Abstract
We here describe a fluorescent signal amplification method termed "Click-based amplification"that can be well integrated with various click-labelling modes, including chemical labelling, genetic incorporation and covalent inhibitor probe mediated target labelling. Picolyl azide (pAz) was used as a functional group of a streptavidin-based amplifier to enhance the efficiency of click chemistry. Click-based amplification provided 3.0-12.7 fold amplification on fixed HeLa cells with different click-labelling modes. Click-based amplification has proven to be superior to tyramide signal amplification (TSA) in view of its low nonspecific amplification and high signal-to-noise ratio. Moreover, in terms of the challenging signal amplification of tissue specimens, Click-based amplification successfully achieved remarkable fluorescence enhancement on intestinal tissue slices of afatinib-N3 treated mice, which provided direct evidence of the presence of afatinib-N3 in the intestinal tissues and helped in revealing the off-target toxicity of afatinib. Collectively, these results illustrate that Click-based amplification could serve as a promising method for bioimaging studies. This journal is
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CITATION STYLE
Bai, J., Guo, F., Li, M., Li, Y., & Lei, X. (2021). Click-based amplification: Designed to facilitate various target labelling modes with ultralow background amplification. RSC Chemical Biology, 2(3), 906–916. https://doi.org/10.1039/d1cb00002k
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