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Characterization of Chitosan/Hyaluronan Complex Coacervates Assembled by Varying Polymers Weight Ratio and Chitosan Physical-Chemical Composition

机译:通过不同聚合物重量比和壳聚糖物理化学成分组装壳聚糖/透明质酸络合物凝聚凝聚的特征

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Herein, we synthetized and characterized polysaccharide-based complex coacervates starting from two water-soluble biopolymers, i.e., hydrochloride chitosans and sodium hyaluronan. We used chitosans encompassing a range of molecular weights from 30,000 to 400,000 and showing different fraction of acetylated units (i.e., FA = 0.16, 0.46, and 0.63). This set of chitosans was mixed with a low molecular weight hyaluronan to promote electrostatic interactions. Resulting colloids were analyzed in terms of size, polydispersity and surface charge by Dynamic Light Scattering. The weight ratio between the two polyelectrolytes was studied as additional parameter influencing the liquid-liquid phase separation. Main results include the following: the polymers weight ratio was fundamental in dictating the colloids surface charge, whereas chitosan physical-chemical features influenced the dimension and homogeneity of colloids. This contribution presents additional understanding of the complex coacervation between these two oppositely charged polysaccharides, with the potential translation of present system in food and biomedical sectors.
机译:在此,我们从两种水溶性生物聚合物,即盐酸壳聚糖和透明质酸钠开始的基于多糖的复合凝聚凝聚合理。我们使用壳聚糖包括从30,000至400,000的分子量范围,并显示出不同的乙酰化单元的分数(即,Fa = 0.16,0.46和0.63)。将该组壳聚糖与低分子量透明质酸混合以促进静电相互作用。通过动态光散射在尺寸,多分散性和表面电荷方面分析所得到的胶体。研究了两种聚电解质之间的重量比作为影响液液相分离的另外参数。主要结果包括以下内容:聚合物重量比对胶体表面电荷决定是基础,而壳聚糖物理化学特征影响胶体的尺寸和均匀性。该贡献呈现了对这两个相对电荷多糖之间的复杂凝聚的额外理解,目前系统在食品和生物医学部门中的潜在转换。

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