...
首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >In vitro/in vivo characterization of nanoemulsion formulation of metronidazole with improved skin targeting and anti-rosacea properties.
【24h】

In vitro/in vivo characterization of nanoemulsion formulation of metronidazole with improved skin targeting and anti-rosacea properties.

机译:甲硝唑纳米乳剂配制的体外/体内表征,具有改善的皮肤靶向和抗组酸特性。

获取原文
获取原文并翻译 | 示例

摘要

Topical skin treatment was limited due to the lack of suitable delivery system with significant cutaneous localization and systemic safety. The aim of this study was to develop and optimize a nanoemulsion (NE) to enhance targeting localization of metronidazole (MTZ) in skin layers. In vitro studies were used to optimize NE formulations, and a series of experiments were carried in vitro and in vivo to validate the therapeutic efficacy of MTZ-loaded optimal NE. NE type selection and D-optimal design study were applied to optimize NE formulation with maximum skin retention and minimum skin penetration. Three formulation variables: Oil X1 (Labrafil), Smix X2 (a mixture of Cremophor EL/Tetraethylene glycol, 2:1 w/w) and water X3 were included in D-design. The system was assessed for skin retention Y1, cumulative MTZ amount after 24 h Y2 and droplet size Y3. Following optimization, the values of formulation components (X1, X2 and X3) were 4.13%, 16.42% and 79.45%, respectively. The optimized NE was assessed for viscosity, droplet size, morphological study and in vitro permeation in pig skin. Distributions of MTZ were validated by confocal laser scanning microscopy (CLSM). Active agent of NE transferred into deeper skin and localized in epidermal/dermal layers after 24 h, which showed significant advantages of the optimal NE over Gel. The skin targeting localization and minimal systemic escape of optimal NE was further proved by in vivo study on rat skin. Current in vitro-in vivo correlation (IVIVC) enabled the prediction of pharmacokinetic profile of MTZ from in vitro permeation results. Further, the in vivo anti-rosacea efficacy of optimal formulation was investigated by pharmacodynamics study on mice ear.
机译:由于缺乏具有显着皮肤本地化和全身安全性的合适递送系统,局部皮肤处理受到限制。本研究的目的是发展和优化纳米乳液(NE),以增强皮肤层中甲硝唑(MTZ)的靶向定位。在体外研究用于优化NE制剂,体外和体内进行一系列实验以验证MTZ负载最佳NE的治疗效果。 NE型选择和D-OPTEMAL设计研究应用于优化NE配方,具有最大的皮肤保留和最小的皮肤渗透。三种配方变量:油X1(Labrafil),Smix X2(Cremophor EL /四甘醇,2:1w / W)和水X3的混合物被纳入D-设计。系统被评估为皮肤保留Y1,24小时后的累积MTZ量和液滴尺寸Y3。优化后,分别为4.13%,16.42%和79.45%的制剂组分(X1,X2和X3)的值。评估优化的NE用于猪皮中粘度,液滴尺寸,形态学研究和体外渗透。通过共聚焦激光扫描显微镜(CLSM)验证MTZ的分布。 NE的活性剂转移到更深的皮肤中并在24小时后局部局部,表现出最佳NE OVER凝胶的显着优点。在大鼠皮肤的研究中进一步证明了靶向定位和最佳Ne的最小全身逃逸的皮肤。电流在体外相关性(IVIVC)使得能够从体外渗透结果预测MTZ的药代动力学曲线。此外,通过对小鼠耳的药效学研究研究了最佳制剂的体内抗组织疗效。

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