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一种具有 AIE 活性的新型三苯胺双席夫碱荧光团,可用作肼的荧光关闭探针和活细胞中的细胞成像。

A novel triphenylamine-based bis-Schiff bases fluorophores with AIE-Activity as the hydrazine fluorescence turn-off probes and cell imaging in live cells.

机构信息

College of Pharmacy, Heze University, Heze, Shandong Province, China.

Chongqing Key Laboratory of Environmental Materials & Remediation Technologies, College of Chemistry and Environmental Engineering, Chongqing University of Arts and Sciences, Yongchuan, 402160, China.

出版信息

Talanta. 2020 Sep 1;217:121029. doi: 10.1016/j.talanta.2020.121029. Epub 2020 Apr 18.

Abstract

Developing a specific and sensitive method for endogenous hydrazine detection in living systems is valuable to understand its various pathological events. In this work, two novel fluorescent chemosensors (C1, C3) based on triphenylamine Schiff-base derivative and reference dyes (C2, C4) were prepared in relatively high yield (more than 72% yield). The aggregation induced emission (AIE) properties of sensors were investigated through UV-Visible, dynamic light scattering, X-ray diffraction, fluorescence spectrophotometric analyses as well as scanning electron microscope images (SEM). The results indicated that probes C1 and C3 exhibited strong AIE property in DMF/HO (1:1, v/v) mixture system with brilliant yellow fluorescence emission (560 nm) observed under 365 nm UV lamp. The experiments of sensing indicated that probes C1 and C3 possessed the sequentially detecting abilities for hydrazine with high sensitivity, specificity as well as an extremely low detection limit (55.1 nM), which was due to blocking of AIE process of probes C1 and C3 by special chemical reaction (-CHN- moiety transformed into -CH-NH- group) after hydrazine addition, resulting in the increase in water solubility and a weak emission in aqueous media. Furthermore, H NMR, SEM and fluorescence titration experiment was also conducted to confirm the sensing mechanism. For biological application, probes C1 and C3 presented a good bio-imaging performance and showed the similar fluorescence quenching after adding hydrazine. Therefore, the probes are suitable for the fluorescence imaging of exogenous hydrazine in HeLa cells.

摘要

开发一种在活体内检测内源性水合肼的特异性和灵敏性方法对于理解其各种病理事件具有重要意义。在这项工作中,我们基于三苯胺席夫碱衍生物合成了两种新型荧光化学传感器(C1、C3),并以较高的产率(超过 72%的产率)制备了参比染料(C2、C4)。通过紫外-可见光谱、动态光散射、X 射线衍射、荧光分光光度分析以及扫描电子显微镜图像(SEM)研究了传感器的聚集诱导发射(AIE)性质。结果表明,探针 C1 和 C3 在 DMF/HO(1:1,v/v)混合体系中表现出强烈的 AIE 性质,在 365nm 紫外灯下观察到亮黄色荧光发射(560nm)。传感实验表明,探针 C1 和 C3 对水合肼具有高灵敏度、特异性和极低的检测限(55.1nM)的顺序检测能力,这是由于水合肼加入后特殊的化学反应(-CHN-部分转化为-CH-NH-基团)阻断了探针 C1 和 C3 的 AIE 过程,导致在水介质中的水溶性增加和弱发射。此外,还进行了 1H NMR、SEM 和荧光滴定实验以确认传感机制。对于生物应用,探针 C1 和 C3 表现出良好的生物成像性能,并在加入水合肼后表现出相似的荧光猝灭。因此,这些探针适用于 HeLa 细胞中外源性水合肼的荧光成像。

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