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Development of a Total Organic Carbon method for the quantitative determination of solubility enhancement by cyclodextrins: Application to essential oils

机译:研发一种总有机碳方法,用于定量测定环糊精的溶解度:在香精油中的应用

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Formation of inclusion complexes with cyclodextrins (CDs) is known to enhance guest solubility in aqueous medium. Different techniques allow determining the evolution in solubility of individual guest compounds. However, examination of mixtures solubility encapsulated in CDs is still a challenge. This is mainly related to the difference in the response of mixture components to the applied technique or to the fact that most of the conventional methods examine the signal of an individual constituent of the mixture. Thus, applying current techniques may not reflect the behavior of the whole mixture. Here, we used for the first time Total Organic Carbon (TOC) analysis to explore and assess the efficiency of 2-hydroxypropyl-beta-cyclodextrin (HP-beta-CD) to enhance the solubility of natural complex mixtures such as essential oils (EOs). Phase solubility studies were performed for eleven EOs with HP-beta-CD. The TOC method has provided good validation parameters for linearity, precision and accuracy. For further validation of the method, phase solubility studies were performed with HP-beta-CD for eugenol, as a model EO component. The eugenol solubility was determined by UV-Visible and TOC analyses in order to compare the results. Data obtained from both methods were similar (p < 0.05), thereby proving the effectiveness of the developed TOC method. Finally, the phase solubility diagrams of EOs showed that the solubilizing potential of CD increased proportionally with the decrease in EO intrinsic solubility. Results proved that TOC could be successfully applied to investigate CD/guest inclusion complexes and is expected to have a broad range of applications in the field of mixtures encapsulation. (C) 2016 Elsevier B.V. All rights reserved.
机译:已知与环糊精(CD)形成包合物将增强客体在水性介质中的溶解度。不同的技术可以确定各个客体化合物的溶解度。但是,检查封装在CD中的混合物的溶解度仍然是一个挑战。这主要与混合物成分对所应用技术的响应差异有关,或者与大多数常规方法检查混合物中单个成分的信号有关。因此,应用当前的技术可能无法反映整个混合物的行为。在这里,我们首次使用总有机碳(TOC)分析来探索和评估2-羟丙基-β-环糊精(HP-β-CD)增强天然复杂混合物(如香精油(EOs))的溶解度的效率)。对具有HP-β-CD的11个EO进行了相溶解度研究。 TOC方法为线性,精度和准确性提供了良好的验证参数。为了进一步验证该方法,使用HP-β-CD作为丁香酚作为模型EO成分进行了相溶解度研究。为了比较结果,通过紫外可见光和TOC分析确定丁香酚的溶解度。从这两种方法获得的数据相似(p <0.05),从而证明了开发的TOC方法的有效性。最后,EO的相溶解度图表明,CD的增溶潜力随EO固有溶解度的降低而成比例增加。结果证明,TOC可以成功地用于研究CD /客体包涵体复合物,并有望在混合物封装领域中广泛应用。 (C)2016 Elsevier B.V.保留所有权利。

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