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首页> 外文期刊>International Journal of Pharmaceutics >Predicting the solubility enhancement of amorphous drugs and related phenomena using basic thermodynamic principles and semi-empirical kinetic models
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Predicting the solubility enhancement of amorphous drugs and related phenomena using basic thermodynamic principles and semi-empirical kinetic models

机译:使用基本热力学原理和半经验动力学模型预测无定形药物和相关现象的溶解度增强

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The accurate prediction of the solubility enhancement offered by neat amorphous drugs and amorphous solid dispersions, over their crystalline (API) counterparts, has been discussed in several landmark works dating back at least two decades. Against this backdrop, an assessment of the current state-of-the-art for rigorously, yet simply (circumventing computational methods), determining the amorphousxrystalline solubility ratio based on thermo-analytical quantities is presented herein. Included in this work is a brief survey of the literature together with a discussion of the advantages and shortcomings of some of the most popular approaches, to-date. While the focus is on neat amorphous drugs, both before and after moisture sorption, the methodology presented is readily extended to more complex (e.g. ternary) systems that form a single, homogeneous phase. Six key questions are addressed in the context of how to most accurately determine the amorphous:crystalline solubility ratio: (1) How is the lattice energy of the crystalline phase assessed? (2) What is the role of heat capacity? (3) How does the pKa impact the solubility ratio prediction (for ionizable drugs)? (4) How does one incorporate the effects of moisture sorption on the amorphous phase? (5) How might one characterize (predict) the rate of drug recrystallization under various conditions (since the duration of the solubility enhancement is a kinetic phenomenon)? (6) What is the best approach for linking the (loss in) solubility enhancement to the Tg-lowering of the amorphous drug (by water) and vice-versa? In addressing these questions, this work aims to put forth a standardized methodology for determining the amorphous solubility enhancement with improved accuracy.
机译:在几个地标作品中讨论了纯净无定形药物和无定形固体分散体提供的纯无定形药物和无定形固体分散体的溶解度增强的准确预测已经在几个地标工作中讨论了至少二十年的几个地标作品。对此背景,本文介绍了基于热分析量的基于热分析量的真正的最先进的最先进的最新的最新的最新的评估。在这项工作中包括简要介绍了文献,并讨论了一些最受欢迎的方法的优势和缺点,迄今为止。虽然重点在水分吸附之前和之后的纯无定形药物上,但呈现的方法易于延伸到形成单一,均相的更复杂(例如三元)系统。如何在如何准确地确定无定形:结晶溶解度比的背景下解决了六个关键问题:(1)结晶阶段的晶格能量如何评估? (2)热量的作用是什么? (3)PKA如何影响溶解度比预测(可电离药物)? (4)如何将水分吸附对非晶相的影响如何? (5)如何表征(预测)在各种条件下的药物重结晶速率(由于溶解度增强以来是动力学现象)? (6)将(损失)溶解度增强与无定形药物(水)的TG降低的最佳方法是什么是将溶解度增强的最佳方法和反之亦然?在解决这些问题时,这项工作旨在提出一种标准化的方法,用于确定无定形溶解度提高,提高精度。

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