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Impact of Stereospecific IntramolecularHydrogen Bondingon Cell Permeability and Physicochemical Properties

机译:立体特异性分子内的影响氢键渗透性和理化性质的研究

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摘要

Profiling of eight stereoisomeric T. cruzi growth inhibitors revealed vastly different in vitro properties such as solubility, lipophilicity, pKa, and cell permeability for two sets of four stereoisomers. Using computational chemistry and NMR spectroscopy, we identified the formation of an intramolecular NH→NR3 hydrogen bond in the set of stereoisomers displaying lower solubility, higher lipophilicity, and higher cell permeability. The intramolecular hydrogen bond resulted in a significant pKa difference that accounts for the other structure–property relationships. Application of this knowledge could be of particular value to maintain the delicate balance of size, solubility, and lipophilicity required for cell penetration and oral administration for chemical probes or therapeutics with properties at, or beyond, Lipinski’s rule of 5.
机译:对八种立体异构克鲁斯克鲁维酵母生长抑制剂的分析揭示了两组四种立体异构体的体外特性极为不同,例如溶解度,亲脂性,pKa和细胞通透性。使用计算化学和NMR光谱,我们确定了一组立体异构体中分子内NH→NR3氢键的形成,这些异构体显示出较低的溶解度,较高的亲脂性和较高的细胞渗透性。分子内氢键导致明显的pKa差异,这解释了其他结构-性质关系。该知识的应用对于维持细胞渗透和口服给药所需的尺寸,溶解度和亲脂性之间的微妙平衡可能具有特殊价值,化学探针或治疗剂的细胞渗透和口服给药的性能应达到或超过Lipinski的5法则。

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