...
首页> 外文期刊>International Journal of Nanomedicine >Comparison of process parameter optimization using different designs in nanoemulsion-based formulation for transdermal delivery of fullerene
【24h】

Comparison of process parameter optimization using different designs in nanoemulsion-based formulation for transdermal delivery of fullerene

机译:在基于纳米乳液的富勒烯透皮给药配方中使用不同设计的工艺参数优化比较

获取原文

摘要

Abstract: This research aims to formulate and to optimize a nanoemulsion-based formulation containing fullerene, an antioxidant, stabilized by a low amount of mixed surfactants using high shear and the ultrasonic emulsification method for transdermal delivery. Process parameters optimization of fullerene nanoemulsions was done by employing response surface methodology, which involved statistical multivariate analysis. Optimization of independent variables was investigated using experimental design based on Box–Behnken design and central composite rotatable design. An investigation on the effect of the homogenization rate (4,000–5,000?rpm), sonication amplitude (20%–60%), and sonication time (30–150?seconds) on the particle size, ζ-potential, and viscosity of the colloidal systems was conducted. Under the optimum conditions, the central composite rotatable design model suggested the response variables for particle size, ζ-potential, and viscosity of the fullerene nanoemulsion were 152.5?nm, –52.6?mV, and 44.6 pascal seconds, respectively. In contrast, the Box–Behnken design model proposed that preparation under the optimum condition would produce nanoemulsion with particle size, ζ-potential, and viscosity of 148.5?nm, –55.2?mV, and 39.9 pascal seconds, respectively. The suggested process parameters to obtain optimum formulation by both models yielded actual response values similar to the predicted values with residual standard error of <2%. The optimum formulation showed more elastic and solid-like characteristics due to the existence of a large linear viscoelastic region.
机译:摘要:本研究旨在配制和优化包含富勒烯,抗氧化剂的纳米乳液基制剂,该制剂可通过少量高剪切力和超声乳化法经透皮递送而被少量的混合表面活性剂稳定。富勒烯纳米乳液的工艺参数优化是通过采用响应面方法进行的,该方法涉及统计多元分析。使用基于Box–Behnken设计和中央复合旋转设计的实验设计,研究了自变量的优化。研究均质速率(4,000–5,000?rpm),超声处理振幅(20%–60%)和超声处理时间(30–150?s)对颗粒粒径,ζ电位和粘度的影响进行胶体系统。在最佳条件下,中央复合材料可旋转设计模型建议,富勒烯纳米乳液的粒径,ζ电位和粘度的响应变量分别为152.5?nm,–52.6?mV和44.6帕斯卡·秒。相比之下,Box–Behnken设计模型提出,在最佳条件下进行制备会产生纳米乳液,其粒径,ζ电位和粘度分别为148.5?nm,–55.2?mV和39.9帕斯卡·秒。为通过两个模型获得最佳配方而建议的工艺参数所产生的实际响应值与预测值相似,且残留标准误差<2%。最佳配方由于存在较大的线性粘弹性区域而显示出更多的弹性和类固体特征。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号