PubMed چکیده/رکورد

A series of polarity- and viscosity-sensitive AIE fluorescent sprobes with large stokes shifts for cell and zebrafish imaging.

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چکیده اصلی

Lipid droplets (LDs) are dynamic organelles whose microenvironmental polarity and viscosity are closely linked to metabolic diseases. In this study, we developed three D-π-A structured AIE fluorescent probes-T-EDOT-C, T-EDOT-D, and T-EDOT-N-for dynamic imaging of LDs. With triphenylamine (TPA) as the electron donor and EDOT as the π-bridge, highly efficient intramolecular charge transfer (ICT) is achieved by modulating the electron acceptor. T-EDOT-C exhibits a Stokes shift of 184 nm in DMSO and displays a polarity-dependent red shift from 566 nm to 646 nm. Viscosity testing indicates that fluorescence intensity increases with rising viscosity, demonstrating excellent viscosity sensitivity. Colocalization experiments using commercial probes yielded a Pearson's correlation coefficient of 0.96, indicating excellent targeting ability. T-EDOT-D also performed well, with a Stokes shift of 159 nm and a red shift of 70 nm, and exhibited viscosity-enhanced fluorescence. In contrast, T-EDOT-N, despite a Stokes shift of 165 nm, showed poor responsiveness to polarity and viscosity. Both T-EDOT-C and T-EDOT-D enable real-time monitoring of viscosity changes in HepG2 cells and zebrafish under starvation or oleic acid stimulation. In summary, owing to its excellent photostability, sensitivity to viscosity and polarity, and biocompatibility, T-EDOT-C emerges as the most promising probe for studying the LD microenvironment and related diseases.

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کلیدواژه‌ها

LDsLarge stokes shiftPolarity-sensitiveViscosity-sensitive
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