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Droplet microfluidic technology for single-cell high-throughput screening

  • Eric Brouzes
  • , Martina Medkova
  • , Neal Savenelli
  • , Dave Marran
  • , Mariusz Twardowski
  • , J. Brian Hutchison
  • , Jonathan M. Rothberg
  • , Darren R. Link
  • , Norbert Perrimon
  • , Michael L. Samuels
  • RainDance Technologies
  • Harvard University
  • Howard Hughes Medical Institute

Research output: Contribution to journalArticlepeer-review

989 Scopus citations

Abstract

We present a droplet-based microfluidic technology that enables high-throughput screening of single mammalian cells. This integrated platform allows for the encapsulation of single cells and reagents in independent aqueous microdroplets (1 pL to 10 nL volumes) dispersed in an immiscible carrier oil and enables the digital manipulation of these reactors at a very high-throughput. Here, we validate a full droplet screening workflow by conducting a droplet-based cytotoxicity screen. To perform this screen, we first developed a droplet viability assay that permits the quantitative scoring of cell viability and growth within intact droplets. Next, we demonstrated the high viability of encapsulated human monocytic U937 cells over a period of 4 days. Finally, we developed an optically-coded droplet library enabling the identification of the droplets composition during the assay read-out. Using the integrated droplet technology, we screened a drug library for its cytotoxic effect against U937 cells. Taken together our droplet microfluidic platform is modular, robust, uses no moving parts, and has a wide range of potential applications including high-throughput single-cell analyses, combinatorial screening, and facilitating small sample analyses.

Original languageEnglish
Pages (from-to)14195-14200
Number of pages6
JournalProceedings of the National Academy of Sciences of the United States of America
Volume106
Issue number34
DOIs
StatePublished - Aug 25 2009

Keywords

  • Cell encapsulation
  • Emulsion
  • Lab-on-a-chip
  • Optical coding
  • Viability assay

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