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一种溶剂介导的激发态分子间质子转移荧光探针用于铁离子传感和细胞成像。

A Solvent-Mediated Excited-State Intermolecular Proton Transfer Fluorescent Probe for Fe Sensing and Cell Imaging.

机构信息

College of Chemistry and Chemical Engineering, Changsha University of Science and Technology, Changsha 410114, China.

Crop Research Institute, Hunan Academy of Agricultural Sciences, Changsha 410125, China.

出版信息

Molecules. 2022 Jan 14;27(2):516. doi: 10.3390/molecules27020516.

Abstract

Constructing excited-state intermolecular proton transfer (ESIPT-e) fluorophores represents significant challenges due to the harsh requirement of bearing a proton donor-acceptor (D-A) system and their matching proton donating-accepting ability in the same molecule. Herein, we synthesized a new-type ESIPT-e fluorophor (2-APC) using the "four-component one-pot" reaction. By the installing of a cyano-group on pyridine scaffold, the proton donating ability of -NH was greatly enhanced, enabling 2-APC to undergo ESIPT-e process. Surprisingly, 2-APC exhibited dual-emissions in protic solvents ethanol and normal fluorescence in aprotic solvents, which is vastly different from that of conventional ESIPT-a dyes. The ESIPT emission can be obviously suppressed by Fe due to the coordination reaction of Fe with the A-D system in 2-APC. From this basis, a highly sensitive and selective method was established using 2-APC as a fluorescent probe, which offers the sensitive detection of Fe ranging from 0 to 13 μM with the detection limit of 7.5 nM. The recovery study of spiked Fe measured by the probe showed satisfactory results (97.2103.4%) with the reasonable RSD ranging from 3.1 to 3.8%. Moreover, 2-APC can also exhibit aggregation-induced effect in poor solvent or solid-state, eliciting strong red fluorescence. 2-APC was also applied to cell-imaging, exhibiting good cell-permeability, biocompatibility and color rendering. This multi-mode emission of 2-APC is significant departure from that of conventional extended p-conjugated systems and ESIPT dyes based on a flat and rigid molecular design. The "one-pot synthesis" strategy for the construction of ESIPT molecules pioneered a new route to achieve tricolor-emissive fluorophores.

摘要

构建激发态分子内质子转移(ESIPT-e)荧光团具有挑战性,因为需要在同一分子中具有质子给体-受体(D-A)系统及其匹配的质子供体-受体能力。在此,我们使用“四组分一锅法”反应合成了一种新型 ESIPT-e 荧光团(2-APC)。通过在吡啶支架上安装氰基,-NH 的供质子能力大大增强,使 2-APC 能够进行 ESIPT-e 过程。令人惊讶的是,2-APC 在质子溶剂乙醇中表现出双发射,而在非质子溶剂中表现出正常荧光,这与传统的 ESIPT-a 染料有很大不同。由于 2-APC 中 Fe 与 A-D 系统的配位反应,ESIPT 发射可以被 Fe 明显抑制。在此基础上,建立了一种使用 2-APC 作为荧光探针的高灵敏和选择性方法,可用于检测 Fe 从 0 到 13 μM 的范围,检测限为 7.5 nM。探针对加标 Fe 的回收率研究显示出令人满意的结果(97.2103.4%),其合理的 RSD 范围为 3.1 至 3.8%。此外,2-APC 在不良溶剂或固态中也可以表现出聚集诱导效应,产生强烈的红色荧光。2-APC 还可用于细胞成像,表现出良好的细胞通透性、生物相容性和显色性。2-APC 的这种多模式发射与传统的扩展 p-共轭体系和基于平面刚性分子设计的 ESIPT 染料有显著区别。用于构建 ESIPT 分子的“一锅合成”策略为实现三基色发射荧光团开辟了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3dc0/8778147/776470a09deb/molecules-27-00516-sch001.jpg

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