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葫芦脲[7]与硫代黄素 T 配合物的协同金属离子络合:刺激响应型荧光超分子胶囊的证明。

Cooperative metal ion binding to a cucurbit[7]uril-thioflavin T complex: demonstration of a stimulus-responsive fluorescent supramolecular capsule.

机构信息

Radiation & Photochemistry Division, Bhabha Atomic Research Centre, Mumbai 400 085, India.

出版信息

J Am Chem Soc. 2010 Feb 3;132(4):1395-401. doi: 10.1021/ja908795y.

Abstract

We report an intriguing noncovalent interaction of thioflavin T (ThT), a fibril diagnostic dye, with the versatile macrocyclic host molecule cucurbit[7]uril (CB7) in the presence of metal cations. ThT forms both 1:1 (CB7.ThT) and 2:1 [(CB7)(2).ThT] complexes with CB7 host, leading to specific structural arrangements. Addition of competitive guests like metal cations to the 1:1 stoichiometric complex displays expected competitive binding interactions with CB7, leading to decreased fluorescence intensity from ThT. However, addition of metal ions to the 2:1 complex leads to unusual enhancement in the fluorescence emission ( approximately 270-fold in the presence of Ca(2+) and approximately 160-fold in the presence of Na(+)). These contrasting observations on the fluorescence enhancement with change in the stoichiometric equilibrium have been investigated explicitly for a feasible binding model. Detailed photophysical characterization with supporting data from NMR and anisotropy measurements has led to the revelation of a novel stimulus-responsive cooperative metal ion binding to the stoichiometrically selected (CB7)(2).ThT complex, demonstrating a highly fluorescent supramolecular nanocapsule. The first example of a noncovalently packed fluorescent complex became feasible due to the structural arrangement of the host-guest complex in the 2:1 stoichiometry with two CB7 portals providing strong negative charge density for the metal ions to group and seal the complex, thus protecting the incorporated dye. To further strengthen the usefulness of the supramolecular capsule established here, rupture of the capsular complex has been demonstrated with a strong competitive guest, 1-amantadine hydrochloride, which helped in disrupting the capsule to release the dye. It is proposed here that by judicious design of the chromophore (guest) structure, such capsular assemblies can be explored for the binding and release of drug molecules, for fluorescence on-off systems, and as building blocks for molecular architectures displaying unique properties.

摘要

我们报告了一种有趣的非共价相互作用,即硫堇 T(ThT),一种纤维状诊断染料,与多功能大环主体分子瓜环[7]脲(CB7)在金属阳离子存在下相互作用。ThT 与 CB7 主体形成 1:1(CB7.ThT)和 2:1[(CB7)(2).ThT]配合物,导致特定的结构排列。向 1:1 化学计量配合物中添加竞争性客体(如金属阳离子)会显示出与 CB7 的预期竞争结合相互作用,导致 ThT 的荧光强度降低。然而,向 2:1 配合物中添加金属离子会导致荧光发射异常增强(在 Ca(2+)存在下约 270 倍,在 Na(+)存在下约 160 倍)。这种关于在化学计量平衡变化时荧光增强的对比观察已经在可行的结合模型中进行了明确的研究。详细的光物理特性研究,包括 NMR 和各向异性测量的支持数据,揭示了一种新的刺激响应协同金属离子结合到化学计量选择的(CB7)(2)。ThT 配合物,展示了一种高度荧光超分子纳米胶囊。由于 2:1 化学计量比中主体-客体配合物的结构排列,第一个非共价包装荧光配合物的例子成为可能,两个 CB7 门户为金属离子提供了强大的负电荷密度,使它们聚集并密封配合物,从而保护所包含的染料。为了进一步增强这里建立的超分子胶囊的有用性,已经证明用强竞争性客体 1-金刚烷胺盐酸盐破坏胶囊复合物,这有助于破坏胶囊以释放染料。这里提出的观点是,通过明智地设计生色团(客体)结构,可以探索这种胶囊组装体用于药物分子的结合和释放、荧光开-关系统,以及作为展示独特性质的分子结构的构建块。

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