Cell-surface Interactions

Cell-surface interactions are the physical and biochemical contacts between a cell’s plasma membrane and its surrounding materials, molecules, or neighboring cells, and they regulate how cells sense and respond to their environment. In bioengineering, membrane receptors, adhesion proteins, and integrins bind extracellular matrix components or engineered surfaces, converting chemical and mechanical cues into intracellular signals that influence adhesion, spreading, migration, and differentiation. Researchers use these principles to design biomaterials, tissue-engineering scaffolds, and cell-culture platforms that control cell behavior. Understanding and tuning surface chemistry, stiffness, and ligand presentation can improve biocompatibility and support the development of regenerative therapies and in vitro disease models.

Cell-surface Interactions - Related Videos

Research

JoVE Journal - Bioengineering

Micropatterned Surfaces to Study Hyaluronic Acid Interactions with Cancer Cells

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Cited by 11 •

2010

A novel approach that allows the high-resolution analysis of cancer cell interactions with exogenous hyaluronic acid (HA) is described. Patterned surfaces are fabricated by combining carbodiimide chemistry and microcontact printing.

Research

JoVE Journal - Biology
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Avidity-based Extracellular Interaction Screening (AVEXIS) for the Scalable Detection of Low-affinity Extracellular Receptor-Ligand Interactions

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Cited by 56 •

2012

AVEXIS is a high throughput protein interaction assay developed to systematically screen for novel extracellular receptor-ligand pairs involved in cellular recognition processes. It is specifically designed to detect transient protein interactions that are difficult to identify using other high throughput approaches.

A Microfluidic System with Surface Patterning for Investigating Cavitation Bubble(s)–Cell Interaction and the Resultant Bioeffects at the Single-cell Level

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Cited by 8 •

2017

A microfluidic chip was fabricated to produce pairs of gold dots for tandem bubble generation and fibronectin-coated islands for single-cell patterning nearby. The resultant flow field was characterized by particle image velocimetry and was employed to study various bioeffects, including cell membrane poration, membrane deformation, and intracellular calcium response.

Surface Plasmon Resonance to Study Biomolecular Interactions Using a Sensor Chip

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2025

This video describes the surface plasmon resonance, or SPR, technique for studying the interaction between two molecules using a sensor chip. The change in resonance angle and the intensity of the reflected light are detected as a function of the association and dissociation of two molecules, and this provides information about the interactions between the two molecules.

Research

JoVE Journal - Biology
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In-vivo Detection of Protein-protein Interactions on Micro-patterned Surfaces

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Cited by 7 •

2010

This video shows experiments with subsequent analysis of protein-protein interactions by the use of micro-patterned surfaces. The approach offers the possibility to detect protein interactions in living cells and combines high throughput capabilities with the possibility to extract quantitative information.

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