Centro de Investigação de Montanha (CIMO), Instituto Politécnico de Bragança, Campus de Santa Apolónia, 5300-253 Bragança, Portugal.
Laboratory of Separation and Reaction Engineering - Laboratory of Catalysis and Materials (LSRE-LCM) Department of Chemical Engineering, Faculty of Engineering University of Porto, Rua Dr. Roberto Frias, S/N, 4200-465 Porto, Portugal.
Molecules. 2020 Mar 27;25(7):1538. doi: 10.3390/molecules25071538.
Replacing synthetic surfactants by natural alternatives when formulating nanoemulsions has gained attention as a sustainable approach. In this context, nanoemulsions based on sweet almond oil and stabilized by saponin from bark with glycerol as cosurfactant were prepared by the high-pressure homogenization method. The effects of oil/water (O/W) ratio, total surfactant amount, and saponin/glycerol ratio on their stability were analyzed. The formation and stabilization of the oil-in-water nanoemulsions were analyzed through the evaluation of stability over time, pH, zeta potential, and particle size distribution analysis. Moreover, a design of experiments was performed to assess the most suitable composition based on particle size and stability parameters. The prepared nanoemulsions are, in general, highly stable over time, showing zeta potential values lower than -40 mV, a slight acid behavior due to the character of the components, and particle size (in volume) in the range of 1.1 to 4.3 µm. Response surface methodology revealed that formulations using an O/W ratio of 10/90 and 1.5 wt% surfactant resulted in lower particle sizes and zeta potential, presenting higher stability. The use of glycerol did not positively affect the formulations, which reinforces the suitability of preparing highly stable nanoemulsions based on natural surfactants such as saponins.
在配方纳米乳液时,用天然替代品替代合成表面活性剂已成为一种可持续的方法。在这种情况下,通过高压匀质法制备了以甜杏仁油为油相、由树皮中的皂素与甘油作为助表面活性剂稳定的纳米乳液。分析了油/水(O/W)比、总表面活性剂用量和皂素/甘油比等因素对其稳定性的影响。通过考察纳米乳液在不同时间、pH 值、Zeta 电位和粒径分布分析下的稳定性,研究了油包水纳米乳液的形成和稳定性。此外,还进行了实验设计,以基于粒径和稳定性参数评估最合适的组成。结果表明,所制备的纳米乳液在较长时间内通常非常稳定,Zeta 电位值低于-40 mV,由于成分的特性呈微酸性,粒径(体积)在 1.1 到 4.3 µm 范围内。响应面法表明,O/W 比为 10/90 和表面活性剂用量为 1.5wt%的配方可以得到更小的粒径和 Zeta 电位,表现出更高的稳定性。甘油的使用并没有对配方产生积极影响,这进一步证实了使用天然表面活性剂(如皂素)制备高度稳定的纳米乳液的适用性。