Sun Lingli, Chen Yu, Kuang Shi, Li Guanying, Guan Ruilin, Liu Jiangping, Ji Liangnian, Chao Hui
MOE Key Laboratory of Bioinorganic and Synthetic Chemistry, School of Chemistry and Chemical Engineering, Sun Yat-Sen University, Guangzhou, 510275, P.R. China.
Chemistry. 2016 Jun 20;22(26):8955-65. doi: 10.1002/chem.201600310. Epub 2016 May 4.
In the present study, four mitochondria-specific and two-photon phosphorescence iridium(III) complexes, Ir1-Ir4, were developed for mitochondria imaging in hypoxic tumor cells. The iridium(III) complex has two anthraquinone groups that are hypoxia-sensitive moieties. The phosphorescence of the iridium(III) complex was quenched by the functions of the intramolecular quinone unit, and it was restored through two-electron bioreduction under hypoxia. When the probes were reduced by reductase to hydroquinone derivative products under hypoxia, a significant enhancement in phosphorescence intensity was observed under one- (λ=405 nm) and two-photon (λ=720 nm) excitation, with a two-photon absorption cross section of 76-153 GM at λ=720 nm. More importantly, these probes possessed excellent specificity for mitochondria, which allowed imaging and tracking of the mitochondrial morphological changes in a hypoxic environment over a long period of time. Moreover, the probes can visualize hypoxic mitochondria in 3D multicellular spheroids and living zebrafish through two-photon phosphorescence imaging.
在本研究中,开发了四种线粒体特异性双光子磷光铱(III)配合物Ir1-Ir4,用于缺氧肿瘤细胞中的线粒体成像。铱(III)配合物有两个蒽醌基团,它们是对缺氧敏感的部分。铱(III)配合物的磷光通过分子内醌单元的作用而猝灭,并在缺氧条件下通过双电子生物还原得以恢复。当探针在缺氧条件下被还原酶还原为对苯二酚衍生物产物时,在单光子(λ=405 nm)和双光子(λ=720 nm)激发下观察到磷光强度显著增强,在λ=720 nm处的双光子吸收截面为76-153 GM。更重要的是,这些探针对线粒体具有优异的特异性,能够长时间成像和追踪缺氧环境中线粒体的形态变化。此外,这些探针可以通过双光子磷光成像在三维多细胞球体和活体斑马鱼中可视化缺氧线粒体。