Vecchies Federica, Sacco Pasquale, Marsich Eleonora, Cinelli Giuseppe, Lopez Francesco, Donati Ivan
University of Trieste, Department of Life Science, Via Licio Giorgieri, 5, 34127, Trieste, Italy.
Department of Medicine, Surgery, and Health Sciences, University of Trieste, Piazza dell'Ospitale 1, I-34129 Trieste, Italy.
Polymers (Basel). 2020 Apr 13;12(4):897. doi: 10.3390/polym12040897.
A miscibility study between oppositely charged polyelectrolytes, namely hyaluronic acid and a lactose-modified chitosan, is here reported. Experimental variables such as polymers' weight ratios, pH values, ionic strengths and hyaluronic acid molecular weights were considered. Transmittance analyses demonstrated the mutual solubility of the two biopolymers at a neutral pH. The onset of the liquid-liquid phase separation due to electrostatic interactions between the two polymers was detected at pH 4.5, and it was found to be affected by the overall ionic strength, the modality of mixing and the polymers' weight ratio. Thorough Dynamic Light Scattering (DLS) measurements were performed to check the quality of the formed coacervates by investigating their dimensions, homogeneity and surface charge. The whole DLS results highlighted the influence of the hyaluronic acid molecular weight in affecting coacervates' dispersity and size.
本文报道了带相反电荷的聚电解质,即透明质酸和乳糖修饰壳聚糖之间的混溶性研究。考虑了聚合物重量比、pH值、离子强度和透明质酸分子量等实验变量。透光率分析表明,两种生物聚合物在中性pH值下相互溶解。在pH 4.5时检测到由于两种聚合物之间的静电相互作用导致的液-液相分离,并且发现其受到总离子强度、混合方式和聚合物重量比的影响。通过研究其尺寸、均匀性和表面电荷,进行了全面的动态光散射(DLS)测量,以检查形成的凝聚层的质量。整个DLS结果突出了透明质酸分子量对凝聚层分散性和尺寸的影响。