Felipe S. M. Canisares, A.M.G. Mutti, J R dos Santos, Alessandro B. S. Garcia, Marian R. Davolos, Ana M. Pires, Sergio A. M. Lima
High Resolution Image Download MS PowerPoint Slide Hypoxia, characterized by low tissue oxygen concentration, is a common feature of diseases such as cardiac ischemia, inflammation, brain disorders, and solid tumors. Consequently, oxygen sensing has gained attention in diagnostics. In this study, we synthesized luminescent silica (SiO 2 ) particles functionalized with a bimetallic Ir III –Eu III complex for ratiometric oxygen sensing in biological media. Spherical SiO 2 particles (288 nm) were prepared via the sol–gel method to support and transport the water-insoluble luminescent complex. Then, the Ir III –Eu III complex was grafted stepwise, yielding the final hybrid SiO 2 –Eu III Ir III that exhibits a broad excitation band from 250 to 550 nm, yellow emission (by combining the green emission of Ir III complex and red emission from Eu III ion), and a negative surface potential in water, allowing stable suspension. Oxygen sensing experiments revealed a nonlinear sensing response with 70.5% sensitivity to oxygen concentration. Toxicity assays using Huh-7.5 cells showed no cytotoxicity in concentrations between 1.56 and 400 μg mL –1 . Confocal microscopy confirmed particles internalization, keeping their luminescent properties in the green and red regions, both emissions were detected separately after exciting at 488 nm. These results demonstrate the potential of SiO 2 –Eu III Ir III particles as a ratiometric luminescent probe for oxygen detection and cell labeling in biological applications.