Petkova Hristina, Jarek Ewelina, Doychinov Mitko, Krzan Marcel, Mileva Elena
Institute of Physical Chemistry, Bulgarian Academy of Sciences, "Acad. G. Bonchev" Str. Bl. 11, 1113 Sofia, Bulgaria.
Jerzy Haber Institute of Catalysis and Surface Chemistry, Polish Academy of Sciences, 8 "Niezapominajek" Str., 30239 Krakow, Poland.
Polymers (Basel). 2022 Oct 16;14(20):4362. doi: 10.3390/polym14204362.
Biocompatible and biodegradable ingredients of natural origin are widely used in the design of foam and emulsion systems with various technological applications in the food, cosmetics and pharmaceutical industries. The determination of the precise composition of aqueous solution formulations is a key issue for the achievement of environmentally-friendly disperse systems with controllable properties and reasonable stability. The present work is focused on the investigation of synergistic interactions in aqueous systems containing saponins and pectins. Profile analysis tensiometer (PAT-1) is applied to study the surface tension and surface dilational rheology of the adsorption layers at the air/solution interface. The properties and the foam films (drainage kinetics, film thickness, disjoining pressure isotherm, critical pressure of rupture) are investigated using the thin-liquid-film (TLF) microinterferometric method of Scheludko-Exerowa and the TLF-pressure-balance technique (TLF-PBT). The results demonstrate that the structure and stability performance of the complex aqueous solutions can be finely tuned by changing the ratio of the bioactive ingredients. The attained experimental data evidence that the most pronounced synergy effect is registered at a specific saponin:pectin ratio. The obtained information is essential for the further development of aqueous solution formulations intended to achieve stable foams based on mixtures of saponins and pectins in view of future industrial, pharmaceutical and biomedical applications.
天然来源的生物相容性和可生物降解成分广泛用于泡沫和乳液体系的设计中,在食品、化妆品和制药行业有各种技术应用。确定水溶液配方的精确组成是实现具有可控性质和合理稳定性的环保分散体系的关键问题。目前的工作集中于研究含有皂苷和果胶的水体系中的协同相互作用。应用轮廓分析张力仪(PAT-1)研究空气/溶液界面吸附层的表面张力和表面膨胀流变学。使用Scheludko-Exerowa的薄液膜(TLF)微干涉测量法和TLF压力平衡技术(TLF-PBT)研究泡沫膜的性质(排水动力学、膜厚度、分离压力等温线、破裂临界压力)。结果表明,通过改变生物活性成分的比例,可以精细调节复合水溶液的结构和稳定性。获得的实验数据证明,在特定的皂苷:果胶比例下,协同效应最为显著。鉴于未来的工业、制药和生物医学应用,所获得的信息对于进一步开发旨在基于皂苷和果胶混合物实现稳定泡沫的水溶液配方至关重要。