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Preparation and characterization of soy protein films with a durable water resistance-adjustable and antimicrobial surface

机译:具有耐水性可调和抗菌表面的大豆蛋白薄膜的制备和表征

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摘要

A water resistant surface was first obtained by immobilizing hydrophobic copolymers, poly (styrene-co-glycidyl methacrylate) (PSG), with functional groups on soy protein isolate (SPI) films. XPS and AFM results showed that PSG copolymers were immobilized on the film by chemical bonding, and formed a rough surface with some bumps because of the segregation of two different phases on PSG copolymers. Water resistance of the modified films could be adjusted dramatically by further immobilizing different amounts of guanidine-based antimicrobial polymers, poly (hexamethylene guanidine hydrochloride) (PHMG) on the resulting hydrophobic surface. The introduction of hydrophilic PHMG on the resulting surface generated many micropores, which potentially increased the water uptake of the modified films. Furthermore, the modified SPI films showed higher thermostability compared to native SPI film and broad-spectrum antimicrobial activity by contact killing, attributed to the presence of PHMG on the surface. The modified SPI film with a multi-functional surface showed potential for applications in the packaging and medical fields. Crown Copyright (C) 2016 Published by Elsevier B.V. All rights reserved.
机译:首先通过将疏水性共聚物聚(苯乙烯-甲基丙烯酸缩水甘油酯)(PSG)固定在大豆分离蛋白(SPI)薄膜上,使表面具有防水性。 XPS和AFM结果表明,PSG共聚物通过化学键固定在薄膜上,并且由于PSG共聚物上两个不同相的分离,形成了带有一些凸起的粗糙表面。通过在所得疏水表面上进一步固定不同量的胍基抗微生物聚合物聚六亚甲基胍盐酸盐(PHMG),可以大大调节改性膜的耐水性。在所得表面上引入亲水性PHMG会产生许多微孔,这可能会增加改性膜的吸水率。此外,与天然SPI膜相比,改性SPI膜显示出更高的热稳定性,并且由于表面上存在PHMG,通过接触杀灭,广谱抗菌活性也得到提高。具有多功能表面的改性SPI膜具有在包装和医疗领域中应用的潜力。官方版权(C)2016,由Elsevier B.V.保留所有权利。

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