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PMID: 36890160 Published · epublish English Journal Article Research Support, Non-U.S. Gov't

Reliable cell retention of mammalian suspension cells in microfluidic cultivation chambers.

Scientific reports ·Vol. 13 ·No. 1 ·2023-00-08 ·页码 3857

Schmitz J, Stute B, Täuber S, Kohlheyer D, von Lieres E, Grünberger A

Abstract

Microfluidic cultivation, with its high level of environmental control and spatio-temporal resolution of cellular behavior, is a well-established tool in today's microfluidics. Yet, reliable retention of (randomly) motile cells inside designated cultivation compartments still represents a limitation, which prohibits systematic single-cell growth studies. To overcome this obstacle, current approaches rely on complex multilayer chips or on-chip valves, which makes their application for a broad community of users infeasible. Here, we present an easy-to-implement cell retention concept to withhold cells inside microfluidic cultivation chambers. By introducing a blocking structure into a cultivation chamber's entrance and nearly closing it, cells can be manually pushed into the chamber during loading procedures but are unable to leave it autonomously in subsequent long-term cultivation. CFD simulations as well as trace substance experiments confirm sufficient nutrient supply within the chamber. Through preventing recurring cell loss, growth data obtained from Chinese hamster ovary cultivation on colony level perfectly match data determined from single-cell data, which eventually allows reliable high throughput studies of single-cell growth. Due to its transferability to other chamber-based approaches, we strongly believe that our concept is also applicable for a broad range of cellular taxis studies or analyses of directed migration in basic or biomedical research.

MeSH 主题词
Animals Cricetinae Microfluidics/methods CHO Cells Cricetulus Microfluidic Analytical Techniques/methods
作者与单位
共 6 位作者,点击展开单位 / ORCID
Schmitz Julian
Multiscale Bioengineering, Faculty of Technology, Bielefeld University, Universitätsstraße 25, 33615, Bielefeld, Germany. | Center for Biotechnology (CeBiTec), Bielefeld University, Universitätsstraße 27, 33615, Bielefeld, Germany.
Stute Birgit
IBG-1: Biotechnology, Forschungszentrum Jülich, Wilhelm-Johnen-Straße 1, 52428, Jülich, Germany.
Täuber Sarah
Multiscale Bioengineering, Faculty of Technology, Bielefeld University, Universitätsstraße 25, 33615, Bielefeld, Germany. | Center for Biotechnology (CeBiTec), Bielefeld University, Universitätsstraße 27, 33615, Bielefeld, Germany.
Kohlheyer Dietrich
IBG-1: Biotechnology, Forschungszentrum Jülich, Wilhelm-Johnen-Straße 1, 52428, Jülich, Germany.
von Lieres Eric
IBG-1: Biotechnology, Forschungszentrum Jülich, Wilhelm-Johnen-Straße 1, 52428, Jülich, Germany.
Grünberger Alexander
Microsystems in Bioprocess Engineering, Institute of Process Engineering in Life Sciences, Karlsruhe Institute of Technology (KIT), Fritz-Haber-Weg 2, 76131, Karlsruhe, Germany. [email protected].
Article Info
Journal
Scientific reports
Abbr.
Sci Rep
ISSN
2045-2322
Corresponding email
Published
2023-00-08
电子出版
2023-00-08
页码
3857
Language
English
Country/Region
England
NLM ID
101563288
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