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Bioderived Three-Dimensional Hierarchical Nanostructures as Efficient Surface-Enhanced Raman Scattering Substrates for Cell Membrane Probing

Academic Article
Publication Date:
2018
abstract:
n this work, we propose the use of complex, bioderived nanostructures as efficient surface-enhanced Raman scattering (SERS) substrates for chemical analysis of cellular membranes. These structures were directly obtained from a suitable gold metalization of the Pseudonitzchia multistriata diatom silica shell (the so called frustule), whose grating-like geometry provides large light coupling with external radiation, whereas its extruded, subwavelength lateral edge provides an excellent interaction with cells without steric hindrance. We carried out numerical simulations and experimental characterizations of the supported plasmonic resonances and optical near-field amplification. We thoroughly evaluated the SERS substrate enhancement factor as a function of the metalization parameters and finally applied the nanostrucures for discriminating cell membrane Raman signals. In particular, we considered two cases where the membrane composition plays a fundamental role in the assessment of several pathologies, that is, red blood cells and B-leukemia REH cells.
Iris type:
01.01 Articolo in rivista
Keywords:
bio-derived nanomaterials; biophotonics; cell membrane; diatoms; plasmonics; sensing; SERS
List of contributors:
Manago', Stefano; Esposito, Emanuela; Casalino, Maurizio; Rogato, Alessandra; DE LUCA, ANNA CHIARA; DE TOMMASI, Edoardo; Zito, Gianluigi
Authors of the University:
CASALINO MAURIZIO
DE LUCA ANNA CHIARA
DE TOMMASI EDOARDO
ESPOSITO EMANUELA
ROGATO ALESSANDRA
ZITO GIANLUIGI
Handle:
https://iris.cnr.it/handle/20.500.14243/371715
Published in:
ACS APPLIED MATERIALS & INTERFACES (PRINT)
Journal
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https://publications.cnr.it/doc/388408
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