Membrane Permeation

Membrane permeation is the movement of molecules or ions across a biological membrane, a process that determines how cells exchange materials with their surroundings. Its mechanism depends on the membrane’s selective permeability: small nonpolar molecules can diffuse through the lipid bilayer, whereas charged or larger solutes typically require protein channels or carrier proteins and may move down or against electrochemical gradients. Passive diffusion and facilitated diffusion use existing gradients, while active transport uses cellular energy to maintain concentration differences. Studying membrane permeation helps explain osmoregulation, nutrient uptake, signaling, and drug movement across cells, making it central to physiology, pharmacology, and membrane-based biotechnology.

Membrane Permeation - Related Videos

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JoVE EoE - Neuropathology

Studying the Permeation of FITC and FITC-Ferritin through an In Vitro Blood-Brain Barrier Model

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2025

This video demonstrates a method to study permeation through an in vitro blood-brain barrier (BBB) model using astrocytes and endothelial cells on a membrane insert, with free FITC and FITC-loaded ferritin. FITC-ferritin bound to receptors on endothelial cells and crossed the membrane barrier to the lower chamber while free FITC showed restricted permeation and remained in the upper chamber.

In Vitro Permeation of FITC-loaded Ferritins Across a Rat Blood-brain Barrier: a Model to Study the Delivery of Nanoformulated Molecules

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Cited by 15 •

2016

A method to establish an in vitro model of blood-brain barrier based on a co-culture of rat brain microvascular endothelial cells and astrocytes is described and validated. This system proved to be a valid tool to study the effect of nanoformulation on the trans-barrier permeation of fluorescent molecules.

Synthesis of Hydrogels with Antifouling Properties As Membranes for Water Purification

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Cited by 10 •

2017

This paper reports practical methods to prepare hydrogels in freestanding films and impregnated membranes and to characterize their physical properties, including water transport properties.

Determining Membrane Protein Topology Using Fluorescence Protease Protection (FPP)

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Cited by 18 •

2015

Here, we present a protocol to determine the orientation and topology of integral membrane proteins in living cells. This simple protocol relies on selective protease sensitivity of chimeras between the protein of interest and GFP.

Controlled Odor Mimic Permeation Systems for Olfactory Training and Field Testing

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Cited by 1 •

2021

The Controlled Odor Mimic Permeation System is a simple, field-portable, low-cost method of odor delivery for olfactory testing and training. It is constructed of an odorant retained on an adsorbent material and contained inside of a permeable polymer bag allowing controlled release of the odorant vapor over time.

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