子体改性的壳聚糖膜具有最佳的亲水性,溶胀性,生物降解性和最低的BSA蛋白吸附性,因为延长的等离子体处理时间可能会导致膜表面损坏。

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