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基于吡啶鎓BODIPY的具有高光稳定性的长波长红外线粒体靶向荧光探针。

pyridinium BODIPY-based long wavelength infrared mitochondria-targeting fluorescent probe with high photostability.

作者信息

Jiao Shenghe, Dong Xiaochun, Zhao Weili

机构信息

School of Pharmacy, Fudan University, Shanghai 201203, PR China.

Key Laboratory for Special Functional Materials of Ministry of Education, National & Local Joint Engineering Research Center for High-efficiency Display and Lighting Technology, and School of Materials Science and Engineering, Henan University, Kaifeng 475004, PR China.

出版信息

Anal Methods. 2023 Jul 6;15(26):3149-3155. doi: 10.1039/d3ay00660c.

Abstract

Mito-tracker deep red (MTDR) as a commercially available mitochondria-targeting probe was easily bleached upon imaging. We designed and synthesized a family of -pyridinium BODIPY and introduced lipophilic methyl or benzyl as the head moiety to develop a mitochondria-targeting deep red probe. Moreover, we changed the substitution of the 3,5-phenyl moieties with the methoxy or methoxyethoxyethyl group to balance hydrophilicity. The designed BODIPY dyes possessed long absorption and good fluorescence emission. Among them, -pyridinium BODIPYs with benzyl head and glycol substitution on phenyl moiety (3h) with favorable Stokes shift were found to have the best mitochondrial targeting performance. 3h was easily uptaken by cells and was less toxic and more photostable than MTDR. An immobilizable probe (3i) was further developed, and nice mitochondria targeting properties under the damaging condition of mitochondria membrane potential were maintained. BODIPY 3h or 3i may become alternative long-wavelength mitochondria targeting probes apart from MTDR and be suitable for long-term mitochondrial tracking studies.

摘要

线粒体追踪深红(MTDR)作为一种市售的线粒体靶向探针,在成像时很容易被漂白。我们设计并合成了一系列吡啶鎓硼二吡咯,并引入亲脂性的甲基或苄基作为头部基团,以开发一种线粒体靶向深红色探针。此外,我们用甲氧基或甲氧基乙氧基乙基取代3,5-苯基部分,以平衡亲水性。所设计的硼二吡咯染料具有长吸收和良好的荧光发射。其中,具有苄基头部和苯基部分乙二醇取代(3h)且斯托克斯位移良好的吡啶鎓硼二吡咯表现出最佳的线粒体靶向性能。3h很容易被细胞摄取,与MTDR相比毒性更小且光稳定性更高。进一步开发了一种可固定化的探针(3i),并在破坏线粒体膜电位的条件下保持了良好的线粒体靶向特性。除MTDR外,硼二吡咯3h或3i可能成为替代的长波长线粒体靶向探针,适用于长期线粒体追踪研究。

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