Reufer Mathias, Machado Alexandra H E, Niederquell Andreas, Bohnenblust Katharina, Müller Beat, Völker Andreas Charles, Kuentz Martin
University of Applied Sciences and Arts Northwestern Switzerland, Institute of Pharma Technology, Muttenz CH-4132 Switzerland; LS Instruments, Fribourg CH-1700, Switzerland.
University of Applied Sciences and Arts Northwestern Switzerland, Institute of Pharma Technology, Muttenz CH-4132 Switzerland.
J Pharm Sci. 2014 Dec;103(12):3902-3913. doi: 10.1002/jps.24197. Epub 2014 Oct 9.
Emulsions are widely used for pharmaceutical, food, and cosmetic applications. To guarantee that their critical quality attributes meet specifications, it is desirable to monitor the emulsion manufacturing process. However, finding of a suitable process analyzer has so far remained challenging. This article introduces diffusing wave spectroscopy (DWS) as an at-line technique to follow the manufacturing process of a model oil-in-water pharmaceutical emulsion containing xanthan gum. The DWS results were complemented with mechanical rheology, microscopy analysis, and stability tests. DWS is an advanced light scattering technique that assesses the microrheology and in general provides information on the dynamics and statics of dispersions. The obtained microrheology results showed good agreement with those obtained with bulk rheology. Although no notable changes in the rheological behavior of the model emulsions were observed during homogenization, the intensity correlation function provided qualitative information on the evolution of the emulsion dynamics. These data together with static measurements of the transport mean free path (l*) correlated very well with the changes in droplet size distribution occurring during the emulsion homogenization. This study shows that DWS is a promising process analytical technology tool for development and manufacturing of pharmaceutical emulsions.
乳液广泛应用于制药、食品和化妆品领域。为确保其关键质量属性符合规格要求,对乳液生产过程进行监测很有必要。然而,迄今为止,找到合适的过程分析仪仍然具有挑战性。本文介绍了扩散波谱法(DWS)作为一种在线技术,用于跟踪含有黄原胶的水包油型药用乳液模型的生产过程。DWS结果通过机械流变学、显微镜分析和稳定性测试得到补充。DWS是一种先进的光散射技术,可评估微观流变学,并通常提供有关分散体动力学和静态学的信息。获得的微观流变学结果与通过本体流变学获得的结果显示出良好的一致性。尽管在均质化过程中未观察到模型乳液流变行为的显著变化,但强度相关函数提供了有关乳液动力学演变的定性信息。这些数据与传输平均自由程(l*)的静态测量结果一起,与乳液均质化过程中液滴尺寸分布的变化非常相关。这项研究表明,DWS是一种用于制药乳液开发和生产的有前途的过程分析技术工具。