Gilberg Laura, Zhang Ben, Zavalij Peter Y, Sindelar Vladimir, Isaacs Lyle
Department of Chemistry and RECETOX, Masaryk University, Kamenice 5, 625 00 Brno, Czech Republic.
Org Biomol Chem. 2015 Apr 7;13(13):4041-50. doi: 10.1039/c5ob00184f.
We present the synthesis of a series of six new glycoluril derived molecular clips and acyclic CB[n]-type molecular containers (1–3) that all feature SO3(−) solubilizing groups but differ in the number of glycoluril rings between the two terminal dialkoxyaromatic sidewalls. We report the X-ray crystal structure of 3b which shows that its dialkoxynaphthalene sidewalls actively define a hydrophobic cavity with high potential to engage in π–π interactions with insoluble aromatic guests. Compounds 1–3 possess very good solubility characteristics (≥38 mM) and undergo only very weak self-association (Ks < 92 M(−1)) in water. The weak self-association is attributed to unfavorable SO3(−)···SO3(−) electrostatic interactions in the putative dimers 12–42. Accordingly, we created phase solubility diagrams to study their ability to act as solubilizing agents for four water insoluble drugs (PBS-1086, camptothecin, β-estradiol, and ziprasidone). We find that the containers 3a and 3b which feature three glycoluril rings between the terminal dialkoxy-o-xylylene and dialkoxynaphthalene sidewalls are less efficient solubilizing agents than 4a and 4b because of their smaller hydrophobic cavities. Containers 1 and 2 behave as molecular clip type receptors and therefore possess the ability to bind to and thereby solubilize aromatic drugs like camptothecin, ziprasidone, and PBS-1086.
我们展示了一系列六种新的甘脲衍生分子夹和无环CB[n]型分子容器(1-3)的合成,这些分子容器均具有SO3(−)增溶基团,但两个末端二烷氧基芳族侧壁之间的甘脲环数量不同。我们报道了3b的X射线晶体结构,其表明其二烷氧基萘侧壁积极地定义了一个具有高潜力与不溶性芳族客体进行π-π相互作用的疏水腔。化合物1-3具有非常好的溶解性特征(≥38 mM),并且在水中仅发生非常弱的自缔合(Ks < 92 M(−1))。弱自缔合归因于假定二聚体12-42中不利的SO3(−)···SO3(−)静电相互作用。因此,我们创建了相溶解度图,以研究它们作为四种水不溶性药物(PBS-1086、喜树碱、β-雌二醇和齐拉西酮)增溶剂的能力。我们发现,在末端二烷氧基邻二甲苯和二烷氧基萘侧壁之间具有三个甘脲环的容器3a和3b由于其较小的疏水腔,作为增溶剂的效率低于4a和4b。容器1和2表现为分子夹型受体,因此具有结合并增溶喜树碱、齐拉西酮和PBS-1086等芳族药物的能力。