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Preparation, characterization and application of levan/montmorillonite biocomposite and levan/BSA nanoparticle

机译:Levan / Montmorillonite Biocomposite和Levan / BSA纳米粒子的制备,表征及应用

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Here, two kinds of polysaccharide-based biocomposites were investigated. The enzymatically synthesized levan from Erwinia amylovora was applied as the matrix, while montmorillonite clay and bovine serum albumin (BSA) were used as additive in the biocomposite. To examine the properties of levan/MMT biocomposite, we choose different ratios between levan and MMT to implement the surface morphology observation, thermal property analysis, and rheological behavior determination. As a result, the levan/MMT biocomposite in a 2:1 blending ratio showed a significant improvement both in the thermal and rheological properties. Meanwhile, the 0.1 % levan/BSA nanoparticle showed the highest encapsulation capacity and surface charge as 53.13 +/- 2.64 % and +3.92 +/- 0.43 mV. Last but not least, the levan/BSA nanoparticle exhibited a slower and controlled release of the BSA from the system. All of these results indicated a potential application of levan-based biocomposite and nanoparticle.
机译:这里,研究了两种基于多糖的生物复合材料。 从Erwinia Amylovora的酶合成的左旋作为基质,而Montmorillonite粘土和牛血清白蛋白(BSA)用作生物复合材料中的添加剂。 为了检查Levan / MMT生物复合物的性质,我们在左南和MMT之间选择不同比率,实现表面形态观察,热性分析和流变行为测定。 结果,在2:1的混合比中的Levan / MMT生物复合材料在热和流变性质中显示出显着的改进。 同时,0.1%Levan / BSA纳米粒子呈现出最高的封装能力和表面电荷为53.13 +/- 2.64%和+ 3.92 +/- 0.43 mV。 最后但并非最不重要的是,Levan / BSA纳米粒子从系统中表现出BSA的较慢和控制的释放。 所有这些结果表明基于Levan的生物复合材料和纳米颗粒的潜在应用。

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