Kadam Vidya, Kakatkar Aarti S, Barooah Nilotpal, Chatterjee Suchandra, Bhasikuttan Achikanath C, Mohanty Jyotirmayee
Radiation & Photochemistry Division, Bhabha Atomic Research Centre Mumbai 400 085 India
Food Technology Division, Bhabha Atomic Research Centre Mumbai 400 085 India.
RSC Adv. 2020 Jul 3;10(42):25370-25378. doi: 10.1039/d0ra03823g. eCollection 2020 Jun 29.
The noncovalent host-guest interaction of sanguinarine (SGR), a benzophenanthridine alkaloid, with a nontoxic, water soluble sulfobutylether-β-cyclodextrin (SBEβCD, commercially available as Captisol) macrocyclic host has been investigated using ground-state optical absorption, and steady-state and time-resolved fluorescence measurements. The pH-dependent changes in the absorbance of the dye at 327 nm showed a p value of 7.5, which has been shifted to 8.1 in the presence of SBEβCD. The changes in the p values, absorption and fluorescence spectra, and fluorescence lifetime values of these two forms of SG with SBEβCD indicate complex formation between them. The cationic form shows 3 times higher interaction towards SEBβCD ( = 1.2 × 10 M) as compared to the neutral form ( = 3.9 × 10 M) which leads to a moderate upward p shift (p values of SGR shifted by more than 0.6 units). The subsequent fluorescence "turn off" was demonstrated to be responsive to chemical stimuli, such as metal ions (Ca ions). Upon addition of Ca ions, nearly quantitative dissociation of the complex was established to regenerate the free dye and result in fluorescence "turn on". Apart from improving the stability under ambient light conditions, the upward p shift of SGR in the presence of SBEβCD results in increasing the antibacterial activity of the SBEβCD:SGR complex compared to that of the free dye towards four pathogenic micro-organisms at the physiological pH range. This work further compares SGR interaction with parent β-cyclodextrin.
使用基态光吸收、稳态和时间分辨荧光测量方法,研究了苯并菲啶生物碱血根碱(SGR)与无毒水溶性磺丁基醚-β-环糊精(SBEβCD,商品名为Captisol)大环主体之间的非共价主客体相互作用。染料在327 nm处吸光度的pH依赖性变化显示p值为7.5,在存在SBEβCD的情况下该值已变为8.1。这两种形式的SG与SBEβCD的p值、吸收光谱和荧光光谱以及荧光寿命值的变化表明它们之间形成了复合物。阳离子形式对SEBβCD的相互作用( = 1.2 × 10 M)是中性形式( = 3.9 × 10 M)的3倍,这导致p值适度上移(SGR的p值移动超过0.6个单位)。随后的荧光“猝灭”被证明对化学刺激有响应,例如金属离子(Ca离子)。加入Ca离子后,复合物几乎定量解离以再生游离染料并导致荧光“开启”。除了提高在环境光条件下的稳定性外,在SBEβCD存在下SGR的p值上移导致SBEβCD:SGR复合物在生理pH范围内对四种致病微生物的抗菌活性比游离染料有所增加。这项工作还比较了SGR与母体β-环糊精的相互作用。