Capillary-Mediated Single-Cell Dispenser

Single-cell manipulation, sorting, and dispensing into multiwell plates is useful for single-cell multiomics studies. Here, we develop a single-cell dispenser inspired by electrohydrodynamic jet printing that achieves accurate droplet generation and single-cell sorting and dispensing using fused sil...

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Veröffentlicht in:Analytical chemistry (Washington) 2021-08, Vol.93 (31), p.10750-10755
Hauptverfasser: Wu, Li, Xu, Shihan, Wang, Jingang, Paguirigan, Amy L, Radich, Jerald P, Qin, Yuling, Chiu, Daniel T
Format: Artikel
Sprache:eng
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Zusammenfassung:Single-cell manipulation, sorting, and dispensing into multiwell plates is useful for single-cell multiomics studies. Here, we develop a single-cell dispenser inspired by electrohydrodynamic jet printing that achieves accurate droplet generation and single-cell sorting and dispensing using fused silica capillary tubing as both the optical detection window and nozzle for droplet dispensing. Parameters that affect droplet dispensing performancecapillary inner and outer diameter, flow rate, applied voltage, and solution propertieswere optimized systematically with COMSOL simulations and experimentation. Small (5–10 nL) droplets were obtained by using 100-μm inner diameter and 160-μm outer diameter capillary tubing and allowed efficient encapsulation and dispensing of single cells. We demonstrate an application of this easy-to-assemble single-cell dispenser by sorting and dispensing cells into multiwell plates for single-cell PCR analysis.
ISSN:0003-2700
1520-6882
DOI:10.1021/acs.analchem.1c01879