Abstract
We present a programmable droplet-based microfluidic device that combines the reconfigurable flow-routing capabilities of integrated microvalve technology with the sample compartmentalization and dispersion-free transport that is inherent to droplets. The device allows for the execution of user-defined multistep reaction protocols in 95 individually addressable nanoliter-volume storage chambers by consecutively merging programmable sequences of picoliter-volume droplets containing reagents or cells. This functionality is enabled by "flow-controlled wetting," a droplet docking and merging mechanism that exploits the physics of droplet flow through a channel to control the precise location of droplet wetting. The device also allows for automated cross-contamination-free recovery of reaction products from individual chambers into standard microfuge tubes for downstream analysis. The combined features of programmability, addressability, and selective recovery provide a general hardware platform that can be reprogrammed for multiple applications. We demonstrate this versatility by implementing multiple single-cell experiment types with this device: bacterial cell sorting and cultivation, taxonomic gene identification, and high-throughput single-cell whole genome amplification and sequencing using common laboratory strains. Finally, we apply the device to genome analysis of single cells and microbial consortia from diverse environmental samples including a marine enrichment culture, deep-sea sediments, and the human oral cavity. The resulting datasets capture genotypic properties of individual cells and illuminate known and potentially unique partnerships between microbial community members.
MeSH Terms
Base Sequence
DNA Primers/genetics
Genotype
Geologic Sediments/microbiology
Humans
Hydrodynamics
Image Processing, Computer-Assisted
Metagenome/genetics
Metagenomics/methods
Microfluidic Analytical Techniques/instrumentation,methods
Microscopy, Fluorescence
Molecular Sequence Data
Mouth/microbiology
Polymerase Chain Reaction
RNA, Ribosomal, 16S/genetics
Sequence Analysis, DNA
Surface-Active Agents
Wettability
Chemicals
DNA Primers
RNA, Ribosomal, 16S
Surface-Active Agents
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Leung Kaston
Department of Electrical and Computer Engineering, University of British Columbia, Vancouver, BC, Canada, V6T 1Z4.
Zahn Hans
Leaver Timothy
Konwar Kishori M
Hanson Niels W
Pagé Antoine P
Lo Chien-Chi
Chain Patrick S
Hallam Steven J
Hansen Carl L
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