Facultad de Ciencias Químicas, Benemérita Universidad Autónoma de Puebla, 72570 Puebla, Pue., Mexico.
Centro de Química, Instituto de Ciencias, Benemérita Universidad Autónoma de Puebla, 72570 Puebla, Pue., Mexico.
Molecules. 2020 Mar 8;25(5):1213. doi: 10.3390/molecules25051213.
A new series of bisteroidal esters was synthesized using a spacer group, sterols and sapogenins as substrates. Steroidal dimers were prepared in high yields employing diesters of terephthalic acid as linkages at the 3β, 3'β steroidal positions. In all attempts to crystallize bisteroids, it was observed that the compounds tended to self-organize in solution, which was detected when employing various solvent systems. The non-covalent interactions (van der Waals) of the steroidal moieties of this series of symmetrical bisteroids, the polarity of the solvents systems, and the different solubilities of the bisteroid aggregates, indeed induce the molecules to self-assemble into supramolecular structures with well-defined organization. Our results show that the self-assembled structures for the bisteroidal derivatives depend on the solvent system used: with hexane/EtOAc, membrane-shaped structures were obtained, while pure EtOAc afforded strand-shaped arrangements. In the CHCl/CHOH system, thin strands were formed, since van der Waals interactions are lowered in this system, as a consequence of the increased solubility of the bisteroids in CHCl. Based on the characterization by SEM and XRD, we show evidence that the phenomenon of self-assembly of bisteroids occurs presenting different morphologies depending on the solvent used. The new steroidal dimer derivatives were characterized by NMR, TGA, DSC, SEM, and XRD. Finally, the molecular structure of one bisteroid was confirmed by single-crystal X-ray analysis.
使用间隔基、甾醇和皂甙元作为底物,合成了一系列新的双甾体酯。采用对苯二甲酸的二酯作为 3β、3'β 甾体位置的连接键,以高产率制备了甾体二聚体。在所有尝试结晶双甾体的尝试中,观察到化合物在溶液中倾向于自组织,当使用各种溶剂系统时,可以检测到这种情况。该系列对称双甾体中甾体部分的非共价相互作用(范德华力)、溶剂系统的极性以及双甾体聚集体的不同溶解度确实促使分子自组装成具有明确定义组织的超分子结构。我们的结果表明,双甾体衍生物的自组装结构取决于所用的溶剂系统:使用正己烷/乙酸乙酯,得到膜状结构,而纯乙酸乙酯则得到链状排列。在 CHCl/CHOH 系统中,由于该系统中双甾体的溶解度增加,范德华相互作用降低,因此形成了薄链。基于 SEM 和 XRD 的表征,我们证明了双甾体自组装现象的存在,其呈现出不同的形态取决于所用的溶剂。通过 NMR、TGA、DSC、SEM 和 XRD 对新的甾体二聚体衍生物进行了表征。最后,通过单晶 X 射线分析证实了一种双甾体的分子结构。