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Aggregation-caused dual-signal response of gold nanoclusters for ratiometric optical detection of cysteine. | LitMetric

AI Article Synopsis

  • Researchers designed a new ratiometric sensor for monitoring cysteine (Cys) that aims to improve disease diagnosis and biomedical studies by simplifying the detection process.
  • The sensor uses red fluorescent gold nanoclusters (Au NCs) that quench fluorescence in the presence of iron (Fe) due to aggregation, but when Cys is introduced, it competes for Fe, restoring fluorescence and allowing for measurement.
  • This method reliably detects Cys in a concentration range of 5-30 µM with a detection limit of 1.5 µM and shows good selectivity, making it suitable for use in biological samples.

Article Abstract

Designing ratiometric sensors for cysteine (Cys) monitoring with high accuracy is of great significance for disease diagnosis and biomedical studies. The current ratiometric methods mainly rely on multiplex probes, which not only complicates the operation but also increases the cost, making it difficult for quantitative Cys detection in resource-limited areas. Herein, one-pot prepared gold nanoclusters (Au NCs) that glow red fluorescent were synthesized by employing glutathione as the stabilizer and reducing agent. When Fe is present with Au NCs, the fluorescence is quenched and the scattering is strong because of the aggregation of Au NCs. With introduction of Cys, Cys can efficiently compete with glutathione-modified Au NCs for Fe, which leads to increase of fluorescence and decrease of scattering. The ratiometric determination of Cys can be thereby realized by collecting the fluorescence and SRS spectrum simultaneously. The linear range for Cys was 5-30 µM with a detection limit of 1.5 µM. In addition, the sensing system exhibits good selectivity for Cys and shows potential application in biological samples.

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Source
http://dx.doi.org/10.1007/s44211-023-00385-7DOI Listing

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