Published January 1, 2015 | Version v1
Journal article Open

Au@pNIPAM SERRS Tags for Multiplex Immunophenotyping Cellular Receptors and Imaging Tumor Cells

Description

Detection technologies employing optically encoded particles have gained much interest toward clinical diagnostics and drug discovery, but the portfolio of available systems is still limited. The fabrication and characterization of highly stable surface-enhanced resonance Raman scattering (SERRS)-encoded colloids for the identification and imaging of proteins expressed in cells are reported. These plasmonic nanostructures are made of gold octahedra coated with poly(N-isopropylacrylamide) microgels and can be readily encoded with Raman active dyes while retaining high colloidal stability in biofluids. A layer-by-layer polyelectrolyte coating is used to seal the outer surface of the encoded particles and to provide a reactive surface for covalent conjugation with antibodies. The targeted multiplexing capabilities of the SERRS tags are demonstrated by the simultaneous detection and imaging of three tumor-associated surface biomarkers: epidermal growth factor receptor (EGFR), epithelial cell adhesion molecule (EpCAM), and homing cell adhesion molecule (CD44) by SERRS spectroscopy. The plasmonic microgels are able to discriminate tumor A431 (EGFR+/EpCAM+/CD44+) and nontumor 3T3 2.2 (EGFR−/EpCAM−/CD44+) cells while cocultured in vitro.

Notes

This work was supported by the European Research Council (PLASMAQUO, 267867) and by the Spanish MINECO (MAT2013-45168-R and MAT2013-46101-R), by the Xunta de Galicia/FEDER (Grant GPC2013-006; INBIOMED-FEDER "Unha maneira de facer Europa")

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Additional details

Funding

European Commission
PLASMAQUO – Development of plasmonic quorum sensors for understanding bacterial-eukaryotic cell relations 267867