Laser and Plasma Technology Division, Bhabha Atomic Research Centre, Mumbai 400085, India and Homi Bhabha National Institute, Anushaktinagar, Mumbai 400094, India.
Homi Bhabha National Institute, Anushaktinagar, Mumbai 400094, India.
Org Biomol Chem. 2019 Jul 17;17(28):6895-6904. doi: 10.1039/c9ob01349k.
Supramolecular host-guest pairs, with a very high association constant, represent excellent molecular recognition motifs, and serve as useful building blocks for numerous exciting supramolecular functional materials. Cyclodextrins, an important class of glucopyranose-based hosts, generally, suffer from low affinity for most guest molecules (102-104 M-1). Herein, we report a styryl-based fluorogenic probe which registers a very high association constant of 7.84 × 105 M-1 with sulfobutylether substituted β-cyclodextrin in contrast to a low association constant of 1.89 × 102 M-1 with unmodified β-cyclodextrin (β-CD). This exceptionally high binding affinity of the fluorogenic probe with the sulfobutylether substituted β-CD has been attributed to the strong electrostatic interactions between the cationic guest and the polyanionic host along with improved hydrophobic interactions due to the extended butylether groups present on the rims of the cyclodextrin cavity. The significant modulations in the photophysical properties of guest molecule, upon interaction with host molecule, have been investigated, in detail, using ground-state absorption, steady-state fluorescence and time-resolved emission measurements. The effect of temperature and ionic strength of the medium have been employed to investigate the nature of the underlying interactions in the present host-guest system. The possibility of indicator displacement assay involving the present host-guest system has also been demonstrated using a competitive binder.
超分子主客体对具有非常高的结合常数,代表了极好的分子识别基序,并作为许多令人兴奋的超分子功能材料的有用构建块。环糊精作为一类重要的基于葡萄糖的主体,通常对大多数客体分子的亲和力较低(102-104 M-1)。在此,我们报告了一种基于苯乙烯的荧光探针,它与磺丁基醚取代的β-环糊精的结合常数非常高,为 7.84×105 M-1,而与未修饰的β-环糊精(β-CD)的结合常数仅为 1.89×102 M-1。这种荧光探针与磺丁基醚取代的β-环糊精具有异常高的结合亲和力归因于阳离子客体与多阴离子主体之间的强静电相互作用,以及由于环糊精空腔边缘存在扩展的丁基醚基团而改善的疏水性相互作用。使用基态吸收、稳态荧光和时间分辨发射测量,详细研究了客体分子与主体分子相互作用时光物理性质的显著调制。还通过使用竞争性结合物,研究了温度和介质离子强度对本主体客体体系中潜在相互作用的影响。