Chemical Research Center, Hungarian Academy of Sciences, P.O. Box 17, 1525, Budapest, Hungary.
Org Biomol Chem. 2011 Feb 21;9(4):1061-70. doi: 10.1039/c0ob00666a. Epub 2010 Dec 14.
The inclusion of sanguinarine, a biologically active natural benzophenanthridine alkaloid, in cucurbit[7]uril (CB7) was studied by NMR and ground-state absorption spectroscopy, as well as steady-state and time-resolved fluorescence measurements in aqueous solution. The iminium form of sanguinarine (SA(+)) produces very stable 1 : 1 inclusion complex with CB7 (K = 1.0 × 10(6) M(-1)), whereas the equilibrium constant for the binding of the second CB7 is about 3 orders of magnitude smaller. Marked fluorescence quantum yield and fluorescence lifetime enhancements are found upon encapsulation of SA(+) due to the deceleration of the radiationless deactivation from the single-excited state, but the fluorescent properties of 1 : 1 and 1 : 2 complexes barely differ. The equilibrium between the iminium and alkanolamine forms is shifted 3.69 pK unit upon addition of CB7 as a consequence of the preferential encapsulation of the iminium form and the protection of the 6 position of sanguinarine against the nucleophilic attack by hydroxide anion. On the basis of thermodynamic cycle, about 225 M(-1) is estimated for the equilibrium constant of the complexation between the alkanolamine form of sanguinarine (SAOH) and CB7. The confinement in the CB7 macrocycle can be used to impede the nucleophilic addition of OH(-) to SA(+) and to hinder the photooxidation of SAOH.
血根碱,一种具有生物活性的天然苯并菲啶生物碱,与葫芦脲[7](CB7)形成包合物的过程通过 NMR 和基态吸收光谱以及水溶液中的稳态和时间分辨荧光测量进行了研究。血根碱的亚氨基形式(SA(+))与 CB7 形成非常稳定的 1:1 包合物(K = 1.0×10(6) M(-1)),而第二个 CB7 的结合平衡常数约小 3 个数量级。由于单激发态的非辐射失活减速,SA(+)包封后荧光量子产率和荧光寿命显著增强,但 1:1 和 1:2 配合物的荧光性质几乎没有差异。由于亚氨基形式的优先包封和对血根碱 6 位的亲核攻击的保护,CB7 的加入使亚氨基和烷醇胺形式之间的平衡向 3.69 pK 单位移动。根据热力学循环,估算了血根碱的烷醇胺形式(SAOH)与 CB7 之间的配合物平衡常数约为 225 M(-1)。在 CB7 大环中受限可用于阻碍 OH(-)对 SA(+)的亲核加成,并阻碍 SAOH 的光氧化。