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4-甲氧基取代增强萘酰亚胺 PET 荧光探针的检测灵敏度。

Detection Sensitivity Enhancement of Naphthalimide PET Fluorescent Probes by 4-Methoxy-Substitution.

机构信息

College of Marine Technology and Environment, Dalian Ocean University, Dalian 116023, China.

Key Laboratory of Environment Controlled Aquaculture, Ministry of Education, Dalian 116023, China.

出版信息

Molecules. 2020 Sep 29;25(19):4465. doi: 10.3390/molecules25194465.

Abstract

Naphthalimide photoinduced electron transfer (PET) fluorescent probes are widely used in fluorescence imaging. Thereinto, detection sensitivity is the vital parameter of PET probes. However, the modulation of detection sensitivity is yet to be reported for naphthalimide PET probes. Herein, the detection sensitivity enhancement of naphthalimide PET fluorescent probes through 4-methoxy-substitution is proposed in this work. Taking Zn detection an example, 4-methoxy-naphthalimide PET probe 2-(2-(bis(pyridin-2-ylmethyl)amino)ethyl)-6-methoxy-1-benzo[]isoquinoline-1,3(2)-dione (BPNM) and control PET probe 2-(2-(bis(pyridin-2-ylmethyl)amino)ethyl)-1-benzo[de]isoquinoline-1,3(2)-dione (BPN) are separately synthesized. The addition of 4-methoxy group with ability of strong electron donating to naphthalimide facilitates the construction of electronic push-pull system in the fluorophore resulting in the bathochromic shift of absorption and fluorescence emission spectra of BPNM and is further conducive to the enhancement of molar extinction coefficient ε and fluorescence quantum yield of BPNM. Compared with BPN, BPNM shows lower Zn detection limit in titration assays. Meanwhile, the fluorescence signal change (off-on) before and after Zn addition of intracellular BPNM is more obvious and easier to control in confocal laser scanning imaging. Therefore, 4-methoxy-substitution improves the detection sensitivity of naphthalimide PET probe, which is favorable for the precise sensing of analyte, and further lays a good foundation for the synthesis of PET probe with high sensitivity.

摘要

萘酰亚胺光诱导电子转移(PET)荧光探针在荧光成像中得到了广泛的应用。其中,检测灵敏度是 PET 探针的重要参数。然而,对于萘酰亚胺 PET 探针的检测灵敏度的调节尚未有报道。本文提出了通过 4-甲氧基取代来增强萘酰亚胺 PET 荧光探针的检测灵敏度。以 Zn 检测为例,分别合成了 4-甲氧基萘酰亚胺 PET 探针 2-(2-(双(吡啶-2-基甲基)氨基)乙基)-6-甲氧基-1-苯并[1,2,3]异喹啉-1,3(2)-二酮(BPNM)和对照 PET 探针 2-(2-(双(吡啶-2-基甲基)氨基)乙基)-1-苯并[de]异喹啉-1,3(2)-二酮(BPN)。萘酰亚胺上的 4-甲氧基取代基具有较强的给电子能力,有利于在荧光团中构建电子推拉体系,导致 BPNM 的吸收和荧光发射光谱发生红移,进一步有利于摩尔消光系数 ε和荧光量子产率 的增强。与 BPN 相比,BPNM 在滴定实验中具有更低的 Zn 检测限。同时,在共聚焦激光扫描成像中,BPNM 中加入 Zn 前后的荧光信号变化(关-开)更加明显,更容易控制。因此,4-甲氧基取代提高了萘酰亚胺 PET 探针的检测灵敏度,有利于分析物的精确传感,进一步为高灵敏度 PET 探针的合成奠定了良好的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e32/7582873/7938b5712251/molecules-25-04465-sch001.jpg

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