Department of Technology for Organic Synthesis, Ural Federal University, Mira st. 19, Ekaterinburg 620002, Russian Federation.
M.N. Mikheev Institute of Metal Physics of the Ural Branch of the Russian Academy of Sciences, S.Kovalevskaya st., 18, Ekaterinburg 620108, Russian Federation.
Colloids Surf B Biointerfaces. 2024 Apr;236:113827. doi: 10.1016/j.colsurfb.2024.113827. Epub 2024 Feb 29.
In this study, cross-linked carboxymethyl cellulose/chitosan submicron particles were employed to facilitate the stabilization of Pickering emulsion. The polymer particles were prepared using the polyelectrolyte self-assembly method in conjunction with isocyanide based multicomponent reactions and the characteristics were obtained using: nuclear magnetic resonance, Fourier-transform infrared spectroscopy and dynamic light scattering. Atomic force microscopy revealed the heterogeneous structure of the resulting submicron particles with domains of 20-30 nm in size. The average diameter was found to be in the range of 229-378 nm and they were found to be suitable for the fabrication of oil/water Pickering emulsion when proceeded via the homogenization method followed by sonication. The results obtained revealed that carboxymethyl cellulose/chitosan particles significantly stabilized the droplets at the oil/water interface. Even at low particle concentrations of 0.3 g/L (which is close to that of low molecular weight surfactants) stable Pickering emulsions have been obtained. Additionally, the resulting emulsions showed a high level of stability with regard to changes in pH, temperature and ionic strength. The natural alkaloid piperine was used as a model compound to load the resulting particles, which possessed encapsulation efficiency of 90.6±0.4%. Furthermore, the in vitro release profile of piperine from the Pickering emulsion revealed a much-controlled release in both acidic and neutral media as compared to the unformulated piperine. Additional findings in this work revealed important information on the application of carboxymethyl cellulose/chitosan submicron particles as Pickering stabilizers for creation of new delivery systems.
在这项研究中,交联羧甲基纤维素/壳聚糖亚微米颗粒被用于稳定 Pickering 乳液。聚合物颗粒使用聚电解质自组装方法结合基于异氰化物的多组分反应制备,并通过:核磁共振、傅里叶变换红外光谱和动态光散射获得特性。原子力显微镜揭示了所得亚微米颗粒的不均匀结构,其尺寸为 20-30nm 的域。平均直径发现处于 229-378nm 的范围内,并且当通过均化方法随后进行超声处理来制备油/水 Pickering 乳液时,发现它们是合适的。获得的结果表明,羧甲基纤维素/壳聚糖颗粒在油/水界面显著稳定了液滴。即使在低浓度的 0.3g/L 颗粒(接近低分子量表面活性剂)下,也获得了稳定的 Pickering 乳液。此外,所得乳液在 pH、温度和离子强度变化方面表现出高水平的稳定性。天然生物碱胡椒碱被用作模型化合物来负载所得颗粒,其包封效率为 90.6±0.4%。此外,胡椒碱从 Pickering 乳液中的体外释放曲线显示,与未成型的胡椒碱相比,在酸性和中性介质中具有更受控的释放。这项工作的其他发现揭示了羧甲基纤维素/壳聚糖亚微米颗粒作为 Pickering 稳定剂用于创建新的给药系统的应用的重要信息。