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首页> 外文期刊>ACS Omega >Supramolecular Dye Aggregate Assembly Enables Ratiometric Detection and Discrimination of Lysine and Arginine in Aqueous Solution
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Supramolecular Dye Aggregate Assembly Enables Ratiometric Detection and Discrimination of Lysine and Arginine in Aqueous Solution

机译:超分子染料聚集组件使得在水溶液中的赖氨酸和精氨酸的比例检测和辨别

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Constructing sensor systems for rapid and selective detection of small biomolecules such as amino acids is a major area of focus in bioanalytical chemistry. Considering the biological relevance of arginine and lysine, significant efforts have been directed to develop fluorescent sensors for their detection. However, these developed sensors suffer from certain disadvantages such as poor aqueous solubility, technically demanding and time-consuming synthetic protocols, and more importantly, most of them operate through single wavelength measurements, making their performance prone to small variations in experimental conditions. Herein, we report a ratiometric sensor that operates through lysine- and arginine-induced dissociation of a supramolecular assembly consisting of emissive H-aggregates of a molecular rotor dye, thioflavin-T (ThT), on the surface of a polyanionic supramolecular host, sulfated β-cyclodextrin. This disassembly brings out the modulation of monomer–aggregate equilibrium in the system which acts as an ideal scheme for the ratiometric detection of lysine and arginine in the aqueous solution. Besides facile framework of our sensor system, it employs a commercially available inexpensive probe molecule, ThT, which provides an added advantage over other sensor systems that employ synthetically demanding probe molecules. Importantly, the distinctive feature of the ratiometric detection of arginine and lysine provides an inherent advantage of increased accuracy in quantitative analysis. Interestingly, we have also demonstrated that arginine displays a multiwavelength distinctive recognition pattern which distinguishes it from lysine, using a single supramolecular ensemble. Furthermore, our sensor system also shows response in heterogeneous, biologically complex media of serum samples, thus extending its possible use in real-life applications.
机译:构建用于快速和选择性检测的传感器系统,诸如氨基酸如氨基酸是生物分析化学的主要聚焦领域。考虑到精氨酸和赖氨酸的生物学相关性,已经有重大努力开发出荧光传感器进行检测。然而,这些开发的传感器遭受某些缺点,例如差的水溶性,技术要求迅速,耗时的合成方案,更重要的是,它们中的大多数通过单波长测量操作,使得它们在实验条件下的性能越大。在此,我们报告了一种足够的传感器,其通过赖氨酸染料,硫代噻吩-T(THT)的发射H-聚集体组成的超分子组件的超分子组件的解离,其在聚阴离子超分子宿主的表面上,硫酸化组成β-环糊精。该拆卸提出了系统中单体聚集平衡的调节,其用作水溶液中赖氨酸和精氨酸的比例检测的理想方案。除了我们传感器系统的框架外,它采用市售的廉价探针分子,THT,其在使用合成要求探针分子的其他传感器系统上提供了额外的优势。重要的是,对精氨酸和赖氨酸的比例检测的独特特征提供了在定量分析中提高精度的固有优点。有趣的是,我们还证明了精氨酸显示了一种多波长独特识别模式,其使用单个超分子整体将其与赖氨酸区分开。此外,我们的传感器系统还显示出在血清样品的异质,生物学复杂的培养基中的反应,从而在现实寿命应用中延伸可能使用。

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