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从分子相互作用到在深共晶溶剂中的溶解度:探索氟芬那酸在氯化胆碱和薄荷醇基体系中的情况

From Molecular Interactions to Solubility in Deep Eutectic Solvents: Exploring Flufenamic Acid in Choline-Chloride- and Menthol-Based Systems.

作者信息

Cysewski Piotr, Jeliński Tomasz, Kukwa Oliwia, Przybyłek Maciej

机构信息

Department of Physical Chemistry, Pharmacy Faculty, Collegium Medicum of Bydgoszcz, Nicolaus Copernicus University in Toruń, Kurpińskiego 5, 85-096 Bydgoszcz, Poland.

出版信息

Molecules. 2025 Aug 20;30(16):3434. doi: 10.3390/molecules30163434.

Abstract

This study explores how intermolecular interactions govern the composition of saturated solutions of influence flufenamic acid (FlA) in deep eutectic solvents (DESs). Using choline chloride (ChCl) or menthol (Men) as the HBAs and various polyols as the HBDs, FlA solubility was measured in different DES systems. The experimental values along with intermolecular interactions quantified via COSMOtherm-derived Gibbs free energies were used in the determination of component distributions for varying DES formulations. It was inferred that DES systems primarily consist of molecular complexes (dimers and hetero-pairs) rather than monomers due to their high association propensity. In the case of ChCl-based DESs, the HBA-HBD hetero-pairs are favored and strongly dominate. In contrast, Men-based DESs exhibited a strong attraction to HBDs; however, their self-association led to the predominance of HBD dimers. Solubility of FlA correlated with solute-containing hetero-pairs, peaking at optimal HBA-HBD ratios. These insights support in developing a rationale for DES design for pharmaceutical applications. The conclusions of this study were inferred from a novel crafted physically constrained iterative algorithm that reliably determines molecular composition from the equilibrium constants, overcoming the limitations of conventional numerical solvers in highly associated systems.

摘要

本研究探讨了分子间相互作用如何控制氟芬那酸(FlA)在深共熔溶剂(DESs)中的饱和溶液组成。以氯化胆碱(ChCl)或薄荷醇(Men)作为氢键受体(HBAs),各种多元醇作为氢键供体(HBDs),在不同的DES体系中测量了FlA的溶解度。通过由COSMOtherm导出的吉布斯自由能对分子间相互作用进行量化,将实验值用于确定不同DES配方的组分分布。据推断,由于DES体系具有较高的缔合倾向,其主要由分子复合物(二聚体和异质对)而非单体组成。在基于ChCl的DESs中,HBA - HBD异质对占优势且起主导作用。相比之下,基于Men的DESs对HBDs表现出强烈的吸引力;然而,它们的自缔合导致HBD二聚体占主导地位。FlA的溶解度与含溶质的异质对相关,在最佳HBA - HBD比例时达到峰值。这些见解有助于为药物应用的DES设计提供理论依据。本研究的结论是通过一种精心设计的新型物理约束迭代算法推导得出的,该算法能从平衡常数可靠地确定分子组成,克服了传统数值求解器在高度缔合体系中的局限性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/957d/12388410/f6bc258d1885/molecules-30-03434-g001.jpg

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