We describe a stable and functional model biological membrane based on a polymerized lipid bilayer with a chemically modified surface. A polymerized lipid bilayer was formed from a mixture of two diacetylene-containing phospholipids, 1,2-bis(10,12-tricosadiynoyl)-<i>sn</i>-glycero-3-phosphocholine (DiynePC) and 1,2-bis(10,12-tricosadiynoyl)-<i>sn</i>-glycero-3-phosphoethanolamine (DiynePE). DiynePC formed a stable bilayer structure, whereas the ethanolamine headgroup of DiynePE enabled functional molecules to be grafted onto the membrane surface. Copolymerization of DiynePC and DiynePE resulted in a robust bilayer. Functionalization of the polymeric bilayer provided a route to a robust and biomimetic surface that can be linked with biomol...
Spherical polymer membranes, 3 mm in diameter were prepared by interfacial polymerization. Modificat...
AbstractWe present a new method for creating patches of fluid lipid bilayers with conjugated biotin ...
Planar solid-supported membranes based on amphiphilic block copolymers represent promising systems f...
Substrate-supported planar lipid bilayers (SPBs) are being utilized as a versatile model system of t...
AbstractAs an approach to create versatile model systems of the biological membrane we have recently...
AbstractAs an approach to create versatile model systems of the biological membrane we have recently...
Photopolymerization of diacetylene-containing amphiphiles in substrate-supported bilayers has been s...
Photopolymerization of diacetylene-containing amphiphiles in substrate-supported bilayers has been s...
Photopolymerization of diacetylene-containing amphiphiles in substrate-supported bilayers has been s...
The work described here has focused on two types of supramolecular assemblies, supported lipid bilay...
Establishing supported lipid bilayers with biologically relevant composition, including transmembran...
Phospholipid bilayers supported on a solid surface constitute a versatile, biomimetic platform for a...
Surface modification by the in situ growth of polymer chains from surface-anchored initiators (the “...
Phospholipid bilayers supported on a solid surface constitute a versatile, biomimetic platform for a...
Planar solid-supported membranes based on amphiphilic block copolymers represent promising systems f...
Spherical polymer membranes, 3 mm in diameter were prepared by interfacial polymerization. Modificat...
AbstractWe present a new method for creating patches of fluid lipid bilayers with conjugated biotin ...
Planar solid-supported membranes based on amphiphilic block copolymers represent promising systems f...
Substrate-supported planar lipid bilayers (SPBs) are being utilized as a versatile model system of t...
AbstractAs an approach to create versatile model systems of the biological membrane we have recently...
AbstractAs an approach to create versatile model systems of the biological membrane we have recently...
Photopolymerization of diacetylene-containing amphiphiles in substrate-supported bilayers has been s...
Photopolymerization of diacetylene-containing amphiphiles in substrate-supported bilayers has been s...
Photopolymerization of diacetylene-containing amphiphiles in substrate-supported bilayers has been s...
The work described here has focused on two types of supramolecular assemblies, supported lipid bilay...
Establishing supported lipid bilayers with biologically relevant composition, including transmembran...
Phospholipid bilayers supported on a solid surface constitute a versatile, biomimetic platform for a...
Surface modification by the in situ growth of polymer chains from surface-anchored initiators (the “...
Phospholipid bilayers supported on a solid surface constitute a versatile, biomimetic platform for a...
Planar solid-supported membranes based on amphiphilic block copolymers represent promising systems f...
Spherical polymer membranes, 3 mm in diameter were prepared by interfacial polymerization. Modificat...
AbstractWe present a new method for creating patches of fluid lipid bilayers with conjugated biotin ...
Planar solid-supported membranes based on amphiphilic block copolymers represent promising systems f...