Bending membranes on demand: fluid phospholipid bilayers on topographically deformable substrates.

Sanii, Babak; Smith, Andreia Michelle; Butti, Ravichandra; Brozell, Adrian M; Parikh, Atul N · Nano Lett · 2008

basic_science · Level V

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Abstract

We combine hierarchical surface wrinkling of elastomers with lipid membrane deposition techniques to dynamically template complex three-dimensional topographies onto supported lipid bilayers. The real-time introduction of corresponding nano- to micrometer scale curvatures triggers spatially periodic, elastic bending of the bilayer, accompanied by molecular-level reorganizations. This ability to dynamically impose curvatures on supported bilayers and the ensuing re-equilibration promises fundamental material and biophysical investigations of curvature-dependent, static heterogeneities and dynamic reorganizations pervasive in biological membranes.

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