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A synergistic strategy to develop photostable and bright dyes with long Stokes shift for nanoscopy

Chemistry

A synergistic strategy to develop photostable and bright dyes with long Stokes shift for nanoscopy

G. Jiang, T. Ren, et al.

This groundbreaking research led by Gangwei Jiang and colleagues reveals an innovative strategy that enhances the photostability, brightness, and Stokes shift of fluorophores. The introduction of a quinoxaline motif creates new dyes like YL578, which shines brighter and lasts longer in STED microscopy than any existing photostable fluorophore. Discover this new class of fluorescent probes for advanced bioimaging and biosensing.... show more
Abstract
The quality and application of super-resolution fluorescence imaging greatly lie in the dyes’ properties, including photostability, brightness, and Stokes shift. Here we report a synergistic strategy to simultaneously improve such properties of regular fluorophores. Introduction of quinoxaline motif with fine-tuned electron density to conventional rhodamines generates new dyes with vibration structure and inhibited twisted-intramolecular-charge-transfer (TICT) formation synchronously, thus increasing the brightness and photostability while enlarging Stokes shift. The new fluorophore YL578 exhibits around twofold greater brightness and Stokes shift than its parental fluorophore, Rhodamine B. Importantly, in Stimulated Emission Depletion (STED) microscopy, YL578 derived probe possesses a superior photostability and thus renders threefold more frames than carbopyronine based probes (CPY-Halo and 580CP-Halo), known as photostable fluorophores for STED imaging. Furthermore, the strategy is well generalized to offer a new class of bright and photostable fluorescent probes with long Stokes shift (up to 136 nm) for bioimaging and biosensing.
Publisher
Nature Communications
Published On
Oct 26, 2022
Authors
Gangwei Jiang, Tian-Bing Ren, Elisa D’Este, Mengyi Xiong, Bin Xiong, Kai Johnsson, Xiao-Bing Zhang, Lu Wang, Lin Yuan
Tags
fluorophores
photostability
brightness
Stokes shift
bioimaging
biosensing
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