Lipid Vesicle Rupture

Lipid vesicle rupture is the disruption and spreading of lipid bilayer vesicles, a technique used to form planar membrane layers for studying membrane structure and function. When vesicles adsorb to a suitable surface, interactions with the substrate generate membrane tension that causes deformation, pore formation, and eventual bilayer spreading. Researchers use this process to prepare supported lipid bilayers that reproduce key features of cell membranes under controlled laboratory conditions. These model membranes support investigations of protein-lipid interactions, membrane permeability, molecular transport, and surface-based biosensors, providing a practical bridge between complex biological membranes and quantitative experiments.

Lipid Vesicle Rupture - Related Videos

Research

JoVE Journal - Bioengineering

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.

A Photodynamic Approach to Study Function of Intracellular Vesicle Rupture

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2023

AlPcS2a-mediated chromophore-assisted laser inactivation (CALI) is a powerful tool for studying spatiotemporal damage of intracellular vesicles (IVs) in live cells.

Lipid Vesicle-mediated Affinity Chromatography using Magnetic Activated Cell Sorting (LIMACS): a Novel Method to Analyze Protein-lipid Interaction

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Cited by 14 •

2011

To test the interaction of a protein with its target lipid we used MACS and Annexin V-conjugated magnetic beads and lipid vesicles synthesized from the target lipid and Annexin V-binding phosphatidylserine. Proteins bound to the target lipid are co-purified and analyzed after elution from the beads.

Constant Pressure-controlled Extrusion Method for the Preparation of Nano-sized Lipid Vesicles

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Cited by 29 •

2012

This protocol describes an extrusion method for preparing lipid vesicles of sub-micron sizes with a high degree of homogeneity. This method uses a pressure-controlled system with controlled nitrogen flow rates for liposome preparation. The lipid preparation1,2, liposome extrusion, and size characterization will be presented herein.

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.

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