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A microfluidic platform for high-throughput single-cell isolation and culture
期刊文章

A microfluidic platform for high-throughput single-cell isolation and culture

Ching-Hui Lin, Hao-Chen ChangChia-Hsien Hsu
Journal of Visualized Experiments, 卷.2016(112), e54105
06/2016
PMID: 27341146

摘要

Bioengineering Cell culture Cell isolation Clonogenic assay High-efficiency High-throughput Issue 112 Microfluidics Single cell Neuroscience (all) Chemical Engineering (all) Biochemistry Genetics and Molecular Biology (all) Immunology and Microbiology (all)
Studying the heterogeneity of single cells is crucial for many biological questions, but is technically difficult. Thus, there is a need for a simple, yet high-throughput, method to perform single-cell culture experiments. Here, we report a microfluidic chip-based strategy for high-efficiency single-cell isolation (~77%) and demonstrate its capability of performing long-term single-cell culture (up to 7 d) and cellular heterogeneity analysis using clonogenic assay. These applications were demonstrated with KT98 mouse neural stem cells, and A549 and MDA-MB-435 human cancer cells. High single-cell isolation efficiency and long-term culture capability are achieved by using different sizes of microwells on the top and bottom of the microfluidic channel. The small microwell array is designed for precisely isolating single-cells, and the large microwell array is used for single-cell clonal culture in the microfluidic chip. This microfluidic platform constitutes an attractive approach for single-cell culture applications, due to its flexibility of adjustable cell culture spaces for different culture strategies, without decreasing isolation efficiency.

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