Unilamellar liposomes are sphere-shaped vesicles which are artificially created from natural phospholipids and/or cholesterol to mimic the composition of bilayer plasma membrane. Giant Unilamellar Vesicles (GUVs) are enclosed compartments or “microreactors” which offers a way to study the effect of confinement on cellular systems. Here we demonstrated several preparation approaches of GUVs, namely water-in-oil droplets with microfluidics apparatus, one-pot assembly water-in-oil droplets, GUVs with gentle hydration method and GUVs with reverse emulsion method. Specifically, we highlighted the advantages and challenges of each approach in reconstituting actin cytoskeleton, in an attempt to mimic the interaction between actin and actin-binding...
Microfluidic production of giant lipid vesicles presents a paradigm-shift in the development of arti...
In vitro reconstitution of simplified biological systems from molecular parts has proven to be a pow...
Living cells are highly complex, making it an extremely challenging task to understand how they func...
Creating an artificial cell from the bottom up is a long-standing challenge and, while significant p...
Giant unilamellar vesicles (GUVs) are often used to mimic biological membranes in reconstitution exp...
To construct a simple model of a cellular system equipped with motor proteins, cell-sized giant lipo...
The reductionist approach to modern cell biology aims to identify the individual molecules and inter...
Giant unilamellar vesicles (GUVs) are frequently used as models of biological membranes and thus are...
Here, we introduce a one-pot method for the bottom-up assembly of complex single- and multicompartme...
Compartments for the spatially and temporally controlled assembly of biological processes are essent...
Synthetic biology is a rapidly growing field in which recent advances now allow the formation of min...
International audienceA simple method for the reconstitution of membrane protein from submicron prot...
AbstractThree-dimensional networks of filamentous actin (F-actin) encapsulated inside phosphatidylch...
Giant unilamellar vesicles (GUVs) have gained great popularity as mimicries for cellular membranes. ...
Construction and design of giant unilamellar vesicles Abstract Giant Unilamellar Vesicles (GUV’s) co...
Microfluidic production of giant lipid vesicles presents a paradigm-shift in the development of arti...
In vitro reconstitution of simplified biological systems from molecular parts has proven to be a pow...
Living cells are highly complex, making it an extremely challenging task to understand how they func...
Creating an artificial cell from the bottom up is a long-standing challenge and, while significant p...
Giant unilamellar vesicles (GUVs) are often used to mimic biological membranes in reconstitution exp...
To construct a simple model of a cellular system equipped with motor proteins, cell-sized giant lipo...
The reductionist approach to modern cell biology aims to identify the individual molecules and inter...
Giant unilamellar vesicles (GUVs) are frequently used as models of biological membranes and thus are...
Here, we introduce a one-pot method for the bottom-up assembly of complex single- and multicompartme...
Compartments for the spatially and temporally controlled assembly of biological processes are essent...
Synthetic biology is a rapidly growing field in which recent advances now allow the formation of min...
International audienceA simple method for the reconstitution of membrane protein from submicron prot...
AbstractThree-dimensional networks of filamentous actin (F-actin) encapsulated inside phosphatidylch...
Giant unilamellar vesicles (GUVs) have gained great popularity as mimicries for cellular membranes. ...
Construction and design of giant unilamellar vesicles Abstract Giant Unilamellar Vesicles (GUV’s) co...
Microfluidic production of giant lipid vesicles presents a paradigm-shift in the development of arti...
In vitro reconstitution of simplified biological systems from molecular parts has proven to be a pow...
Living cells are highly complex, making it an extremely challenging task to understand how they func...