Liposomes, self-assembled vesicles with a lipid-bilayer boundary similar to cell membranes, are extensively used in both fundamental and applied sciences. Manipulation of their physical properties, such as growth and division, may significantly expand their use as model systems in cellular and synthetic biology. Several approaches have been explored to controllably divide liposomes, such as shape transformation through temperature cycling, incorporation of additional lipids, and the encapsulation of protein division machinery. However, so far, these methods lacked control, exhibited low efficiency, and yielded asymmetric division in terms of volume or lipid composition. Here, we present a microfluidics-based strategy to realize mechanical d...
Cell-sized vesicles like giant unilamellar vesicles (GUVs) are established as a promising biomimetic...
In this work we present the formation of micrometre-sized lipid vesicles and tubes with perfectly ho...
Cell division is one of the hallmarks of life. Success in the bottom-up assembly of synthetic cells ...
Liposomes, self-assembled vesicles with a lipid-bilayer boundary similar to cell membranes, are exte...
Liposomes, self-assembled vesicles with a lipid-bilayer boundary similar to cell membranes, are exte...
Living cells are highly complex, making it an extremely challenging task to understand how they func...
Liposomes are versatile supramolecular assemblies widely used in basic and applied sciences. Here we...
Due to their cell membrane-mimicking properties, liposomes have served as a versatile research tool ...
In this protocol, we describe a recently developed on-chip microfluidic method to form monodisperse,...
Compartments for the spatially and temporally controlled assembly of biological processes are essent...
Since the inception of nanocarriers as drug delivery agents, liposomes stood out as a suitable candi...
Asymmetric cell division is common in biology and plays critical roles in differentiation and develo...
dissertationLiposomes are small vesicles filled with an aqueous solvent, bounded by a fluid shell th...
Liposomes constitute a class of prominent drug delivery systems due their cell-mimetic behaviour. No...
Cell-sized vesicles like giant unilamellar vesicles (GUVs) are established as a promising biomimetic...
In this work we present the formation of micrometre-sized lipid vesicles and tubes with perfectly ho...
Cell division is one of the hallmarks of life. Success in the bottom-up assembly of synthetic cells ...
Liposomes, self-assembled vesicles with a lipid-bilayer boundary similar to cell membranes, are exte...
Liposomes, self-assembled vesicles with a lipid-bilayer boundary similar to cell membranes, are exte...
Living cells are highly complex, making it an extremely challenging task to understand how they func...
Liposomes are versatile supramolecular assemblies widely used in basic and applied sciences. Here we...
Due to their cell membrane-mimicking properties, liposomes have served as a versatile research tool ...
In this protocol, we describe a recently developed on-chip microfluidic method to form monodisperse,...
Compartments for the spatially and temporally controlled assembly of biological processes are essent...
Since the inception of nanocarriers as drug delivery agents, liposomes stood out as a suitable candi...
Asymmetric cell division is common in biology and plays critical roles in differentiation and develo...
dissertationLiposomes are small vesicles filled with an aqueous solvent, bounded by a fluid shell th...
Liposomes constitute a class of prominent drug delivery systems due their cell-mimetic behaviour. No...
Cell-sized vesicles like giant unilamellar vesicles (GUVs) are established as a promising biomimetic...
In this work we present the formation of micrometre-sized lipid vesicles and tubes with perfectly ho...
Cell division is one of the hallmarks of life. Success in the bottom-up assembly of synthetic cells ...