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Ruthenium complexes with hydrophobic ligands that are key factors for the optical imaging of physiological hypoxia

机译:具有疏水性配体的钌配合物是生理性缺氧光学成像的关键因素

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摘要

The phosphorescence emission of ruthenium complexes was applied to the optical imaging of physiological hypoxia. We prepared three complexes with hydrophobic substituents on the phenanthroline ligand and characterized their emission, which was quenched by molecular oxygen. Among the complexes synthesized in this study, a pyrene chromophore-linked ruthenium complex, Ru-Py, exhibited optimal properties for the imaging of hypoxia; the prolonged lifetime of the triplet excited state of the ruthenium chromophore, which was induced by efficient energy distribution and transfer from the pyrene unit, provided the highest sensitivity towards molecular oxygen. The introduction of hydrophobic pyrene increased the lipophilicity of the complex, leading to enhanced cellular uptake. Consequently, the bright phosphorescence of Ru-Py was seen in the cytoplasm of viable hypoxic cells, whereas the signal from aerobic cells was markedly weaker. Thus, we could clearly discriminate between hypoxic and aerobic cells by monitoring the phosphorescence emission. Furthermore, Ru-Py was applied to optical imaging in live mice. An intramuscular injection of Ru-Py successfully visualized ischemia-based hypoxia, which was constructed by leg banding.
机译:钌配合物的磷光发射被用于生理性缺氧的光学成像。我们制备了在菲咯啉配体上具有疏水取代基的三种配合物,并表征了它们的发射,并通过分子氧猝灭。在这项研究中合成的配合物中,发色团连接的钌配合物Ru-Py对缺氧成像表现出最佳的性能。 efficient发色团的三重激发态的延长寿命是由efficient单元的有效能量分布和转移引起的,它对分子氧的敏感性最高。疏水pyr的引入增加了复合物的亲脂性,导致细胞摄取增加。因此,在活泼的低氧细胞的细胞质中看到了Ru-Py的明亮的磷光,而有氧细胞的信号则明显减弱。因此,通过监测磷光发射,我们可以清楚地区分低氧和需氧细胞。此外,Ru-Py用于活小鼠的光学成像。肌注Ru-Py可以成功地观察到基于缺血的缺氧,这是通过绑腿带构造的。

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