Département de Chimie, Université Laval, 1045 av. De la Médecine, Québec City, QC, G1V 0A6, Canada.
Chemistry. 2020 Oct 21;26(59):13499-13506. doi: 10.1002/chem.202002825. Epub 2020 Sep 23.
In this work, we synthesized all mono-, di-, and trifluorinated glucopyranose analogues at positions C-2, C-3, C-4, and C-6. This systematic investigation allowed us to perform direct comparison of F resonances of fluorinated glucose analogues and also to determine their lipophilicities. Compounds with a fluorine atom at C-6 are usually the most hydrophilic, whereas those with vicinal polyfluorinated motifs are the most lipophilic. Finally, the solvation energies of fluorinated glucose analogues were assessed for the first time by using density functional theory. This method allowed the log P prediction of fluoroglucose analogues, which was comparable to the C log P values obtained from various web-based programs.
在这项工作中,我们合成了所有在 C-2、C-3、C-4 和 C-6 位单取代、二取代和三取代的氟代吡喃葡萄糖类似物。这项系统的研究使我们能够直接比较氟代葡萄糖类似物的 F 共振,并确定它们的亲脂性。在 C-6 位带有氟原子的化合物通常是最亲水的,而具有毗邻多氟取代基的化合物则是最亲脂的。最后,我们首次使用密度泛函理论评估了氟代葡萄糖类似物的溶剂化能。该方法允许对氟代葡萄糖类似物进行 logP 预测,这与从各种基于网络的程序获得的 ClogP 值相当。