Abstract
It is important to quantify the distribution of behavior amongst a population of individual cells to reach a more complete quantitative understanding of cellular processes. Improved high-throughput analysis of single cell behavior requires uniform conditions for individual cells with controllable cell-cell interactions, including diffusible and contact elements. Uniform cell arrays for static culture of adherent cells have previously been constructed using protein micropatterning techniques but lack the ability to control diffusible secretions. Here we present a microfluidic-based dynamic single cell culture array that allows both arrayed culture of individual adherent cells and dynamic control of fluid…
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708
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- FWCI
- 25.37
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- References
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Authors
3Topics & keywords
Topics
Keywords
- Micropatterning
- Microfluidics
- Cell culture
- Cell
- Single-cell analysis
- Biophysics
- Substrate (aquarium)
- HeLa
UN Sustainable Development Goals
- Good health and well-being
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