Styrene-alt-maleic acid lipid particles (SMALPs) are self-assembled discoidal structures composed of a polymer belt and a segment of lipid bilayer, which are capable of encapsulating membrane proteins directly from the cell membrane. Here we present evidence of the exchange of lipids between such "nanodiscs" and lipid monolayers adsorbed at either solid-liquid or air-liquid interfaces. This behavior has important implications for the potential uses of nanodiscs.</p
Polymer-stabilized phospholipid nanodiscs are nanoscale, discoidal assemblies containing a central c...
Cell membranes separate the inside and outside of cells. Membrane proteins in the cell membrane cont...
Polymerâ based nanodiscs are valuable tools in biomedical research that can offer a detergentâ fre...
Styrene-alt-maleic acid lipid particles (SMALPs) are self-assembled discoidal structures composed of...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
CITATION: Overduin, M. & Klumperman, B. 2019. Advancing membrane biology with poly(styrene-co-maleic...
International audienceRecently, styrene-maleic acid copolymer lipid nanodiscs have become an increas...
Lipid nanodiscs formed by mixtures of styrene maleic acid (SMA) copolymers and lipid membranes are i...
Hypothesis: Self-assembly of amphipathic styrene maleic acid copolymers with phospholipids in aqueou...
International audienceSome styrene/maleic acid (SMA) copolymers solubilise membrane lipids and prote...
Hypothesis Self-assembly of amphipathic styrene maleic acid copolymers with phospholipids in aqueous...
Styrene-and-maleic acid copolymers (SMA) are gaining interest in membrane protein research due to th...
The fundamental importance of membrane proteins in drug discovery has meant that membrane mimetic sy...
Experimental characterization of membrane proteins often requires solubilization. A recent approach ...
In the past few years there has been a growth in the use of nanoparticles for stabilizing lipid memb...
Polymer-stabilized phospholipid nanodiscs are nanoscale, discoidal assemblies containing a central c...
Cell membranes separate the inside and outside of cells. Membrane proteins in the cell membrane cont...
Polymerâ based nanodiscs are valuable tools in biomedical research that can offer a detergentâ fre...
Styrene-alt-maleic acid lipid particles (SMALPs) are self-assembled discoidal structures composed of...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
CITATION: Overduin, M. & Klumperman, B. 2019. Advancing membrane biology with poly(styrene-co-maleic...
International audienceRecently, styrene-maleic acid copolymer lipid nanodiscs have become an increas...
Lipid nanodiscs formed by mixtures of styrene maleic acid (SMA) copolymers and lipid membranes are i...
Hypothesis: Self-assembly of amphipathic styrene maleic acid copolymers with phospholipids in aqueou...
International audienceSome styrene/maleic acid (SMA) copolymers solubilise membrane lipids and prote...
Hypothesis Self-assembly of amphipathic styrene maleic acid copolymers with phospholipids in aqueous...
Styrene-and-maleic acid copolymers (SMA) are gaining interest in membrane protein research due to th...
The fundamental importance of membrane proteins in drug discovery has meant that membrane mimetic sy...
Experimental characterization of membrane proteins often requires solubilization. A recent approach ...
In the past few years there has been a growth in the use of nanoparticles for stabilizing lipid memb...
Polymer-stabilized phospholipid nanodiscs are nanoscale, discoidal assemblies containing a central c...
Cell membranes separate the inside and outside of cells. Membrane proteins in the cell membrane cont...
Polymerâ based nanodiscs are valuable tools in biomedical research that can offer a detergentâ fre...