Department of Chemistry and Industrial Chemistry, University of Pisa, via G. Moruzzi 13, 56124 Pisa, Italy.
CycloLab, Cyclodextrin R&D Ltd., Illatos út. 7, H-1097 Budapest, Hungary.
Molecules. 2023 Mar 20;28(6):2804. doi: 10.3390/molecules28062804.
Silylated-acetylated cyclodextrin (CD) derivatives have recently been investigated, via nuclear magnetic resonance (NMR) spectroscopy, as chiral sensors for substrates that are endowed and devoid of fluorine atoms, and the importance of Si-F interaction in the discrimination phenomena has been assessed. Here, the contributions of both superficial interactions and inclusion processes were further evaluated by extending the records to other chiral fluorinated substrates of interest for pharmaceutical applications. Non-equivalences were measured for both the H and F resonances in equimolar mixtures with the CDs; the promising results also supported the use of chiral sensors in -stoichiometric amounts. Finally, the occurrence of inclusion processes was evaluated by analyzing the intermolecular dipolar interactions by means of ROESY (Rotating-frame Overhauser Enhancement Spectroscopy) experiments. The study confirmed that the γCD derivative is the best chiral solvating agent for the fluorinated substrates investigated, likely due to the higher number of silyl moieties that can be involved in Si-F interactions. The contribution of inclusion processes to the enantiodiscrimination was also confirmed by comparison with the α- and β-analogues. Overall, the CD derivatives proved to be able to discriminate fluorinated substrates even when used in -stoichiometric amounts.
硅基乙酰化环糊精(CD)衍生物最近通过核磁共振(NMR)光谱法被研究为具有和不具有氟原子的底物的手性传感器,评估了 Si-F 相互作用在识别现象中的重要性。在这里,通过将记录扩展到其他具有药物应用价值的手性氟化底物,进一步评估了表面相互作用和包合过程的贡献。在与 CD 的等摩尔混合物中测量了 H 和 F 共振的非等价性;有希望的结果也支持使用手性传感器以化学计量比使用。最后,通过分析 ROESY(旋转框架过氧化物增强光谱)实验中的分子间偶极相互作用来评估包合过程的发生。该研究证实,γCD 衍生物是研究的氟化底物的最佳手性溶剂化试剂,这可能是由于可以参与 Si-F 相互作用的硅烷基数量较高。与α-和β-类似物的比较也证实了包合过程对手性识别的贡献。总的来说,即使以化学计量比使用,CD 衍生物也被证明能够区分氟化底物。