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Partial Solvation Parameters of Drugs as a New Thermodynamic Tool for Pharmaceutics

机译:药物的部分溶剂化参数作为新的热力学工具

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摘要

Partial solvation parameters (PSP) have much in common with the Hansen solubility parameter or with a linear solvation energy relationship (LSER), but there are advantages based on the sound thermodynamic basis. It is, therefore, surprising that PSP has so far not been harnessed in pharmaceutics for the selection of excipients or property estimation of formulations and their components. This work introduces PSP calculation for drugs, where the raw data were obtained from inverse gas chromatography. It was shown that only a few probe gases were needed to get reasonable estimates of the drug PSPs. Interestingly, an alternative calculation of LSER parameters in silico did not reflect the experimentally obtained activity coefficients for all probe gases as well, which was attributed to the complexity of the drug structures. The experimental PSPs were proven to be helpful in predicting drug solubility in various solvents and the PSP framework allowed calculation of the different surface energy contributions. A specific benefit of PSP is that parameters can be readily converted to either classical solubility or LSER parameters. Therefore, PSP is not just about a new definition of solvatochromic parameters, but the underlying thermodynamics provides a unified approach, which holds much promise for broad applications in pharmaceutics.
机译:部分溶剂化参数(PSP)与Hansen溶解度参数或线性溶剂化能量关系(LSER)有很多共同点,但基于稳固的热力学基础也有优势。因此,令人惊讶的是,到目前为止,在药物学中尚未使用PSP来选择赋形剂或估计制剂及其成分的性质。这项工作介绍了药物的PSP计算,其中原始数据是从逆气相色谱获得的。结果表明,仅需少量探测气体即可对药物PSP进行合理估计。有趣的是,计算机中LSER参数的另一种计算方法也没有反映所有探针气体的实验获得的活度系数,这归因于药物结构的复杂性。实验证明PSPs有助于预测药物在各种溶剂中的溶解度,并且PSP框架允许计算不同的表面能。 PSP的一个特殊好处是可以轻松地将参数转换为经典溶解度或LSER参数。因此,PSP不仅是溶剂变色参数的新定义,而且潜在的热力学提供了统一的方法,这为在药物学中的广泛应用提供了广阔的前景。

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