Zhang Di, Wang Zhimei, Yang Jing, Yi Lan, Liao Lifu, Xiao Xilin
School of Chemistry and Chemical Engineering, Hunan Province Key Laboratory for the Design and Application of Actinide Complexes, School of Pharmaceutical Science, University of South China, Hengyang City, Hunan Province, 421001, PR China.
Hengyang Market Supervision & Inspection and Testing Center, Hengyang City, 421001, Hunan Province, PR China.
Biosens Bioelectron. 2021 Jun 15;182:113174. doi: 10.1016/j.bios.2021.113174. Epub 2021 Mar 18.
A macrocyclic Schiff base fluorescent probe [1,2-phenylenediamine-2,6-pyridinedialdehyde macrocyclic Schiff base] (BP-MSB) based on 2,6-pyridinedialdehyde was synthesized for use in the detection of Cu in environmental water samples and live cells imaging by the method of specific recognition. The free fluorescent probe BP-MSB shows strong fluorescence in DMSO/HO. The probe shows high sensitivity and selectivity for Cu through "turn-off" fluorescence response in DMSO/HO buffer solution (pH = 6.5), with a detection limit of 0.83 nM, which is far below the maximum allowable drinking water content of 20.0 μM specified by the US Environmental Protection Agency. The BP-MSB fluorescence quenching method was used for the determination of Cu in Xiang Jiang water samples and tap-water. Furthermore, addition of the same number of moles of ethylene diamine tetraacetic acid (EDTA) can realize the reversible recognition of Cu by the probe BP-MSB. Most importantly, the fluorescence imaging of live cells after incubation of BP-MSB with GM12878 cells showed good imaging performance, confirming the sensitivity of the fluorescent probe BP-MSB in vivo. The probe was also used to form an analog logic gate. This probe has the advantages of good stability, simple operation and high selectivity, which provides a broad prospect for environmental monitoring, intracellular detection and practical application of POCT.
合成了一种基于2,6-吡啶二甲醛的大环席夫碱荧光探针1,2-苯二胺-2,6-吡啶二甲醛大环席夫碱,用于环境水样中铜的检测及通过特异性识别方法进行活细胞成像。游离荧光探针BP-MSB在二甲基亚砜/水中显示出强荧光。该探针在二甲基亚砜/水缓冲溶液(pH = 6.5)中通过“关断”荧光响应,对铜表现出高灵敏度和选择性,检测限为0.83 nM,远低于美国环境保护局规定的饮用水最大允许含量20.0 μM。采用BP-MSB荧光猝灭法测定湘江水样和自来水中的铜。此外,加入相同摩尔数的乙二胺四乙酸(EDTA)可实现探针BP-MSB对铜的可逆识别。最重要的是,BP-MSB与GM12878细胞孵育后活细胞的荧光成像显示出良好的成像性能,证实了荧光探针BP-MSB在体内的灵敏度。该探针还用于构建模拟逻辑门。该探针具有稳定性好、操作简单、选择性高的优点,为环境监测、细胞内检测及即时检验的实际应用提供了广阔前景。