EVALUATION OF RESPONSE CORELLATION USING CHEMOMETRICS ANALYSIS FOR PRE-OPTIMIZATION QUERCETIN – SELF EMULSION FORMULATION

S. Shiyan, Jessica Nathasia, Galih Pratiwi
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Abstract

The optimization approach using the simplex lattice design (SCD) has many advantages, including a minimized number of experiments and a good description of the interactions between components. However, modeling with the SCD approach has not evaluated between responses. Therefore, this study aims to apply chemometric analysis to evaluate the response from the optimization stage using the quercetin – self emulsion formulations (quercetin-SEFs) as a model. SEFs were prepared using grapeseed oil, croduret, and PEG 400. The evaluated responses included emulsification time and transmittance. Both responses were developed in endurance test by centrifugation method and stability test using freeze-thaw. Chemometric analysis on CA produced a dendrogram, while PCA produced score plots, loading plots, scree plots, and biplots. Emulsification time has a positive correlation with transmittance value. The quercetin-SEFs formula in SCD was classified into three groups based on the similarity of characters. Chemometric analysis was successfully applied in evaluating the response to the quercetin-SEFs optimization modeling.
应用化学计学分析评价槲皮素自乳化制剂的反应相关性
使用单纯形格设计(SCD)的优化方法具有许多优点,包括实验次数最少,并且可以很好地描述组件之间的相互作用。然而,使用SCD方法进行建模并没有在响应之间进行评估。因此,本研究旨在使用槲皮素自乳化制剂(槲皮素SEFs)作为模型,应用化学计量分析来评估优化阶段的反应。使用葡萄籽油、Crodure和PEG400制备SEFs。评价的反应包括乳化时间和透射率。两种反应都是在离心法耐久性试验和冻融法稳定性试验中产生的。CA的化学计量分析产生了树状图,而PCA产生了评分图、负荷图、碎石图和双图。乳化时间与透光率呈正相关。根据性状的相似性将SCD中的槲皮素SEFs公式分为三组。化学计量分析已成功应用于评估槲皮素SEFs优化模型的响应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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