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Leaflet‐Specific Structure and Dynamics of Solid and Polymer Supported Lipid Bilayers
Author(s) -
Karedla Narain,
Schneider Falk,
Enderlein Jörg,
Chen Tao
Publication year - 2025
Publication title -
angewandte chemie international edition
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.831
H-Index - 550
eISSN - 1521-3773
pISSN - 1433-7851
DOI - 10.1002/anie.202423784
Subject(s) - lipid bilayer , membrane , polymer , chemical physics , materials science , dynamics (music) , biophysics , substrate (aquarium) , molecular dynamics , diffusion , nanotechnology , chemistry , computational chemistry , biology , physics , biochemistry , composite material , acoustics , ecology , thermodynamics
Abstract Polymer‐supported or tethered lipid bilayers serve as versatile platforms for mimicking plasma membrane structure and dynamics, yet the impact of polymer supports on lipid bilayers remains largely unresolved. In this study, we introduce a novel methodology that combines graphene‐induced energy transfer (GIET) with line‐scan fluorescence lifetime correlation spectroscopy (lsFLCS) to examine the structural and dynamic properties of lipid bilayers. Our findings reveal that polymer supports markedly influence both the structural parameters, such as the membrane height from the substrate, its thickness, as well as dynamic properties, including leaflet‐specific diffusion coefficients and interleaflet coupling. These findings highlight the complex interplay between a polymer support and the lipid bilayers. By resolving leaflet‐specific diffusion and heights of the two leaflets from the substrate, this study emphasizes the potential of GIET‐lsFLCS for probing membrane dynamics and structure. These insights significantly advance the understanding and application of polymer‐supported membranes across diverse research contexts.

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