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水包油型二嗪农纳米乳液形成的优化与表征:油相、表面活性剂及超声处理的建模与影响

Optimization and characterization of the formation of oil-in-water diazinon nanoemulsions: Modeling and influence of the oil phase, surfactant and sonication.

作者信息

Badawy Mohamed E I, Saad Abdel-Fattah S A, Tayeb El-Sayed H M, Mohammed Sondos A, Abd-Elnabi Amany D

机构信息

a Faculty of Agriculture, Department of Pesticide Chemistry and Technology , Alexandria University , Alexandria , Egypt.

b Faculty of Agriculture (Saba Basha), Plant Protection Department , Alexandria University , Alexandria , Egypt.

出版信息

J Environ Sci Health B. 2017 Dec 2;52(12):896-911. doi: 10.1080/03601234.2017.1362941. Epub 2017 Nov 7.

Abstract

Nanoemulsions are particularly suitable as a platform in the development of delivery systems for lipophilic functional agents. Current research describes the formation of oil-in-water (O/W) diazinon nanoemulsions using synthetic and natural additives by adopting a high-energy (ultrasound) emulsification method. The diazinon nanoemulsions were spontaneously formed by adding dropwise a mixture of diazinon, solvent and co-solvent in an aqueous solution containing a surfactant (tween or lecithin) with continuous stirring. The nanoemulsions were then formed by ultra-sonication. The effects of three levels of active ingredient, solvent, co-solvent, surfactant, sonication time and sonication cycle and power were performed by Minitab software to design the experiment. Effects of these factors on droplet size, polydispersity index (PDI), viscosity and pH of nanoemulsions were investigated. The results of the modeling showed that the experimental data could be adequately adapted in a second-order polynomial model with a multiple regression coefficient r of 0.821 for the prediction of particle size, PDI and viscosity. The long-term and thermodynamic stability of the prepared nanoemulsions were tested. The droplet size and morphology of the nanoemulsions were measured by dynamic light scattering (DLS) and transmission electron microscopy (TEM). On this basis, a water-insoluble insecticide diazinon was incorporated into 26 optimized nanoemulsion systems to demonstrate potential applications in pest control. The results of DLS and TEM measurements showed that most of prepared nanoemulsions had an almost monodisperse droplet size distribution (PDI < 200 nm). Incorporation of diazinon had no significant effect on the size and stability of the nanoemulsions and the formulated nanoemulsion remained stable after four months of storage.

摘要

纳米乳液特别适合作为亲脂性功能剂递送系统开发的平台。当前的研究描述了采用高能(超声)乳化法,使用合成和天然添加剂形成水包油(O/W)二嗪农纳米乳液的过程。通过在含有表面活性剂(吐温或卵磷脂)的水溶液中持续搅拌,逐滴加入二嗪农、溶剂和助溶剂的混合物,自发形成二嗪农纳米乳液。然后通过超声处理形成纳米乳液。利用Minitab软件对活性成分、溶剂、助溶剂、表面活性剂、超声时间、超声循环次数和功率的三个水平进行实验设计。研究了这些因素对纳米乳液的液滴尺寸、多分散指数(PDI)、粘度和pH值的影响。建模结果表明,实验数据可以很好地拟合二阶多项式模型,预测粒径、PDI和粘度的多元回归系数r为0.821。测试了所制备纳米乳液的长期稳定性和热力学稳定性。通过动态光散射(DLS)和透射电子显微镜(TEM)测量纳米乳液的液滴尺寸和形态。在此基础上,将一种水不溶性杀虫剂二嗪农加入到26种优化的纳米乳液体系中,以证明其在害虫防治中的潜在应用。DLS和TEM测量结果表明,大多数制备的纳米乳液具有几乎单分散的液滴尺寸分布(PDI<200nm)。加入二嗪农对纳米乳液的尺寸和稳定性没有显著影响,并且所配制的纳米乳液在储存四个月后仍保持稳定。

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