Size-based chromosome separation in a microfluidic particle separation device using viscoelastic fluids

Viscoelastic flow-based particle manipulation techniques enable bio-particle focusing, separation, and enrichment by precisely tuning the rheological parameters, flow conditions, and microchannel geometry. In this study, we fabricated a PDMS-based single inlet/outlet microchannel to separate bio-par...

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Veröffentlicht in:EPJ Web of conferences 2022, Vol.266, p.12007
Hauptverfasser: Wassberg, Therese R., Witt, Mathilde L., Serhatlioglu, Murat, Nielsen, Christian F., Hickson, Ian D., Kristensen, Anders
Format: Artikel
Sprache:eng
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Zusammenfassung:Viscoelastic flow-based particle manipulation techniques enable bio-particle focusing, separation, and enrichment by precisely tuning the rheological parameters, flow conditions, and microchannel geometry. In this study, we fabricated a PDMS-based single inlet/outlet microchannel to separate bio-particles by their size ranging from 1-10 μm. Flow conditions and rheological properties are optimized using 2 μm and 4 μm Polystyrene beads to reach the best particle separation condition. We demonstrated the size-based separation of human chromosomes by separating 1-2 μm size small chromosomes from 8-10 μm size large chromosomes. Thanks to its miniaturized size and simplicity, the isolation chip and unique viscoelastic separation method have great potential to be used as a future pioneering tool for genetic applications to study chromosome abnormalities such as fragile-X and trisomy.
ISSN:2100-014X
2100-014X
DOI:10.1051/epjconf/202226612007