| Literature DB >> 23385414 |
Francesca Frascella1, Serena Ricciardi, Paola Rivolo, Valeria Moi, Fabrizio Giorgis, Emiliano Descrovi, Francesco Michelotti, Peter Munzert, Norbert Danz, Lucia Napione, Maria Alvaro, Federico Bussolino.
Abstract
A one-dimensional photonic crystal (1DPC) based on a planar stack of dielectric layers is used as an optical transducer for biosensing, upon the coupling of TE-polarized Bloch Surface Waves (BSW). The structure is tailored with a polymeric layer providing a chemical functionality facilitating the covalent binding of orienting proteins needed for a subsequent grafting of antibodies in an immunoassay detection scheme. The polymeric layer is impregnated with Cy3 dye, in such a way that the photonic structure can exhibit an emissive behavior. The BSW-coupled fluorescence shift is used as a means for detecting refractive index variations occurring at the 1DPC surface, according to a label-free concept. The proposed working principle is successfully demonstrated in real-time tracking of protein G covalent binding on the 1DPC surface within a fluidic cell.Entities:
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Year: 2013 PMID: 23385414 PMCID: PMC3649429 DOI: 10.3390/s130202011
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576
Figure 1.(a) Sketch of the photonic structure and the experimental configuration for BSW-controlled fluorescence. (b) Calculated reflectivity map R (θ, λ) of the 1DPC in water environment.
Contact angle characterization showing the OCAH and OCACH values on different substrates coated with PPAA films and corresponding calculated surface energies (SE) (polar and dispersive contributions).
| PE | 90 ± 3 | 49 ± 3 | 35 | 33 | 2 |
| PPAA on PE | 62 ± 1 | 32 ± 1 | 48 | 36 | 12 |
| Glass | 42 ± 5 | 41 ± 2 | 57 | 26 | 31 |
| PPAA on glass | 59 ± 2 | 32 ± 3 | 50 | 36 | 14 |
| Si | 84 ± 1 | 31 ± 3 | 44 | 42 | 2 |
| PPAA on Si | 56 ± 3 | 31 ± 0 | 52 | 37 | 15 |
Figure 2.(a) ATR FT-IR spectra measured on bare PE and PPAA-PE substrate after ddH2O 30 min. rinsing. (b) ATR FT-IR spectra measured on bare glass and PPAA-glass substrate after ddH2O 30 min. rinsing.
Figure 3.Experimentally measured angularly-resolved BSW-controlled fluorescence spectrum. Typical spectral widths at a given collection angle are below 3 nm.
Figure 4.Spectral shift of BSW-coupled fluorescence upon injection of glucose solutions at different concentrations for the estimation of the sensitivity Δλfluo/Δn (Δn = 5e−5; 1e−4; 5e−4). Inset: 1DPC sensitivity as experimentally estimated (blue solid line) and predicted from calculated design (red dashed line).
Figure 5.(a) Drawing of the flow cell used for protein incubation (volume 18.6 μL, Area = 0.744 cm2, height = 250 μm). (b) Chemiluminescence picture showing protein G binding on PPAA coated corning glass (yellow contour). The area exposed to the flow solution containing HRP-conjugated protein G (15 μg) is indicated by the yellow dashed contour.
Figure 6.Real-time sensorgram showing the covalent binding of protein G onto the functional polymeric film during incubation in PBS buffer.