ProdAl Scarl, University of Salerno, Fisciano (SA) 84084, Italy.
J Biotechnol. 2012 Jun 30;159(4):342-50. doi: 10.1016/j.jbiotec.2011.07.001. Epub 2011 Jul 7.
This work aims at investigating the effect of the nanoemulsion delivery systems on the antimicrobial activity of different essential oil components. Carvacrol, limonene and cinnamaldehyde were encapsulated in the sunflower oil droplets of nanoemulsions prepared by high pressure homogenization and stabilized by different emulsifiers: (a) lecithin, (b) pea proteins, (c) sugar ester and (d) a combination of Tween 20 and glycerol monooleate. The antimicrobial activity was measured against three different microorganisms, such as Escherichia coli, Lactobacillus delbrueckii and Saccharomyces cerevisiae. The measured antimicrobial activity was significantly affected by the formulation of the nanoemulsion, where the different bioactive compounds were encapsulated. In particular, the effect of the delivery systems on the antimicrobial activity was correlated to the concentration of the essential oil components in the aqueous phase in equilibrium with the nanoemulsion droplets, suggesting that the ability of the active molecules to interact with cell membranes is associated to their dissolution in the aqueous phase. These considerations can lead to a more rational design of the nanoemulsion-based delivery systems for essential oils, based on the opportune choice of the emulsifiers in dependence of the desired function of the antimicrobials within the food system.
本工作旨在研究纳米乳液传递系统对不同精油成分的抗菌活性的影响。香芹酚、柠檬烯和肉桂醛被包封在通过高压均质制备的纳米乳液的葵花籽油液滴中,并由不同的乳化剂稳定:(a) 卵磷脂,(b) 豌豆蛋白,(c) 糖酯和 (d) 吐温 20 和甘油单油酸酯的混合物。抗菌活性是针对三种不同的微生物(大肠杆菌、德氏乳杆菌和酿酒酵母)测量的。测量的抗菌活性受到纳米乳液配方的显著影响,其中不同的生物活性化合物被包封。特别是,传递系统对抗菌活性的影响与在与纳米乳液液滴平衡的水相中的精油成分的浓度相关,这表明活性分子与细胞膜相互作用的能力与其在水相中的溶解能力有关。这些考虑可以导致基于纳米乳液的精油传递系统的更合理设计,这基于在食品系统中根据所需的抗菌剂功能选择合适的乳化剂。