Title :
Label-Free Photonic Crystal Biosensor Integrated Microfluidic Chip for Determination of Kinetic Reaction Rate Constants
Author :
Choi, Charles J. ; Block, Ian D. ; Bole, Brian ; Dralle, David ; Cunningham, Brian T.
Author_Institution :
Univ. of Illinois at Urbana-Champaign, Urbana, IL, USA
Abstract :
We demonstrate a photonic crystal integrated microfluidic chip that is compatible with a 384-well microplate format for measuring kinetic reaction rate constants in high-throughput biomolecular interaction screening applications. The device enables low volume kinetic analysis of protein-protein interactions with low flow latency, and control of five analyte flow channels with a single control point. The structure is fabricated with a replica molding process that produces the submicron photonic crystal structure simultaneously with the micrometer-scale fluid channel structure. The device significantly reduces the kinetic assay time required compared with a conventional biosensor microplate in which reagents reach the active detection surface by diffusion. Using the photonic crystal sensor fluid network system, we demonstrate determination of the kinetic association/dissociation rate constants between immobilized ligands and analytes in the flow stream, using the heparin/lactoferrin system as an example.
Keywords :
biosensors; integrated optics; photonic crystals; flow channels; flow latency; high-throughput biomolecular interaction screening; kinetic analysis; kinetic reaction rate constants; label-free photonic crystal biosensor integrated microfluidic chip; microplate format; protein-protein interactions; submicron photonic crystal structure; Biosensors; Delay; Fluid flow control; Kinetic theory; Microfluidics; Optoelectronic and photonic sensors; Photonic crystals; Proteins; Semiconductor device measurement; Soft lithography; Biomedical transducers; flexible structures; optical resonance;
Journal_Title :
Sensors Journal, IEEE
DOI :
10.1109/JSEN.2009.2030666