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- W2087496720 abstract "Eukaryotic subcellular membrane systems, such as the nuclear envelope or endoplasmic reticulum, present a rich array of architecturally and compositionally complex supramolecular targets that are as yet inaccessible. Here we describe layer-by-layer phospholipid membrane assembly on microfluidic droplets, a route to structures with defined compositional asymmetry and lamellarity. Starting with phospholipid-stabilized water-in-oil droplets trapped in a static droplet array, lipid monolayer deposition proceeds as oil/water-phase boundaries pass over the droplets. Unilamellar vesicles assembled layer-by-layer support functional insertion both of purified and of in situ expressed membrane proteins. Synthesis and chemical probing of asymmetric unilamellar and double-bilayer vesicles demonstrate the programmability of both membrane lamellarity and lipid-leaflet composition during assembly. The immobilized vesicle arrays are a pragmatic experimental platform for biophysical studies of membranes and their associated proteins, particularly complexes that assemble and function in multilamellar contexts in vivo. Immobilized microfluidic water-in-oil droplets serve as templates for layer-by-layer deposition of lipid monolayers to create vesicles of programmable lamellarity and content. Arrays of vesicles allow reproducible assembly and multi-vesicle probing of complex membrane-associated parameters, such as permeability, asymmetry and membrane protein function." @default.
- W2087496720 created "2016-06-24" @default.
- W2087496720 creator A5018062150 @default.
- W2087496720 creator A5068171984 @default.
- W2087496720 date "2013-09-29" @default.
- W2087496720 modified "2023-09-28" @default.
- W2087496720 title "Layer-by-layer cell membrane assembly" @default.
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- W2087496720 doi "https://doi.org/10.1038/nchem.1765" @default.
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