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Assessing Physicochemical Properties of Drug Molecules via Microsolvation Measurements with Differential Mobility Spectrometry

机译:通过微溶剂测量和差动迁移率法评估药物分子的理化性质

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The microsolvated state of a molecule, represented by its interactions with only a small number of solvent molecules, can play a key role in determining the observable bulk properties of the molecule. This is especially true in cases where strong local hydrogen bonding exists between the molecule and the solvent. One method that can probe the microsolvated states of charged molecules is differential mobility spectrometry (DMS), which rapidly interrogates an ion’s transitions between a solvated and desolvated state in the gas phase (i.e., few solvent molecules present). However, can the results of DMS analyses of a class of molecules reveal information about the bulk physicochemical properties of those species? Our findings presented here show that DMS behaviors correlate strongly with the measured solution phase pKa and pKb values, and cell permeabilities of a set of structurally related drug molecules, even yielding high-resolution discrimination between isomeric forms of these drugs. This is due to DMS’s ability to separate species based upon only subtle (yet predictable) changes in structure: the same subtle changes that can influence isomers’ different bulk properties. Using 2-methylquinolin-8-ol as the core structure, we demonstrate how DMS shows promise for rapidly and sensitively probing the physicochemical properties of molecules, with particular attention paid to drug candidates at the early stage of drug development. This study serves as a foundation upon which future drug molecules of different structural classes could be examined.
机译:分子的微溶剂化状态(由其与少量溶剂分子的相互作用表示)可以在确定分子的可观察整体性质方面发挥关键作用。在分子和溶剂之间存在牢固的局部氢键的情况下尤其如此。可以探测带电分子的微溶剂化状态的一种方法是差分迁移谱(DMS),它可以快速查询气相中离子在溶剂化和去溶剂化状态之间的跃迁(即,几乎没有溶剂分子)。但是,DMS分析一类分子的结果是否可以揭示有关这些物种的整体物理化学特性的信息?我们在这里提出的发现表明,DMS行为与溶液相pKa和pKb值以及一组结构相关药物分子的细胞渗透性密切相关,甚至在这些药物的同分异构形式之间产生高分辨率区分。这是由于DMS能够仅根据结构的细微(至今仍可预测)变化来分离物种:相同的细微变化会影响异构体的不同本体性质。使用2-甲基喹啉-8-ol作为核心结构,我们演示了DMS如何显示出迅速而灵敏地探测分子的理化性质的希望,尤其是在药物开发的早期阶段特别关注了候选药物。这项研究为将来检查不同结构类别的药物分子奠定了基础。

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