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Influence of Heat Curing on Structure and Physicochemical Properties of Phenolic Acid Loaded Proteinaceous Electrospun Fibers

机译:热固化对负载酚酸的蛋白质质电纺纤维结构和理化性能的影响

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摘要

Effects of heat treatment on structure and physicochemical properties of zein (Ze) and gallic acid loaded zein (Ze-GA) electrospun fiber mats were investigated. The electrospun fiber mats displayed different surface and physicochemical properties after being heat-cured at 150 °C for 24 h, which were closely related to the initial amount of loaded gallic acid. The gallic acid was released from the Ze-GA fiber mats in a constant manner, but heat curing decreased the rate of release. Heat curing remarkably increased the molecular weight of the Ze and Ze-GA electrospun fiber mats. Attenuated total reflectance Fourier transform infrared spectroscopy (ATR-FTIR) analysis of the fiber mats indicated variations in zein protein secondary structure after heat curing. 13C solid state NMR (SS-NMR) confirmed the presence of a different chemical environment among the fiber mats. The fabrication of heat-cured zein based electrospun fibers in this study may find applications in the food packaging industry.
机译:研究了热处理对玉米醇溶蛋白(Ze)和没食子酸玉米醇溶蛋白(Ze-GA)电纺纤维垫的结构和理化性质的影响。电纺纤维毡在150°C加热固化24 h后表现出不同的表面和理化性质,这与没食子酸的初始加载量密切相关。没食子酸以恒定的方式从Ze-GA纤维垫上释放,但是热固化降低了释放速率。热固化显着增加了Ze和Ze-GA电纺纤维毡的分子量。纤维毡的衰减全反射傅立叶变换红外光谱(ATR-FTIR)分析表明,热固化后玉米蛋白的二级结构发生变化。 13 C固态NMR(SS-NMR)证实了纤维毡之间存在不同的化学环境。在这项研究中的热固化玉米蛋白基电纺纤维的制造可能会发现在食品包装行业中的应用。

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