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Automated System for Small-Population Single-Particle Processing Enabled by Exclusive Liquid Repellency
Journal article   Peer reviewed

Automated System for Small-Population Single-Particle Processing Enabled by Exclusive Liquid Repellency

Chao Li, David J. Niles, Duane Juang, Joshua M Lang and David Beebe
SLAS technology, Vol.24(6), pp.535-542
12/01/2019
Handle:
https://hdl.handle.net/10192/79150
PMID: 31180792

Abstract

Biochemical Research Methods Biochemistry & Molecular Biology Chemistry Chemistry, Analytical Life Sciences & Biomedicine Science & Technology Physical Sciences
Exclusive liquid repellency (ELR) describes an extreme wettability phenomenon in which a liquid phase droplet is completely repelled from a solid phase when exposed to a secondary immiscible liquid phase. Earlier, we developed a multi-liquid-phase open microfluidic (or underoil) system based on ELR to facilitate rare-cell culture and single-cell processing. The ELR system can allow for the handling of small volumes of liquid droplets with ultra-low sample loss and biofouling, which makes it an attractive platform for biological applications that require lossless manipulation of rare cellular samples (especially for a limited sample size in the range of a few hundred to a few thousand cells). Here, we report an automated platform using ELR microdrops for single-particle (or single-cell) isolation, identification, and retrieval. This was accomplished via the combined use of a robotic liquid handler, an automated microscopic imaging system, and real-time image-processing software for single-particle identification. The automated ELR technique enables rapid, hands-free, and robust isolation of microdrop-encapsulated rare cellular samples.

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