研究目的
To characterize the limits of detection and resolution of diffraction-limited focal molography for sensitive and robust biomolecular interaction analysis, and to refine theoretical models for quantifying biological matter from diffracted intensity.
研究成果
Focal molography achieves high sensitivity and robustness in biomolecular interaction analysis, with detection limits comparable to SPR without temperature stabilization. The refined theoretical models accurately predict experimental results, and the technique shows promise for applications in complex biological samples.
研究不足
The study is limited by waveguide imperfections such as surface roughness, which contribute to background noise. The models assume ideal conditions and may not account for all real-world variabilities. Fabrication of massless affinity modulations is challenging and may not be feasible for all biological applications.
1:Experimental Design and Method Selection:
The study uses focal molography with a high-refractive-index slab waveguide illuminated by a TE mode. Theoretical models include coupled mode theory and Rayleigh scattering simulations.
2:Sample Selection and Data Sources:
Samples include streptavidin (SAv) and biotin molograms fabricated using reactive immersion lithography. Data are acquired from molographic foci and background measurements.
3:List of Experimental Equipment and Materials:
Equipment includes a He-Ne laser, grating coupler, Ta2O5 waveguide, microscopy objective, CMOS camera, and fluidics setup. Materials include biotin, PEG, SAv, and various buffers.
4:Experimental Procedures and Operational Workflow:
Light is coupled into the waveguide, and diffracted foci are measured. Real-time binding assays and endpoint detections are performed with controlled flow rates and image acquisition.
5:Data Analysis Methods:
Data are analyzed using GPU-based simulations, image processing algorithms for speckle statistics, and analytical models for intensity and mass quantification.
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He-Ne laser
HNL020L-EC
Thorlabs
Light source for coupling into the waveguide
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CMOS camera
UI-3480CP Rev.2
IDS Imaging Development Systems GmbH
Image acquisition of molographic foci
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Photodiode
FDS1010
Thorlabs
Measurement of out-coupled power
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AFM
Dimension Icon
Bruker
Surface roughness characterization
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STED microscope
SP8 STED
Leica
Quality control and surface mass modulation measurement
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Microscopy objective
20x, 0.4 NA
Edmund Optics
Collection of diffracted light
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Syringe pump
NE-511L
PumpSystems Inc.
Controlled fluid flow for real-time measurements
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