» Articles » PMID: 19027712

Visualization of Lipid Domains in Giant Unilamellar Vesicles Using an Environment-sensitive Membrane Probe Based on 3-hydroxyflavone

Overview
Specialties Biochemistry
Biophysics
Date 2008 Nov 26
PMID 19027712
Citations 20
Authors
Affiliations
Soon will be listed here.
Abstract

We characterized the recently introduced environment-sensitive fluorescent membrane probe based on 3-hydroxyflavone, F2N12S, in model lipid membranes displaying liquid disordered (Ld) phase, liquid ordered (Lo) phase, or their coexistence. Steady-state fluorescence studies in large unilamellar vesicles show that the probe dual emission drastically changes with the lipid bilayer phase, which can be correlated with the difference in their hydration. Using two-photon excitation microscopy on giant unilamellar vesicles, the F2N12S probe was found to bind both Ld and Lo phases, allowing visualization of the individual phases from the fluorescence intensity ratio of its two emission bands. By using a linearly polarized excitation light, a strong photoselection was observed for F2N12S in the Lo phase, indicating that its fluorophore is nearly parallel to the lipid chains of the bilayer. In contrast, the absence of the photoselection with the Ld phase indicated no predominant orientation of the probe in the Ld phase. Comparison of the present results with those reported previously for F2N12S in living cells suggests a high content of the Lo phase in the outer leaflet of the cell plasma membranes. Taking into account the high selectivity of F2N12S for the cell plasma membranes and its suitability for both single- and two-photon excitation, applications of this probe to study membrane lateral heterogeneity in biological membranes are foreseen.

Citing Articles

Lipid Rafts in Signalling, Diseases, and Infections: What Can Be Learned from Fluorescence Techniques?.

Anselmo S, Bonaccorso E, Gangemi C, Sancataldo G, Conti Nibali V, DAngelo G Membranes (Basel). 2025; 15(1).

PMID: 39852247 PMC: 11766618. DOI: 10.3390/membranes15010006.


Design and Development of Ophthalmic Liposomes from the QbD Perspective.

Pawar K, Shaikh K Curr Pharm Des. 2024; 30(30):2364-2377.

PMID: 39021195 DOI: 10.2174/0113816128302570240627113909.


Binding-induced lipid domains: Peptide-membrane interactions with PIP and PS.

Al-Mualem Z, Chen X, Shafieenezhad A, Senning E, Baiz C Biophys J. 2023; 123(14):2001-2011.

PMID: 38142298 PMC: 11309973. DOI: 10.1016/j.bpj.2023.12.019.


3-Hydroxyflavone derivatives: promising scaffolds for fluorescent imaging in cells.

Zhao X, Li X, Liang S, Dong X, Zhang Z RSC Adv. 2022; 11(46):28851-28862.

PMID: 35478549 PMC: 9038104. DOI: 10.1039/d1ra04767a.


HydroFlipper membrane tension probes: imaging membrane hydration and mechanical compression simultaneously in living cells.

Garcia-Calvo J, Lopez-Andarias J, Maillard J, Mercier V, Roffay C, Roux A Chem Sci. 2022; 13(7):2086-2093.

PMID: 35308858 PMC: 8849034. DOI: 10.1039/d1sc05208j.