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首页> 外文期刊>BioNanoscience >Fabrication of Cress Seed Gum Nanoparticles, an Anionic Polysaccharide, Using Desolvation Technique: an Optimization Study
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Fabrication of Cress Seed Gum Nanoparticles, an Anionic Polysaccharide, Using Desolvation Technique: an Optimization Study

机译:使用去溶剂化技术制备水芹籽胶纳米粒,一种阴离子多糖的优化研究

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摘要

Cress (Lepidium sativum) seed gum was selected as a new source of hydrocolloid to fabricate a novel polysaccharide nanoparticle by desolvation method. Response surface methodology (RSM) was applied to evaluate individual and interactive effects of three main independent factors (gum concentration, amount of acetone, and rate of agitation) on the particle size, zeta potential, and relative viscosity. The central composite design was used for optimization of desolvation process. The results showed that the particle size of cress seed gum nanoparticles (CSGN) was significantly influenced by all three factors, whereas the relative viscosity was only affected by the gum concentration. The optimum conditions for CSGN preparation were determined as follow: 0.28 % w/v gum concentration, 5.12 ml acetone, and rate of agitation of 500 rpm. The CSGN had a spherical shape with average size of 20.10 nm and zeta potential of -32.38 mV as confirmed by DLS method and SEM images.
机译:选择水芹(Lepidium sativum)种子胶作为水解胶体的新来源,通过去溶剂化方法制备新型多糖纳米颗粒。应用响应表面方法(RSM)来评估三个主要独立因素(口香糖浓度,丙酮量和搅拌速度)对粒度,ζ电位和相对粘度的个体和相互作用影响。中央复合设计用于优化去溶剂化工艺。结果表明,水芹籽胶纳米颗粒(CSGN)的粒径显着受所有三个因素的影响,而相对粘度仅受胶浓度的影响。确定CSGN制备的最佳条件如下:0.28%w / v的胶浓度,5.12ml的丙酮和500rpm的搅拌速率。如通过DLS方法和SEM图像所证实的,CSGN具有平均尺寸为20.10nm和ζ电势为-32.38mV的球形。

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