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基于苯并噻吩转子的 ON-OFF 荧光菁染料可选择性地照亮线粒体中的 G-四链体。

ON-OFF Fluorescent Cyanine Dye Based on a Benzothiophenyl Rotor Enables Selective Illumination of G-Quadruplexes in Mitochondria.

机构信息

School of Chemistry and Chemical Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China.

CAS Key Laboratory of Separation Science for Analytical Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China.

出版信息

Anal Chem. 2023 Jun 20;95(24):9288-9296. doi: 10.1021/acs.analchem.3c01153. Epub 2023 Jun 8.

Abstract

Conventional cyanine dyes exist as "always-on" fluorescent probes leading to inevitable background signals which often limit their performance and scope of applications. To develop specific fluorescent probes with high sensitivity and robust OFF/ON switching for targeting G4s, we introduced aromatic heterocycles through conjugation with polymethine chains to construct a rotor-π system. Here, a universal strategy is presented to synthesize pentamethine cyanines with different aromatic heterocycle substituents on the -polymethine chain. In these probes, is self-quenched in aqueous solution due to H-aggregation. The structure indicates that with a flexible -benzothiophenyl rotor conjugated to the cyanine backbone matches adaptively with G-tetrad planes, enhancing π-π stacking and resulting in triggered fluorescence. This allows recognition of G-quadruplexes due to the synergy of disaggregation-induced emission (DIE) and inhibited twisted intramolecular charge-transfer effects. This combination leads to a robust lighting-up fluorescence response for c-myc G4 with superior fluorescence enhancement (98-fold), allowing for a low detection limit of 1.51 nM, which is much more sensitive than the previously reported DIE-based G4 probes (22-83.5 nM). In addition, the superior imaging properties and rapid internalization time (5 min) in mitochondria allow to also have a high potential for mitochondrially targeting anti-cancer therapy.

摘要

传统的菁染料作为“常开”荧光探针存在,导致不可避免的背景信号,这往往限制了它们的性能和应用范围。为了开发针对 G4s 的具有高灵敏度和稳健的 OFF/ON 切换的特定荧光探针,我们通过与聚甲川链共轭引入芳杂环来构建转子-π 体系。在这里,提出了一种通用的策略来合成具有不同芳杂环取代基的五甲川菁染料。在这些探针中,由于 H-聚集,在水溶液中自猝灭。结构表明,带有柔性 -苯并噻吩转子的与菁染料主链共轭的 自适应地与 G-四联体平面匹配,增强了π-π 堆积,导致触发荧光。这允许由于解聚集诱导发射 (DIE) 和抑制扭曲的分子内电荷转移效应的协同作用而识别 G-四联体。这种组合导致 c-myc G4 具有出色的荧光增强(98 倍)的稳健照明荧光响应,允许检测限低至 1.51 nM,比之前报道的基于 DIE 的 G4 探针(22-83.5 nM)灵敏得多。此外,优异的线粒体成像特性和快速内化时间(5 分钟)使 也有可能用于线粒体靶向抗癌治疗。

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