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Cyto-Mine: An Integrated, Picodroplet System for High-Throughput Single-Cell Analysis, Sorting, Dispensing, and Monoclonality Assurance

Authors :
Josephides, Dimitris
Davoli, Serena
Whitley, William
Ruis, Raphael
Salter, Robert
Gokkaya, Sinan
Vallet, Maeva
Matthews, Darren
Benazzi, Giuseppe
Shvets, Elena
Gesellchen, Frank
Geere, Drew
Liu, Xin
Li, Xin
Mackworth, Benedict
Young, William
Owen, Zachary
Smith, Clive
Starkie, Dale
White, James
Sweeney, Bernie
Hinchliffe, Matthew
Tickle, Simon
Lightwood, Daniel J.
Rehak, Marian
Craig, Frank F.
Holmes, David
Source :
SLAS Technology: Translating Life Sciences Innovation; April 2020, Vol. 25 Issue: 2 p177-189, 13p
Publication Year :
2020

Abstract

The primary goal of bioprocess cell line development is to obtain high product yields from robustly growing and well-defined clonal cell lines in timelines measured in weeks rather than months. Likewise, high-throughput screening of B cells and hybridomas is required for most cell line engineering workflows. A substantial bottleneck in these processes is detecting and isolating rare clonal cells with the required characteristics. Traditionally, this was achieved by the resource-intensive method of limiting dilution cloning, and more recently aided by semiautomated technologies such as cell sorting (e.g., fluorescence-activated cell sorting) and colony picking. In this paper we report on our novel Cyto-Mine Single Cell Analysis and Monoclonality Assurance System, which overcomes the limitations of current technologies by screening hundreds of thousands of individual cells for secreted target proteins, and then isolating and dispensing the highest producers into microtiter plate wells (MTP). The Cyto-Mine system performs this workflow using a fully integrated, microfluidic Cyto-Cartridge. Critically, all reagents and Cyto-Cartridges used are animal component-free (ACF) and sterile, thus allowing fast, robust, and safe isolation of desired cells.

Details

Language :
English
ISSN :
24726303 and 24726311
Volume :
25
Issue :
2
Database :
Supplemental Index
Journal :
SLAS Technology: Translating Life Sciences Innovation
Publication Type :
Periodical
Accession number :
ejs59254750
Full Text :
https://doi.org/10.1177/2472630319892571