Lipid Bilayer Interactions

Lipid bilayer interactions are the physical and chemical forces that organize membrane lipids, proteins, and surrounding molecules into dynamic biological barriers. Driven largely by the hydrophobic effect, amphipathic lipids arrange their nonpolar tails away from water and their polar heads toward aqueous environments, while hydrogen bonding, electrostatic attraction, van der Waals forces, and cholesterol-mediated packing influence membrane fluidity and stability. These interactions regulate permeability, membrane protein activity, vesicle formation, cell signaling, and compartmentalization. Understanding them helps explain processes such as transport, cell recognition, and membrane fusion, and supports research in molecular biology, drug delivery, and biotechnology.

Lipid Bilayer Interactions - Related Videos

Research

JoVE EoE - Biomolecular Interaction Detection Techniques

Dissipative Microgravimetry Technique to Study Protein-Lipid Bilayer Interaction

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2025

This video demonstrates a dissipative microgravimetry technique to investigate the binding of proteins to lipid bilayers. Small unilamellar vesicles are added to coat the surface of the quartz sensor of a microbalance. Utilizing the calcium ion-dependent binding of the target phospholipid-binding protein to the bilayer, changes in the oscillation frequency of the sensor and the dissipation of the oscillation are monitored to determine the nature of the protein-lipid bilayer binding.

An In Vitro Technique to Study T Cell Interaction with Supported Planar Lipid Bilayers

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2025

This video demonstrates an in vitro technique to study immune synapse formation between primary human T cells and supported lipid bilayers (SLB). T cell surface proteins interact with respective ligands immobilized on SLB to form an immune synapse, followed by the movement of lytic granules towards the synapse, which is visualized using fluorescence microscopy.

pH Modulation Assay on Supported Lipid Bilayers to Detect Protein-Phosphoinositide Interactions

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2025

In this video, we demonstrate protein-phosphoinositide interactions in a microfluidic pattern using the pH modulation assay, using pH-sensitive fluorescent dye tagged to phosphatidylethanolamine lipid of a supported lipid bilayer, called a microfluidic platform. The modulations in pH after protein binding to phospholipid cause fluorescence quenching.

Lipid Bilayer Vesicle Generation Using Microfluidic Jetting

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Cited by 16 •

2014

Microfluidic jetting against a droplet interface lipid bilayer provides a reliable way to generate vesicles with control over membrane asymmetry, incorporation of transmembrane proteins, and encapsulation of material. This technique can be applied to study a variety of biological systems where compartmentalized biomolecules are desired.

Automated Lipid Bilayer Membrane Formation Using a Polydimethylsiloxane Thin Film

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Cited by 4 •

2016

We demonstrate a storable, transportable lipid bilayer formation system. A lipid bilayer membrane can be formed within 1 hr with over 80% success rate when a frozen membrane precursor is brought to ambient temperature. This system will reduce laborious processes and expertise associated with ion channels.

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