研究目的
To enhance the performance of SPR biosensors by incorporating an active mass-transport mechanism based on dielectrophoresis and electroosmotic flow to improve analyte transport to the sensor surface and reduce detection time.
研究成果
The face-to-face electrode configuration significantly enhances particle trapping efficiency compared to coplanar designs, leading to an order of magnitude improvement in SPR response for both small particles and cells. This approach can be integrated into existing SPR systems for faster and more sensitive detection, particularly at low analyte concentrations.
研究不足
The study does not account for ACEO flow in simulations for the pDEP case, and the nDEP configuration does not perfectly center cells on sensing zones. Fabrication involves wet etching which may have variability, and the approach may not be optimal for all cell types or sizes.
1:Experimental Design and Method Selection:
The study used numerical simulations (COMSOL Multiphysics) to optimize electrode design and experimental setups for SPR and DEP. The Kretschmann configuration was employed for SPR sensing.
2:Sample Selection and Data Sources:
Latex beads (3 μm diameter) and HEK293 cells were used as analytes, prepared in specific media.
3:List of Experimental Equipment and Materials:
Equipment includes a fibered LED light source, prism coupler, CCD cameras, signal generator, microscope, and microfabrication tools. Materials include gold-coated glass slides, ITO slides, PDMS, photoresist, and etching chemicals.
4:Experimental Procedures and Operational Workflow:
Biochips were fabricated using photolithography. SPR measurements involved injecting analytes, applying AC voltage for DEP trapping, and monitoring SPR signals. Optical microscopy was used for validation.
5:Data Analysis Methods:
SPR signals were analyzed using ImageJ software and custom LabVIEW programs; numerical simulations used COMSOL for electric field and particle trajectory analysis.
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Camera
Mako G234B POE
Allied Vision
Detects and acquires TE and TM images for SPR measurements
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Microscope
Axiovert 200
Zeiss
Used for bright field imaging of trapped particles and cells
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LED
M740F2
Thorlabs
Light source for SPR optical setup
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Signal Generator
DS345
Stanford Research Systems
Generates AC voltage for DEP experiments
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Photoresist
AZ1512
MicroChemicals
Used in microfabrication for patterning electrodes
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Gold Etchant
TFA
Transene Company, Inc.
Etches gold layer during microfabrication
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Chromium Etchant
Transene Company, Inc.
Etches chromium adhesion layer during microfabrication
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Latex Beads
Polyscience
Used as analytes in DEP and SPR experiments
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