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◆ Chemical communications (Cambridge, England)2026-09-10

In vivo targeted fluorescence imaging and magnetic resonance imaging of E. coli bacterial infection using polymyxin B-conjugated and polyacrylic acid-grafted GdEuO3 nanoparticles.

Ying Liu, Tirusew Tegafaw, Dejun Zhao, Huan Yue, Endale Mulugeta, Xiaoran Chen, Ziyi Lin, Ahrum Baek, Hansol Lee, Nayeon Kim, Bitdaeun Jang, Jihyun Kim, Yongmin Chang, Gang Ho Lee

原始摘要(英文原文)· Original abstract
Lanthanide oxide nanoparticles are ideal systems for highly sensitive diagnosis of infectious diseases because of their excellent optical, magnetic, and physicochemical properties. In this study, polymyxin B (PMB), serving as an E. coli-targeting ligand, was conjugated with polyacrylic acid (PAA)-grafted GdEuO3 nanoparticles, used as Eu-based fluorescence imaging (FI) and Gd-based magnetic resonance imaging (MRI) agents. The PMB-PAA-GdEuO3 nanoparticles were further conjugated with the organic photosensitizer 2,6-pyridinedicarboxylic acid (PDA) to enhance their Eu photoluminescence in the visible region (i.e., red color). The performance of (PMB-PAA)/PDA-GdEuO3 nanoparticles as E. coli-targeting and detection agents was demonstrated in vivo on an E. coli-infected mouse model using FI and MRI.
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In vivo targeted fluorescence imaging and magnetic resonance imaging of E. coli bacterial infection using polymyxin B-conjugated and polyacrylic acid-grafted GdEuO3 nanoparticles. — 科研速览 Science Skim