Institute of New Drug Development, China Medical University, No. 91 Hsueh-Shih Road, Taichung 40402, Taiwan.
Department of Engineering and System Science, National Tsing Hua University, Hsinchu 30013, Taiwan.
Molecules. 2020 Nov 20;25(22):5455. doi: 10.3390/molecules25225455.
In this paper, a modified Cyclotriveratrylene was synthesized and linked to a branched Polyethylenimine, and this unique polymeric material was subsequently examined as a potential supramolecular carrier for Doxorubicin. Spectroscopic analysis in different solvents had shown that Doxorubicin was coordinated within the hollow-shaped unit of the armed Cyclotriveratrylene, and the nature of the host-guest complex revealed intrinsic Van der Waals interactions and hydrogen bonding between the host and guest. The strongest interaction was detected in water because of the hydrophobic effect shared between the aromatic groups of the Doxorubicin and Cyclotriveratrylene unit. Density functional theory calculations had also confirmed that in the most stable coordination of Doxorubicin with the cross-linked polymer, the aromatic rings of the Doxorubicin were localized toward the Cyclotriveratrylene core, while its aliphatic chains aligned closer with amino groups, thus forming a compact supramolecular assembly that may confer a shielding effect on Doxorubicin. These observations had emphasized the importance of supramolecular considerations when designing a novel drug delivery platform.
本文合成了一种改良的环三亚甲基并环辛烷,将其连接到支化的聚乙烯亚胺上,随后将这种独特的聚合材料作为阿霉素的潜在超分子载体进行了研究。在不同溶剂中的光谱分析表明,阿霉素在武装环三亚甲基并环辛烷的中空单元内配位,主客体配合物的性质揭示了主体和客体之间的固有范德华相互作用和氢键。由于阿霉素和环三亚甲基并环辛烷单元的芳环之间存在疏水相互作用,因此在水中检测到最强的相互作用。密度泛函理论计算还证实,在阿霉素与交联聚合物的最稳定配位中,阿霉素的芳环定位于环三亚甲基并环辛烷核心,而其脂肪链与氨基更接近,从而形成一个紧凑的超分子组装,可能对阿霉素具有屏蔽作用。这些观察结果强调了在设计新型药物输送平台时考虑超分子因素的重要性。