荧光
费斯特共振能量转移
材料科学
纳米技术
离子键合
吡啶
荧光蛋白
瓶颈
化学
纳米传感器
黄色荧光蛋白
超分子化学
荧光标记
信号(编程语言)
生物系统
边界(拓扑)
作者
Caiqiang Liao,Xinfeng Du,Zhang Lin,Yuting Luo,Yangyang Yu,Zhaohui Wang,Jun Peng,Zhongyong Xu,Xianwen Liang,Zhilong Wu,Yalong Wang,Tianyi Qin,Bin Liu,Ming‐Qiang Zhu
摘要
Establishing a strategy for fine-tuning of fluorescent sensing modes (e.g., off ↔ on, ratiometric, fluorocolorimetric) in human serum albumin (HSA)-dye involved supramolecular systems that can tackle the bottleneck for the development of functional fluorescent sensors and sensor arrays in specific practical applications. Here, we propose a simple strategy by extending the N-alkyl on the pyridinium of triphenylamine diarylethene (TPA-Ps), a classic ionic molecular rotor skeleton for protein binding and fluorescent sensing, to fulfill the modulation of sensing modes of TPA-P@HSA. The structural effects on two factors corresponding to sensing modes, the initial fluorescence (TPA-Ps dispersions) and the final fluorescence (TPA-P@HSA), have been comprehensively investigated. The utility of the strategy was examined in the applications of fluorescent analysis of urinary albumin, construction of dye@HSA indicator-displacement assays for the third analytes, fluorescent imaging, and building sensor arrays for classification. Finally, we demonstrated that this strategy can be generalized to other TPA-P skeleton-based dyes, resulting in substantially tunable sensing modes in response to HSA.
科研通智能强力驱动
Strongly Powered by AbleSci AI