School of Pharmaceutical Sciences of Ribeirão Preto, University of São Paulo, Av. do Café s/n, Ribeirão Preto, SP, 14040-903, Brazil.
CEB-Centre of Biological Engineering, University of Minho, Campus de Gualtar, 4710-057 Braga, Portugal.
Biomolecules. 2020 Apr 29;10(5):693. doi: 10.3390/biom10050693.
Essential oils (EOs) are widely used in various industrial sectors but can present several instability problems when exposed to environmental factors. Encapsulation technologies are effective solutions to improve EOs properties and stability. Currently, the encapsulation in lipid nanoparticles has received significant attention, due to the several recognized advantages over conventional systems. The study aimed to investigate the influence of the lipid matrix composition and spray-drying process on the physicochemical properties of the lipid-based nanoparticles loaded with EO and their retention efficiency for the oil. The obtained spray-dried products were characterized by determination of flow properties (Carr Index: from 25.0% to 47.93%, and Hausner ratio: from 1.25 to 1.38), moisture (from 3.78% to 5.20%), water activity (<0.5), and powder morphology. Zeta potential, mean particle size and polydispersity index, of the redispersed dried product, fell between -25.9 mV and -30.9 mV, 525.3 nm and 1143 nm, and 0.425 and 0.652, respectively; showing slight differences with the results obtained prior to spray-drying (from -16.4 mV to -31.6 mV; 147 nm to 1531 nm; and 0.459 to 0.729). Thymol retention in the dried products was significantly lower than the values determined for the liquid formulations and was affected by the drying of nanoparticles.
精油(EOs)广泛应用于各个工业领域,但在暴露于环境因素时会出现一些不稳定性问题。封装技术是改善 EOs 性质和稳定性的有效方法。目前,由于与传统系统相比具有多种公认的优势,脂质纳米粒子的封装受到了极大的关注。本研究旨在研究脂质基质组成和喷雾干燥过程对载有 EO 的脂质纳米粒子的物理化学性质及其对油的保留效率的影响。通过测定流动性质(Carr 指数:25.0%至 47.93%,Hausner 比:1.25 至 1.38)、水分(3.78%至 5.20%)、水分活度(<0.5)和粉末形态,对所得喷雾干燥产品进行了表征。再分散干燥产物的 Zeta 电位、平均粒径和多分散指数在-25.9 mV 至-30.9 mV、525.3nm 至 1143nm 和 0.425 至 0.652 之间;与喷雾干燥前的结果(-16.4 mV 至-31.6 mV;147nm 至 1531nm;0.459 至 0.729)相比,略有差异。干燥产物中百里香酚的保留率明显低于液体配方中确定的值,并且受到纳米粒子干燥的影响。