Fluorescence Leakage Assay

A fluorescence leakage assay is a biochemical method for measuring membrane permeability by tracking the release of a fluorescent marker from lipid vesicles or other membrane-bound compartments. The assay typically encapsulates a dye at a self-quenching concentration; when a membrane-disrupting agent forms pores or otherwise compromises the bilayer, dye escapes, becomes diluted, and produces an increase in fluorescence. Researchers use the resulting signal to quantify membrane damage and compare the effects of antimicrobial peptides, proteins, detergents, drugs, or other compounds on lipid organization. This approach provides a sensitive, real-time readout of membrane stability and molecular interactions.

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Fluorescence Leakage Assay to Study Cell-Penetrating Peptide Interaction with Membrane

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2025

This video discusses the fluorescence leakage assay to study the interactions of cell-penetrating peptides with cell membranes using cell membrane mimics — large unilamellar vesicles, or LUVs, encapsulated with a fluorescent dye and a quencher.

Fluorescent Leakage Assay to Investigate Membrane Destabilization by Cell-Penetrating Peptide

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Cited by 4 •

2020

The fluorescence leakage assay is a simple method that enables the investigation of peptide/membrane interactions in order to understand their involvement in several biological processes and especially the ability of cell-penetrating peptides to disturb phospholipids bilayers during a direct cellular translocation process.

Endoscopic Vacuum Therapy for the Treatment of Anastomotic Leakage after Total Gastrectomy with Esophagojejunostomy

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2025

Here, we present a protocol for endoscopic vacuum therapy (EVT) in the management of anastomotic leaks following total gastrectomy with esophagojejunostomy.

A Fluorescence-based Assay of Phospholipid Scramblase Activity

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Cited by 61 •

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We describe a fluorescence-based assay to measure phospholipid scrambling in large unilamellar liposomes reconstituted with opsin.

High-Throughput Fluorescent Assay to Study Microbe-Worm Interactions

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Source: Ali, I., et al. High-Throughput Screening of Microbial Isolates with Impact on Caenorhabditis elegans Health. J. Vis. Exp. (2022)This video demonstrates a high-throughput fluorescent assay to evaluate how gut bacteria affect stress resilience in Caenorhabditis elegans. By tracking blue fluorescence from ruptured gut granules, the assay reveals earlier death signals in worms exposed to test bacteria.

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