Printed droplet microfluidics for on demand dispensing of picoliter droplets and cells

Author:

Cole Russell H.,Tang Shi-Yang,Siltanen Christian A.,Shahi Payam,Zhang Jesse Q.,Poust Sean,Gartner Zev J.,Abate Adam R.

Abstract

Although the elementary unit of biology is the cell, high-throughput methods for the microscale manipulation of cells and reagents are limited. The existing options either are slow, lack single-cell specificity, or use fluid volumes out of scale with those of cells. Here we present printed droplet microfluidics, a technology to dispense picoliter droplets and cells with deterministic control. The core technology is a fluorescence-activated droplet sorter coupled to a specialized substrate that together act as a picoliter droplet and single-cell printer, enabling high-throughput generation of intricate arrays of droplets, cells, and microparticles. Printed droplet microfluidics provides a programmable and robust technology to construct arrays of defined cell and reagent combinations and to integrate multiple measurement modalities together in a single assay.

Funder

Office of Extramural Research, National Institutes of Health

DOD | Defense Advanced Research Projects Agency

University of California, San Francisco, Research Allocation Program

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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