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首页> 外文期刊>Ultrasonics sonochemistry >Ultrasonic emulsification of parenteral valproic acid-loaded nanoemulsion with response surface methodology and evaluation of its stability
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Ultrasonic emulsification of parenteral valproic acid-loaded nanoemulsion with response surface methodology and evaluation of its stability

机译:响应面法对肠胃外丙戊酸纳米乳的超声乳化及其稳定性评价

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摘要

Response surface methodology (RSM) was used to optimize the formulation of a nanoemulsion for central delivery following parenteral administration. A mixture of medium-chain triglyceride (MCT) and safflower seed oil (SSO) was determined as a sole phase from the emulsification properties. Similarly, a natural surfactant (lecithin) and non-ionic surfactant (Tween 80) (ratio 1:2) were used in the formulation. A central composite design (CCD) with three-factor at five-levels was used to optimize the processing method of high energy ultrasonicator. Effects of pre-sonication ultrasonic intensity (A), sonication time (B), and temperature (C) were studied on the preparation of nanoemulsion loaded with valproic acid. Influence of the aforementioned specifically the effects of the ultrasonic processing parameters on droplet size and polydispersity index were investigated. From the analysis, it was found that the interaction between ultrasonic intensity and sonication time was the most influential factor on the droplet size of nanoemulsion formulated. Ultrasonic intensity (A) significantly affects the polydispersity index value. With this optimization method, a favorable droplet size of a nanoemulsion with reasonable polydispersity index was able to be formulated within a short sonication time. A valproic acid loaded nanoemulsion can be obtained with 60% power intensity for 15 min at 60 degrees C. Droplet size of 43.21 +/- 0.11 nm with polydispersity index of 0.211 were produced. The drug content was then increased to 1.5%. Stability study of nanoemulsion containing 1.5% of valproic acid had a good stability as there are no significant changes in physicochemical aspects such as droplet size and polydispersity index. With the characteristisation study of pH, viscosity, transmission electron microscope (TEM) and stability assessment study the formulated nanoemulsion has the potential to penetrate blood brain barrier in the treatment of epilepsy. (C) 2015 Elsevier B.V. All rights reserved.
机译:响应表面方法(RSM)用于优化肠胃外给药后用于中央递送的纳米乳剂的配方。根据乳化性能,确定了中链甘油三酸酯(MCT)和红花籽油(SSO)的混合物为唯一相。类似地,在制剂中使用天然表面活性剂(卵磷脂)和非离子表面活性剂(吐温80)(比率1∶2)。采用五级三因子中央复合设计(CCD)优化高能超声发生器的加工方法。研究了超声前超声强度(A),超声时间(B)和温度(C)对丙戊酸负载型纳米乳剂制备的影响。具体而言,研究了超声波处理参数对液滴尺寸和多分散指数的影响。从分析中发现,超声强度和超声处理时间之间的相互作用是对所配制的纳米乳液的液滴尺寸的最大影响因素。超声波强度(A)会明显影响多分散指数值。通过这种优化方法,能够在短时间的超声处理时间内配制出具有合理的多分散指数的良好的纳米乳液液滴尺寸。可以在60℃下以60%功率强度在15分钟下获得负载丙戊酸的纳米乳液。产生的微滴尺寸为43.21 +/- 0.11nm,多分散指数为0.211。然后,药物含量增加到1.5%。含有1.5%丙戊酸的纳米乳剂的稳定性研究具有良好的稳定性,因为在理化方面,如液滴大小和多分散指数没有明显变化。通过pH,粘度,透射电子显微镜(TEM)和稳定性评估的特性研究,配制的纳米乳剂有可能在治疗癫痫症时穿透血脑屏障。 (C)2015 Elsevier B.V.保留所有权利。

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