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Updated: Jul 11, 2026

Conventional BODIPY Conjugates for Live-Cell Super-Resolution Microscopy and Single-Molecule Tracking
Published on: June 8, 2020
Engineered DR/NIR dual-emission carbonized polymer dots for simultaneous tracking of lipid droplets and lysosomes
Shan Miao1, Junyong Sun1, Ying Li1
1Laboratory of Functionalized Molecular Solids, Ministry of Education, Anhui Key Laboratory of Chemo/Biosensing, Laboratory of Optical Probes and Bioelectrocatalysis (LOPAB), Anhui Province Key Laboratory of Biomedical Materials and Chemical Measurement, College of Chemistry and Materials Science, Anhui Normal University, Wuhu 241002, PR China.
Abstract:
Developing near-infrared fluorescent probes for simultaneous tracking of lipid droplets (LDs) and lysosomes is highly desirable for studying cell metabolism. In this work, deep-red/near-infrared dual-emission carbonized polymer dots (DN-CPDs) were prepared for ratiometric monitoring of the intracellular polarity. Detailed structural analysis revealed that the deep-red emission and near-infrared peak of DN-CPDs originate from the molecular state and surface state, respectively. The surface-state emission was derived from the intraparticle charge-transfer (ICT) effect of the donor-bridge-acceptor (D-π-A) structure of DN-CPDs. The obtained DN-CPDs exhibited excellent dual-labeling ability, large Stokes shifts, ratiometric polarity sensitivity, high selectivity, and satisfactory photostability. Moreover, with the polarity distinction between LDs and lysosomes, DN-CPDs nanoprobes were successfully used to observe the dynamic changes of the two aforementioned organelles during starvation-induced lipophagy and drug-induced lipophagy inhibition processes. This work not only provides a useful tool for LD-lysosome related studies but is also valuable for the preparation of CPDs with long wavelength emission.

