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Controlled encapsulation of single-cells into monodisperse picolitre drops

Lab on a Chip · 2008 · Vol. 8(8) · pp. 1262–1262
Jon F.Dino Di CarloKatherine J. HumphrySarah KösterDaniel IrimiaDavid A. WeitzMehmet Toner

Abstract

Encapsulation of cells within picolitre-size monodisperse drops provides new means to perform quantitative biological studies on a single-cell basis for large cell populations. Variability in the number of cells per drop due to stochastic cell loading is a major barrier to these techniques. We overcome this limitation by evenly spacing cells as they travel within a high aspect-ratio microchannel; cells enter the drop generator with the frequency of drop formation.

Innovative Microfluidic and Catalytic Techniques InnovationMicrofluidic and Bio-sensing TechnologiesElectrowetting and Microfluidic TechnologiesDispersityDrop (telecommunication)MicrochannelMaterials scienceNanotechnologyMicrofluidicsBiophysicsEngineeringPolymer chemistryBiology

MeSH terms

HumansMicrochemistryHL-60 CellsMicrofluidic Analytical Techniques
Citations
498
FWCI
20.63
field-weighted impact
References
17
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100%
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Citations per year
References
Formation of dispersions using “flow focusing” in microchannels
Applied Physics Letters · 2003 · 2,229 citations
The origins and the future of microfluidics
Nature · 2006 · 9,283 citations
Droplet microfluidics
Lab on a Chip · 2008 · 2,625 citations
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