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首页> 外文期刊>European journal of pharmaceutical sciences >Optimization of formulation and process parameters for the production of nanosuspension by wet media milling technique: Effect of Vitamin e TPGS and nanocrystal particle size on oral absorption
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Optimization of formulation and process parameters for the production of nanosuspension by wet media milling technique: Effect of Vitamin e TPGS and nanocrystal particle size on oral absorption

机译:通过湿介质研磨技术优化制备纳米悬浮液的配方和工艺参数:维生素e TPGS和纳米晶体粒径对口服吸收的影响

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The purpose of this study was to develop nanosuspension formulations of a poorly soluble drug using a wet media milling technique. The milling process was optimized by studying the effects of critical process parameters on the size of nanoparticles using a factorial design approach. During the design of experiments (DOEs) study, different concentrations of Vitamin E TPGS in the suspensions were used to evaluate its influence on the stabilization of a nanosuspension. Once the final formulation was optimized, a pharmacokinetic study was performed in beagle dogs to investigate the effect of different ranges of particle size of nanocrystals on the plasma profile. A significant increase in AUC and C max was observed when the drug substance was converted into nanocrystals, likely due to the increase in dissolution rate. Results also revealed that the nanosuspension formulation (consists of nanocrystals with narrow size distribution, having a mean particle size 300 nm) produced less variability with regards to the individual plasma concentrations in the dogs when compared an alternate nanocrystal formulation (consists of nanocrystals with broad size distribution having a mean particle size 750 nm). This type of observation can be explained due to the Ostwald ripening phenomena between the nanocrystals when the particle size distribution was very broad (higher poly dispersity index). Surprisingly, the un-micronized suspension containing Vitamin E TPGS did not show any significant impact on pharmacokinetic parameters.
机译:这项研究的目的是使用湿介质研磨技术开发难溶性药物的纳米混悬剂。通过使用析因设计方法研究关键工艺参数对纳米颗粒尺寸的影响,优化了研磨工艺。在实验设计(DOE)研究期间,使用了不同浓度的悬浮液中的维生素E TPGS来评估其对纳米悬浮液稳定性的影响。优化最终配方后,便在比格犬中进行了药代动力学研究,以研究不同范围的纳米晶体粒径对血浆分布的影响。当药物转化为纳米晶体时,观察到AUC和Cmax的显着增加,这可能是由于溶出度的增加所致。结果还表明,与另一种纳米晶体制剂(由宽粒径的纳米晶体组成)相比,纳米悬浮制剂(由窄尺寸分布的纳米晶体组成,平均粒径<300 nm)对狗体内的血浆浓度变化较小。粒度分布,平均粒度<750 nm)。当粒径分布非常宽(较高的多分散指数)时,由于纳米晶体之间的奥斯特瓦尔德熟化现象,可以解释这种观察。令人惊讶地,含有维生素E TPGS的未微粉化悬浮液对药代动力学参数没有显示任何显着影响。

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