Publication | Open Access
A Portable Chemotaxis Platform for Short and Long Term Analysis
14
Citations
19
References
2012
Year
Tissue EngineeringPortable Chemotaxis PlatformEngineeringOrgan-on-a-chipBiomedical EngineeringStem Cell MigrationStem Cell BiologyDrug ResistanceRegenerative MedicineBiologic AgentBioanalysisStem CellsMicrofluidicsBiomedicineChemotaxis AssaysChemometricsBiomedical AnalysisCell EngineeringCell BiologyMesenchymal Stem CellCell Migration StudiesStandalone Chemotaxis PlatformBiotechnologyLab-on-a-chipStem Cell ResearchMicrobiologyBiomemsMedicine
Flow-based microfluidic systems have been widely utilized for cell migration studies given their ability to generate versatile and precisely defined chemical gradients and to permit direct visualization of migrating cells. Nonetheless, the general need for bulky peripherals such as mechanical pumps and tubing and the complicated setup procedures significantly limit the widespread use of these microfluidic systems for cell migration studies. Here we present a simple method to power microfluidic devices for chemotaxis assays using the commercially available ALZET® osmotic pumps. Specifically, we developed a standalone chemotaxis platform that has the same footprint as a multiwell plate and can generate well-defined, stable chemical gradients continuously for up to 7 days. Using this platform, we validated the short-term (24 hours) and long-term (72 hours) concentration dependent PDGF-BB chemotaxis response of human bone marrow derived mesenchymal stem cells.
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