Membrane Targeted Fluorophores

Membrane-targeted fluorophores are fluorescent molecules designed to localize within or on biological membranes, enabling researchers to visualize membrane structure, dynamics, and organization. Their targeting typically relies on hydrophobic or amphipathic chemical groups that partition into the lipid bilayer, while fluorophore excitation and emission produce detectable optical signals; changes in fluorescence can report membrane environment, fluidity, or molecular interactions. In biology, these probes support live-cell imaging, membrane trafficking studies, lipid-domain analysis, and investigation of processes such as signaling, fusion, and endocytosis. Their use connects molecular design with microscopy to reveal membrane behavior in health and disease.

Membrane Targeted Fluorophores - Related Videos

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JoVE Journal - Biology

Mapping Molecular Diffusion in the Plasma Membrane by Multiple-Target Tracing (MTT)

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Cited by 4 •

2012

Multiple-Target Tracing is a homemade algorithm developed for tracking individually labeled molecules within the plasma membrane of living cells. Efficiently detecting, estimating and tracing molecules over time at high-density provide a user-friendly, comprehensive tool to investigate nanoscale membrane dynamics.

Synergistic Antimicrobial Effect of Membrane-Targeting Compounds on Antibiotic-Resistant Bacteria

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2026

Take suspensions of an antibiotic-resistant strain of a pathogenic bacterium.Treat one suspension with a short, membrane-disrupting antibiotic compound and the other with both the short compound and a longer, membrane-intercalating compound.Incubate both suspensions with agitation. These compounds mimic the lipid bilayer structure, enabling their spontaneous insertion into bacterial membranes.The short compound spans only part of the membrane’s thickness, creating a structural mismatch. This...

Targeted Plasma Membrane Delivery of a Hydrophobic Cargo Encapsulated in a Liquid Crystal Nanoparticle Carrier

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Cited by 3 •

2017

A liquid crystal nanoparticle (LCNP) nanocarrier is exploited as a vehicle for the controlled delivery of a hydrophobic cargo to the plasma membrane of living cells.

Research

JoVE Journal - Biology
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Crystallizing Membrane Proteins for Structure Determination using Lipidic Mesophases

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Cited by 48 •

2010

Herein is described the procedure implemented in the Caffrey Membrane Structural and Functional Biology Group to set up manually crystallization trials of membrane proteins in lipidic mesophases.

Research

JoVE Journal - Biology
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Use of a Robot for High-throughput Crystallization of Membrane Proteins in Lipidic Mesophases

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Cited by 47 •

2012

Herein is described a robotic approach to high-throughput crystallization of membrane proteins in lipidic mesophases for use in structure determination using macromolecular X-ray crystallography. Three robots capable of handling the viscous and sticky protein-laden mesophase integral to the method are introduced.

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