Detection of Cellular Parameters Using a Microfluidic Chip-Based System
Tobias Preckel, Gerd Luedke, Samuel D.H. Chan, Benjamin N. Wang, Robert Dubrow, Carsten Buhlmann
Abstract
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Tobias Preckel, Gerd Luedke, Samuel D.H. Chan, Benjamin N. Wang, Robert Dubrow, Carsten Buhlmann
Abstract
Open-access reader
Lab-on-a-chip technology achieves a reduction of sample and reagent volume and automates complex laboratory processes. Here, we present the implementation of cell assays on a microfluidic platform using disposable microfluidic chips. The applications are based on the controlled movement of cells by pressure-driven flow inside networks of microfluidic channels. Cells are hydrodynamically focused and pass the fluorescence detector in single file. Initial applications are the determination of protein expression and apoptosis parameters. The microfluidic system allows unattended measurement of six samples per chip. Results obtained with the microfluidic chips showed good correlation with data obtained using a standard flow cytometer.
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Lab-on-a-chip technology achieves a reduction of sample and reagent volume and automates complex laboratory processes. Here, we present the implementation of cell assays on a microfluidic platform using disposable microfluidic chips. The applications are based on the controlled movement of cells by pressure-driven flow inside networks of microfluidic channels. Cells are hydrodynamically focused and pass the fluorescence detector in single file. Initial applications are the determination of protein expression and apoptosis parameters. The microfluidic system allows unattended measurement of six samples per chip. Results obtained with the microfluidic chips showed good correlation with data obtained using a standard flow cytometer.
Key concepts: Microfluidics, Microfluidic chip, Chip, Lab-on-a-chip, Detector, Reagent, Nanotechnology, Computer hardware