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Sorting droplets into many outlets

Saurabh Vyawahare, Michael Brundage, Aleksandra Kijac, Michael Gutierrez, Martina de Geus, Supriyo Sinha, Andrew Homyk
doi: https://doi.org/10.1101/2021.06.03.446983
Saurabh Vyawahare
aVerily Life Sciences LLC, 249 E. Grand Avenue, South San Francisco, CA 94080 USA Tel: +1 415-736-5695 Office; E-mail:
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  • For correspondence: saurabhv@verily.com saurabhv@verily.com
Michael Brundage
aVerily Life Sciences LLC, 249 E. Grand Avenue, South San Francisco, CA 94080 USA Tel: +1 415-736-5695 Office; E-mail:
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  • For correspondence: saurabhv@verily.com
Aleksandra Kijac
aVerily Life Sciences LLC, 249 E. Grand Avenue, South San Francisco, CA 94080 USA Tel: +1 415-736-5695 Office; E-mail:
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  • For correspondence: saurabhv@verily.com
Michael Gutierrez
aVerily Life Sciences LLC, 249 E. Grand Avenue, South San Francisco, CA 94080 USA Tel: +1 415-736-5695 Office; E-mail:
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  • For correspondence: saurabhv@verily.com
Martina de Geus
aVerily Life Sciences LLC, 249 E. Grand Avenue, South San Francisco, CA 94080 USA Tel: +1 415-736-5695 Office; E-mail:
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  • For correspondence: saurabhv@verily.com
Supriyo Sinha
aVerily Life Sciences LLC, 249 E. Grand Avenue, South San Francisco, CA 94080 USA Tel: +1 415-736-5695 Office; E-mail:
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Andrew Homyk
aVerily Life Sciences LLC, 249 E. Grand Avenue, South San Francisco, CA 94080 USA Tel: +1 415-736-5695 Office; E-mail:
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Abstract

Droplet microfluidics is a commercially successful technology, widely used in single cell sequencing and droplet PCR. Combining droplet making with droplet sorting has also been demonstrated, but so far found limited use, partly due to difficulties in scaling manufacture with injection molded plastics. We introduce a droplet sorting system with several new elements, including: 1) an electrode design combining metallic and ionic liquid parts, 2) a modular, multi-sorting fluidic design with features for keeping inter-droplet distances constant, 3) using timing parameters calculated from fluorescence or scatter signal triggers to precisely actuate dozens of sorting electrodes, 4) droplet collection techniques, including ability to collect a single droplet, and 5) a new emulsion breaking method to collect aqueous samples for downstream analysis. We use these technologies to build a fluorescence based cell sorter that sorts with high purity. We also show that these microfluidic designs can be translated into injection molded thermoplastic, suitable for industrial production. Finally, we tally the advantages and limitations of these devices.

Competing Interest Statement

The authors are employees of Verily Life Sciences LLC, a subsidiary of Alphabet Inc, that has a commercial interest in this technology, and has filed for multiple patents based on this paper's contents.

Footnotes

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-NC-ND 4.0 International license.
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Posted June 03, 2021.
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Sorting droplets into many outlets
Saurabh Vyawahare, Michael Brundage, Aleksandra Kijac, Michael Gutierrez, Martina de Geus, Supriyo Sinha, Andrew Homyk
bioRxiv 2021.06.03.446983; doi: https://doi.org/10.1101/2021.06.03.446983
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Sorting droplets into many outlets
Saurabh Vyawahare, Michael Brundage, Aleksandra Kijac, Michael Gutierrez, Martina de Geus, Supriyo Sinha, Andrew Homyk
bioRxiv 2021.06.03.446983; doi: https://doi.org/10.1101/2021.06.03.446983

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