Cell Monolayer Patterning

Cell monolayer patterning is the controlled organization of a single layer of cells into defined spatial arrangements on a biomaterial or culture surface, enabling researchers to study how geometry and cell interactions influence function. The process typically uses patterned adhesive and nonadhesive regions, created by methods such as microcontact printing or photolithography, to guide cell attachment, spreading, alignment, and organization under controlled culture conditions. In bioengineering, patterned monolayers support investigations of cell polarity, migration, differentiation, tissue architecture, and cell-cell communication. They also provide reproducible platforms for disease modeling, drug testing, and designing biomimetic tissue interfaces.

Cell Monolayer Patterning - Related Videos

Research

JoVE Journal - Biology

Antifouling Self-assembled Monolayers on Microelectrodes for Patterning Biomolecules

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Cited by 3 •

2009

We present a procedure for forming a poly(ethylene glycol) self-assembled monolayer (PEG-SAM) on a silicon substrate with gold microelectrodes. The PEG-SAM is formed in a single step and prevents biofouling on silicon and gold surfaces. Electrophoresis is then used for patterning biomolecules down to the nanoscale.

Studying Cell Rolling Trajectories on Asymmetric Receptor Patterns

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Cited by 3 •

2011

We describe a protocol to observe and analyze cell rolling trajectories on asymmetric receptor-patterned substrates. The resulting data are useful for engineering of receptor-patterned substrates for label-free cell separation and analysis.

A Versatile Method of Patterning Proteins and Cells

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Cited by 10 •

2017

This report describes a simple, easy to perform technique, using low pressure vacuum, to fill microfluidic channels with cells and substrates for biological research.

Creating Two-Dimensional Patterned Substrates for Protein and Cell Confinement

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Cited by 5 •

2011

Self-assembled monolayers (SAMs) formed from long chain alkane thiols on gold provide well-defined substrates for the formation of protein patterns and cell confinement. Microcontact printing of hexadecanethiol using a polydimethylsiloxane (PDMS) stamp followed by backfilling with a glycol-terminated alkane thiol monomer produces a pattern where protein and cells adsorb only to the stamped hexadecanethiol region.

Research

JoVE Journal - Bioengineering
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Rapid Subtractive Patterning of Live Cell Layers with a Microfluidic Probe

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Cited by 2 •

2016

We present a protocol to perform subtractive patterning of live cell monolayers on a surface. This is achieved by local and selective lysis of adherent cells using a microfluidic probe (MFP). The cell lysate retrieved from local regions can be used for downstream analysis, enabling molecular profiling studies.

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