2020•ChemBioChemOpen access

Cover Feature: Responsive Fluorophore Aggregation Provides Spectral Contrast for Fluorescence Lifetime Imaging (ChemBioChem 15/2020)

Kelton A. Schleyer, Benjamin D. Datko, Brandon Burnside, Chao Cui, Xiaowei Ma, John K. Grey, Lina Cui

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Abstract

Fluorophores are greatly influenced by their environment. In their full paper, L. Cui et al. show that triggering the aggregation of a self-condensing scaffold labeled with a fluorophore induces changes in the emission spectrum, polarization, and lifetime. The aggregates exhibited a shorter lifetime detectable in cells by fluorescence lifetime imaging microscopy, thus suggesting that triggered aggregation strategies can be used in the probes for various biological events through lifetime imaging.

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Fluorophores are greatly influenced by their environment. In their full paper, L. Cui et al. show that triggering the aggregation of a self-condensing scaffold labeled with a fluorophore induces changes in the emission spectrum, polarization, and lifetime. The aggregates exhibited a shorter lifetime detectable in cells by fluorescence lifetime imaging microscopy, thus suggesting that triggered aggregation strategies can be used in the probes for various biological events through lifetime imaging.

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Available abstract

Fluorophores are greatly influenced by their environment. In their full paper, L. Cui et al. show that triggering the aggregation of a self-condensing scaffold labeled with a fluorophore induces changes in the emission spectrum, polarization, and lifetime. The aggregates exhibited a shorter lifetime detectable in cells by fluorescence lifetime imaging microscopy, thus suggesting that triggered aggregation strategies can be used in the probes for various biological events through lifetime imaging.

Key concepts: Fluorophore, Fluorescence, Fluorescence-lifetime imaging microscopy, Biophysics, Microscopy, Chemistry, Aggregation-induced emission, Biological imaging

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