Sayed Mhejabeen, Jha Shruti, Pal Haridas
Radiation & Photochemistry Division, Bhabha Atomic Research Centre, Trombay, Mumbai 400 085, India.
Phys Chem Chem Phys. 2017 Sep 13;19(35):24166-24178. doi: 10.1039/c7cp03135a.
The present study reports a contrasting interaction behaviour of a biologically important dye, acridine orange (AOH), with a highly water soluble anionic host, based on a β-cyclodextrin (βCD) scaffold, i.e. sulfobutylether-β-cyclodextrin (SBEβCD), in comparison to native βCD. AOH shows striking modulation in its photophysical properties, representing sequential changes in the modes of interaction with increasing SBEβCD concentration. At lower SBEβCD concentrations, AOH preferentially binds in dimeric forms at the negatively charged SBEβCD portals, leading to strong fluorescence quenching. At higher SBEβCD concentrations, the dimeric dyes convert to monomeric forms and subsequently undergo both inclusion and exo complex formation with 1 : 1 stoichiometry, resulting in a large fluorescence enhancement. The intriguing observation of sequential fluorescence switch off and switch on for an AOH-SBEβCD system is clearly facilitated by the presence of butylether chains with SO end groups at the portals of SBEβCD, providing an additional ion-ion interaction and much enhanced hydrophobic interaction for cationic AOH compared to the native βCD host. To the best of our knowledge, such fluorescence off/on switching through multistep host-guest binding has not been reported so far in the literature. The present study not only provides a detailed insight into the unique binding interactions of AOH with the SBEβCD host, but the findings of this study are also expected to be useful in designing supramolecular based drug formulations, drug delivery systems, sensors, and so on.
本研究报告了一种具有生物学重要性的染料吖啶橙(AOH)与一种基于β-环糊精(βCD)支架的高度水溶性阴离子主体,即磺丁基醚-β-环糊精(SBEβCD),相比天然βCD的对比相互作用行为。AOH的光物理性质表现出显著调制,这代表了随着SBEβCD浓度增加其相互作用模式的顺序变化。在较低的SBEβCD浓度下,AOH优先以二聚体形式结合在带负电荷的SBEβCD入口处,导致强烈的荧光猝灭。在较高的SBEβCD浓度下,二聚体染料转变为单体形式,随后以1∶1化学计量比同时形成包合物和外部配合物,导致荧光大幅增强。SBEβCD入口处带有SO端基的丁基醚链的存在明显促进了AOH-SBEβCD体系中荧光先关后开的有趣现象,与天然βCD主体相比,为阳离子AOH提供了额外的离子-离子相互作用和大大增强的疏水相互作用。据我们所知,迄今为止文献中尚未报道过通过多步主客体结合实现这种荧光开/关切换。本研究不仅详细深入地了解了AOH与SBEβCD主体的独特结合相互作用,而且本研究的结果预计在设计基于超分子的药物制剂、药物递送系统、传感器等方面也将有用。