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  • Ultra-sensitive immunoassay biosensors using hybrid plasmonic-biosilica nanostructured materials.

Ultra-sensitive immunoassay biosensors using hybrid plasmonic-biosilica nanostructured materials.

Journal of biophotonics (2014-09-27)
Jing Yang, Le Zhen, Fanghui Ren, Jeremy Campbell, Gregory L Rorrer, Alan X Wang
ZUSAMMENFASSUNG

We experimentally demonstrate an ultra-sensitive immunoassay biosensor using diatom biosilica with self-assembled plasmonic nanoparticles. As the nature-created photonic crystal structures, diatoms have been adopted to enhance surface plasmon resonances of metal nanoparticles on the surfaces of diatom frustules and to increase the sensitivity of surface-enhanced Raman scattering (SERS). In this study, a sandwich SERS immunoassay is developed based on the hybrid plasmonic-biosilica nanostructured materials that are functionalized with goat anti-mouse IgG. Our experimental results show that diatom frustules improve the detection limit of mouse IgG to 10 pg/mL, which is ˜100× better than conventional colloidal SERS sensors on flat glass. Ultra-sensitive immunoassay biosensor using diatom biosilica with self-assembled plasmonic nanoparticles.

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(3-Aminopropyl)triethoxysilan, 99%
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(3-Aminopropyl)triethoxysilan, ≥98.0%
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(3-Aminopropyl)triethoxysilan, ≥98%
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2-Nitro-benzoesäure, 95%, Contains 3- and 4-isomers
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Zitrat-konzentrierte Lösung -Lösung, BioReagent, suitable for coagulation assays, 4 % (w/v)
Sigma-Aldrich
(3-Aminopropyl)triethoxysilan, packaged for use in deposition systems, ≥98%
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Zitrat-konzentrierte Lösung -Lösung, BioUltra, for molecular biology, 1 M in H2O