Publication | Closed Access
Soft-state biomicrofluidic pulse generator for single cell analysis
32
Citations
7
References
2006
Year
Reagent Consumption RateEngineeringBiomedical DiagnosticsMicrofabricationBiochemical ReagentAnalytical MicrosystemsBiochemical EngineeringSingle Cell AnalysisBiofabricationLab-on-a-chipBiomedical AnalysisOrgan-on-a-chipMicroscale SystemBiomedical EngineeringBiomemsMicrofluidicsBiophysics
We present the design, fabrication, and characterization of a soft-state biomicrofluidic pulse generator for single cell analysis. Hydrodynamic cell trapping via lateral microfluidic junctions allows the trapping of single cells from a bulk suspension. Microfluidic injection sites adjacent to the cell-trapping channels enable the pulsed delivery of nanoliter volumes of biochemical reagent. We demonstrated the application and removal of reagent at a frequency of 10Hz with a rise time of less than 33ms and a reagent consumption rate of 0.2nL∕s. It is shown that this system operates as a low-pass filter with a cutoff frequency of 7Hz.
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