College of Chemistry and Materials, Fujian Normal University, Fuzhou, 350007, Fujian, China.
Fujian Key Laboratory of Polymer Materials, Fuzhou, 350007, Fujian, China.
Anal Bioanal Chem. 2021 Mar;413(7):1955-1966. doi: 10.1007/s00216-021-03165-2. Epub 2021 Jan 22.
The selective detection of salicylaldehyde skeleton is of great significance in phytochemistry and biological research but rarely reported. In this research, a simple and highly selective "turn-on" fluorescence sensor (CDB-Am) for salicylaldehyde skeleton was developed based on switch of photoinduced electron transfer (PET) and aggregation-induced emission (AIE). CDB-Am bearing amino-cyanodistyrene structure responded to salicylaldehyde in the range of 3.1 to 40 μM with a detection limit of 0.94 μM. The sensing process of formation of Schiff-base adduct CDB-SA was confirmed by H NMR, MS, and FT-IR spectra, revealing that a recovered AIE property accounted for the turn-on fluorescence response of CDB-Am and the intramolecular hydrogen bonding played a crucial role in the disruption of PET process. This sensing ability was successfully applied for both fluorescence qualitative test of salicylaldehyde skeleton on TLC analysis and quantitative detection of salicylaldehyde skeleton with good accuracy in the root bark of Periploca sepium, suggesting the extensive applications in phytochemistry and traditional Chinese herbal medicine. Furthermore, CDB-Am exhibited the first excellent fluorescence imaging ability in detecting salicylaldehyde skeleton in a living system. This work supplied a new strategy of preparing a novel "turn-on" fluorescence probe for detecting salicylaldehyde skeleton in complex environments and living bodies.
水杨醛骨架的选择性检测在植物化学和生物研究中具有重要意义,但很少有报道。在这项研究中,基于光诱导电子转移(PET)和聚集诱导发射(AIE)的开关,开发了一种简单且高选择性的水杨醛骨架“开启”荧光传感器(CDB-Am)。带有氨基-氰基二苯乙烯结构的 CDB-Am 在 3.1 至 40 μM 的范围内对水杨醛有响应,检测限为 0.94 μM。通过 1H NMR、MS 和 FT-IR 光谱证实了形成席夫碱加合物 CDB-SA 的传感过程,表明恢复的 AIE 性质解释了 CDB-Am 的开启荧光响应,分子内氢键在破坏 PET 过程中起着关键作用。这种传感能力成功地应用于 TLC 分析中水杨醛骨架的荧光定性测试以及对杠柳根皮中水杨醛骨架的定量检测,具有良好的准确性,表明其在植物化学和中药中的广泛应用。此外,CDB-Am 在检测活体系中的水杨醛骨架方面表现出了第一个优异的荧光成像能力。这项工作为在复杂环境和生物体内检测水杨醛骨架提供了一种新的策略,即制备新型“开启”荧光探针。