Predicting sulfanilamide solubility in the binary mixtures using a reference solvent approach.

Q3 Medicine Polimery w medycynie Pub Date : 2024-01-01 DOI:10.17219/pim/178284
Piotr Cysewski, Maciej Przybyłek, Tomasz Jeliński
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引用次数: 0

Abstract

Background: Solubility is a fundamental physicochemical property of active pharmaceutical ingredients. The optimization of a dissolution medium aims not only to increase solubility and other aspects are to be included such as environmental impact, toxicity degree, availability, and costs. Obtaining comprehensive solubility characteristics of chemical compounds is a non-trivial and demanding process. Therefore, support from theoretical approaches is of practical importance.

Objectives: This study aims to examine the accuracy of the reference solubility approach in the case of sulfanilamide dissolution in a variety of binary solvents. This pharmaceutically active substance has been extensively studied, and a substantial amount of solubility data is available. Unfortunately, using this set of data directly for theoretical modeling is impeded by noticeable inconsistencies in the published solubility data. Hence, this aspect is addressed by data curation using theoretical and experimental confirmations.

Material and methods: In the experimental part of our study, the popular shake-flask method combined with ultraviolet (UV) spectrophotometric measurements was applied for solubility determination. The computational phase utilized the conductor-like screening model for real solvents (COSMO-RS) approach.

Results: The analysis of the results of solubility calculations for sulfonamide in binary solvents revealed abnormally high error values for acetone-ethyl acetate mixtures, which were further confirmed with experimental measurements. Additional confirmation was obtained by extending the solubility measurements to a series of homologous acetate esters.

Conclusions: Our study addresses the crucial issue of coherence of solubility data used for many theoretical inquiries, including parameter fitting of semi-empirical models, in-depth thermodynamic interpretations and application of machine learning protocols. The effectiveness of the proposed methodology for dataset curation was demonstrated for sulfanilamide solubility in binary mixtures. This approach enabled not only the formulation of a consistent dataset of sulfanilamide solubility binary solvent mixtures, but also its implementation as a qualitative tool guiding rationale solvent selection for experimental solubility screening.

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使用参考溶剂法预测二元混合物中的磺胺溶解度。
背景:溶解度是活性药物成分的基本物理化学特性。溶解介质的优化不仅是为了提高溶解度,还包括环境影响、毒性程度、可用性和成本等其他方面。获取化合物的综合溶解度特性是一个非同小可且要求极高的过程。因此,理论方法的支持具有重要的现实意义:本研究旨在考察磺胺在各种二元溶剂中溶解时参考溶解度方法的准确性。我们已经对这种药物活性物质进行了广泛的研究,并获得了大量的溶解度数据。遗憾的是,由于已公布的溶解度数据存在明显的不一致性,直接使用这组数据进行理论建模受到了阻碍。因此,我们利用理论和实验证实对数据进行整理,以解决这方面的问题:在研究的实验部分,我们采用了常用的摇瓶法结合紫外分光光度法进行溶解度测定。计算阶段采用了实际溶剂的导体筛选模型(COSMO-RS)方法:结果:磺胺在二元溶剂中的溶解度计算结果分析表明,丙酮-醋酸乙酯混合物的误差值异常高,实验测量结果进一步证实了这一点。通过将溶解度测量扩展到一系列同源的醋酸酯,进一步证实了这一点:我们的研究解决了用于许多理论研究的溶解度数据一致性这一关键问题,包括半经验模型的参数拟合、深入的热力学解释和机器学习协议的应用。针对二元混合物中的磺胺溶解度,证明了所提出的数据集整理方法的有效性。通过这种方法,不仅可以建立一个一致的磺胺溶解度二元溶剂混合物数据集,还可以将其用作定性工具,指导溶解度实验筛选的合理溶剂选择。
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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来源期刊
Polimery w medycynie
Polimery w medycynie Medicine-Medicine (all)
CiteScore
3.30
自引率
0.00%
发文量
9
审稿时长
53 weeks
期刊最新文献
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