Chip-based Cell Culture

Chip-based cell culture is a method for growing and studying cells within miniaturized, engineered platforms that reproduce key features of their natural environments. These microfluidic devices use small channels and controlled fluid flow to regulate nutrients, oxygen, chemical gradients, extracellular matrix interactions, and mechanical forces such as shear stress, while enabling real-time observation. In biology, chip-based cell culture supports tissue modeling, disease research, drug screening, and studies of cell behavior under precisely defined conditions. By requiring fewer cells and reagents than conventional culture systems, it can improve experimental control and help bridge the gap between simplified laboratory models and complex living tissues.

Chip-based Cell Culture - Related Videos

Research

JoVE Journal - Neuroscience
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Culturing and Electrophysiology of Cells on NRCC Patch-clamp Chips

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Cited by 6 •

2012

We show how planar patch-clamp chips fabricated at the National Research Council of Canada are sterilized, primed, loaded with medium, plated with cells, and used for electrophysiological recordings.

Research

JoVE Journal - Biology

Chip-based Three-dimensional Cell Culture in Perfused Micro-bioreactors

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Cited by 7 •

2008

We describe a chip-based platform for the three-dimensional cultivation of cells in micro-bioreactors. One chip can house up to 10 Mio. cells that can be cultivated under precisely defined conditions with regard to fluid flow, oxygen tension etc. in a sterile, closed circulation loop.

Compartmentalized Primary Murine Neuron Culture Using Plastic Microfluidic Chips

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2025

This video demonstrates the utilization of a pre-assembled plastic microfluidic chip for the compartmentalized culture of primary rat hippocampal neurons. The neurons are plated into one of the microfluidic compartments, where they attach and grow, extending their axons through the chip's microgrooves into the adjacent compartment. The narrow microgrooves prevent neuronal cell bodies from entering, thereby enabling physical separation between the somatic and axonal compartments.

Patterning of Embryonic Stem Cells Using the Bio Flip Chip

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Cited by 2 •

2007

We demonstrate a simple method for placing cells at desired locations on a substrate. This method patterns cells by flipping a silicone chip containing microwells filled with cells onto the substrate. This method provides a new way to modulate diffusible and juxtacrine signaling between cells.

Microfabrication of Chip-sized Scaffolds for Three-dimensional Cell cultivation

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Cited by 11 •

2008

We present two processes for the microfabrication of porous polymer chips for three-dimensional cell cultivation. The first one is hot embossing combined with a solvent vapour welding process. The second one uses a recently developed microthermoforming process combined with ion track technology leading to a significant simplification of manufacture.

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