Supported lipid bilayers are widely used for sensing and deciphering biomolecular interactions with model cell membranes. In this paper, we present a method to form supported lipid bilayers from total lipid extracts of Escherichia coli by vesicle fusion. We show the validity of this method for different types of extracts including those from deuterated biomass using a combination of complementary surface sensitive techniques; quartz crystal microbalance, neutron reflection and atomic force microscopy. We find that the head group composition of the deuterated and the hydrogenated lipid extracts is similar (approximately 75% phosphatidylethanolamine, 13% phosphatidylglycerol and 12% cardiolipin) and that both samples can be used to reconstitu...
Although neutron reflectometry has been used to study surfaces and interfaces for decades, recent ad...
Formation of supported lipid bilayer (SLB) and additional structures of Escherichia coli (E. coli) l...
Cell membranes are typically very complex, consisting of a multitude of different lipids and protein...
Supported lipid bilayers are widely used for sensing and deciphering biomolecular interactions with ...
<div><p>Supported lipid bilayers are widely used for sensing and deciphering biomolecular interactio...
Supported lipid bilayers are widely used for sensing and deciphering biomolecular interac-tions with...
We describe a simple way of fusing E. coli lipid vesicles onto a gold surface. Supported lipid bilay...
Cholesterol is an essential component of mammalian membranes and is known to induce a series of phys...
Cholesterol is an essential component of mammalian membranes and is known to induce a series of phys...
In this review, the authors discuss the challenges of studying supported lipid bilayers (SLBs) depos...
Supported lipid membranes provide the natural environment for cell membrane constituents such as tra...
Cholesterol is an essential component of mammalian membranes and is known to induce a series of phys...
Solid-supported bilayer lipid membranes (SBLMs) containing membrane protein have been generated thro...
Lipid bilayers are a central component of both the structure and function of biological membranes, l...
The structure and formation of supported membranes at silica surfaces by vesicle fusion was investig...
Although neutron reflectometry has been used to study surfaces and interfaces for decades, recent ad...
Formation of supported lipid bilayer (SLB) and additional structures of Escherichia coli (E. coli) l...
Cell membranes are typically very complex, consisting of a multitude of different lipids and protein...
Supported lipid bilayers are widely used for sensing and deciphering biomolecular interactions with ...
<div><p>Supported lipid bilayers are widely used for sensing and deciphering biomolecular interactio...
Supported lipid bilayers are widely used for sensing and deciphering biomolecular interac-tions with...
We describe a simple way of fusing E. coli lipid vesicles onto a gold surface. Supported lipid bilay...
Cholesterol is an essential component of mammalian membranes and is known to induce a series of phys...
Cholesterol is an essential component of mammalian membranes and is known to induce a series of phys...
In this review, the authors discuss the challenges of studying supported lipid bilayers (SLBs) depos...
Supported lipid membranes provide the natural environment for cell membrane constituents such as tra...
Cholesterol is an essential component of mammalian membranes and is known to induce a series of phys...
Solid-supported bilayer lipid membranes (SBLMs) containing membrane protein have been generated thro...
Lipid bilayers are a central component of both the structure and function of biological membranes, l...
The structure and formation of supported membranes at silica surfaces by vesicle fusion was investig...
Although neutron reflectometry has been used to study surfaces and interfaces for decades, recent ad...
Formation of supported lipid bilayer (SLB) and additional structures of Escherichia coli (E. coli) l...
Cell membranes are typically very complex, consisting of a multitude of different lipids and protein...