The structural shift of a DNA template between a hairpin and a dimer tunes the emission color of DNA-templated AgNCs

The scaffolding DNA sequence and the size of silver nanoclusters (AgNCs), confined in a DNA template are the key parameters in determining the fluorescent properties of DNA-stabilized silver nanoclusters (DNA/AgNCs). In addition, we suggest here that the structural shift of a DNA hairpin-dimer is as...

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Veröffentlicht in:Nanoscale 2018-11, Vol.1 (44), p.2717-2722
Hauptverfasser: Shah, Pratik, Choi, Suk Won, Nagda, Riddhi, Geczy, Reka, Cho, Seok Keun, Bhang, Yong Joo, Kim, Tae-Hwan, Song, Tae Yang, Lee, Phil Hyu, Kang, Ju-Hee, Thulstrup, Peter Waaben, Bjerrum, Morten Jannik, Jung, Il Lae, Yang, Seong Wook
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Sprache:eng
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Zusammenfassung:The scaffolding DNA sequence and the size of silver nanoclusters (AgNCs), confined in a DNA template are the key parameters in determining the fluorescent properties of DNA-stabilized silver nanoclusters (DNA/AgNCs). In addition, we suggest here that the structural shift of a DNA hairpin-dimer is as important as the DNA sequence in determining the emission wavelength of DNA/AgNCs. Furthermore, we show that the structural shift post AgNC formation can be triggered by incubation time and pre-AgNC formation under salt conditions. As an important factor in predicting the emission properties of DNA/AgNCs, the modulation of DNA secondary structures with either sequence changes or ionic conditions can be applied for the dual-color detection system of a target molecule. Particularly, the dual-color detection method may increase the reliability of DNA/AgNC sensors for miRNAs. The structural shift of a DNA hairpin-dimer is as important as the DNA sequence in determining the fluorescent properties of DNA-stabilized silver nanoclusters (DNA/AgNCs).
ISSN:2040-3364
2040-3372
DOI:10.1039/c8nr06186f