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Updated: May 22, 2025

Synthesis and Calibration of Phosphorescent Nanoprobes for Oxygen Imaging in Biological Systems
Published on: March 3, 2010
An efficient circularly polarized luminescence probe base on anthryl-modified Eu(III)-helicates for the detection and
Xiumei Zhang1, Xinglu Wang2, Wenru Huang2
1Key Laboratory of Functional Inorganic Material Chemistry, Ministry of Education, School of Chemistry and Materials Science Heilongjiang University, 74 Xuefu Road, Harbin 150080, China; School of Pharmacy, Jiamusi University, Jiamusi 154007, China.
Abstract:
Singlet oxygen (1O2) is the main active ingredient in photodynamic therapy (PDT). However, an excess 1O2 can cause unnecessary toxicity. Therefore, it is of great importance to develop reliable and sensitive methods or probes for detecting 1O2 in biological systems. In this study, a pair of anthryl-modified Eu(III) binaphthol-bis-β-diketones helicates, (NEt4)2[Eu2(LR/S)4] are designed, synthesized and characterized. Initially, the complexes display faint luminescence. Upon reacting with 1O2 to create endoperoxides of the anthracene framework, the long-lived luminescence of the Eu(III) complexes is activated. Notably, the high luminescence dissymmetry factor, glum of the 5D0 → 7F1 transition (595 nm) shows an obvious increase from -1.21 to -1.29 before and after oxidation. The complex exhibits a highly selective luminescent response to the 1O2 generated by 5-aminolevulinic acid (ALA) loaded 4 T1 cells during photodynamic processes. To the best of we knowledge, this is the first example of 1O2 detection based on circularly polarized luminescence (CPL) probe. The design of the lanthanide CPL probe provides a practical way for the sensitive detection of 1O2 in the future.
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