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具有可调谐光物理性质的 AIPE-活性 Ir(III)配合物及其在靶向线粒体的双重模式光动力疗法中的应用。

AIPE-Active Ir(III) complexes with tuneable photophysical properties and application in mitochondria-targeted dual-mode photodynamic therapy.

机构信息

School of Chemistry and Molecular Engineering, Nanjing Tech University, Nanjing 211816, China.

School of Chemistry and Molecular Engineering, Nanjing Tech University, Nanjing 211816, China.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2022 Mar 5;268:120690. doi: 10.1016/j.saa.2021.120690. Epub 2021 Dec 2.

Abstract

Aggregation-induced phosphorescence emission (AIPE) materials based on transition metal Ir(III) complexes have significant advantages in bioimaging and photodynamic therapy (PDT) due to the long lifetime, the reduced photobleaching and the good reactive oxygen species (ROS) generation. Herein, four cationic Ir(III) complexes (Ir1-Ir4) have been synthesized and studied. Tunable phosphorescence from green to red with the excellent properties of AIPE and long lifetimes can be achieved by varying the substituents. Moreover, these phosphorescence Ir(III) complexes exhibited dual-mode PDT potential (type I and type II). Complex Ir4 showed great prospect in bioimaging and PDT with the large Stokes shift (259 nm), the long lifetime (9.85 μs) and the high ROS yield (0.73). Confocal microscopy demonstrated that Ir4 accumulated in the mitochondria selectively and possessed remarkable photostability (reduced photobleaching up to 600 s). The results indicate that Ir4 may be used in dual-mode PDT guided by mitochondria-targeted imaging. This work provides an in-depth understanding of the relationship between structure and photophysical properties and facilitates the study in PDT applications.

摘要

基于过渡金属铱(III)配合物的聚集诱导磷光发射(AIPE)材料由于其长寿命、低光漂白和良好的活性氧物种(ROS)生成,在生物成像和光动力治疗(PDT)中有显著的优势。本文合成并研究了四种阳离子铱(III)配合物(Ir1-Ir4)。通过改变取代基,可以实现从绿光到红光的可调磷光,具有优异的 AIPE 和长寿命性能。此外,这些磷光铱(III)配合物表现出双模式 PDT 潜能(Ⅰ型和Ⅱ型)。配合物 Ir4 具有较大的斯托克斯位移(259nm)、长寿命(9.85μs)和高 ROS 产率(0.73),在生物成像和 PDT 中具有广阔的应用前景。共聚焦显微镜表明,Ir4 选择性地积聚在线粒体中,具有显著的光稳定性(光漂白减少至 600s)。结果表明,Ir4 可能用于基于线粒体靶向成像的双模式 PDT。这项工作深入了解了结构与光物理性质之间的关系,有助于 PDT 应用的研究。

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