Model Membrane Characterization

Model membrane characterization is the analysis of engineered lipid assemblies that reproduce selected structural and physical features of biological membranes. Researchers assess properties such as lipid organization, membrane fluidity, permeability, thickness, and interactions with proteins or other molecules using complementary imaging, spectroscopy, and biophysical measurements. These analyses reveal how composition, temperature, ionic conditions, and molecular interactions influence membrane behavior. In bioengineering, characterized model membranes support the development of drug-delivery systems, biosensors, antimicrobial materials, and membrane-based devices while providing controlled platforms for studying transport, signaling, and membrane-associated disease mechanisms.

Model Membrane Characterization - Related Videos

Research

JoVE Journal - Engineering

Fabrication and Characterization of High-Q Silicon Nitride Membrane Resonators

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Cited by 1 •

2025

This article traces the life cycle of a silicon nitride membrane resonator, from design through fabrication to characterization.

Characterization of Membrane Transporters by Heterologous Expression in E. coli and Production of Membrane Vesicles

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Cited by 4 •

2019

We describe a method for the characterization of proton-driven membrane transporters in membrane vesicle preparations produced by heterologous expression in E. coli and lysis of cells using a French press.

Research

JoVE Journal - Chemistry
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Lipid-Protein Membrane Structure-Function Characterization using Droplet Interface Bilayers

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2026

An experimental protocol is presented to assemble, electrically stimulate, and analyze gramicidin A-doped droplet interface bilayers. Lipid-protein structure-function relationships are quantified by measuring changes in membrane area, ionic flux, and single-channel conductance, and relating these responses to plasticity-like changes in ionic conduction in a membrane model inspired by electrical synapses.

Functional Characterization of Na+/H+ Exchangers of Intracellular Compartments Using Proton-killing Selection to Express Them at the Plasma Membrane

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Cited by 4 •

2015

The first part of this article shows how to select mutant cell lines expressing vesicular Na+/H+ exchangers at their plasma membrane. The second part provides protocols based on intracellular pH measurements and fast ion uptake, which are used to determine the ion selectivity and the kinetic parameters of these exchangers.

Isolation and Characterization Of Chimeric Human Fc-expressing Proteins Using Protein A Membrane Adsorbers And A Streamlined Workflow

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Cited by 3 •

2014

Compared with traditional affinity chromatography using protein A agarose bead-packed columns, protein A membrane adsorbers can significantly speed laboratory-scale isolation of antibodies and other Fc fragment-expressing proteins. Appropriate analysis and quantification methods can further accelerate protein processing, allowing isolation/characterization to be completed in one workday, instead of 20+ work hours.

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