Artificial lipid-bilayer membranes are valuable tools for the study of membrane structure and dynamics. For applications such as studying vesicular transport and drug delivery, there is a pressing need for artificial vesicles with controlled size. However, controlling vesicle size and shape with nanometer precision is challenging and approaches to achieve this can be heavily affected by lipid composition. Here we present a bio-inspired templating method to generate highly monodispersed sub-100nm unilamellar vesicles, where liposome self-assembly was nucleated and confined inside rigid DNA nanotemplates. Using this method we produced homogenous liposomes with four distinct pre-defined sizes. We also show that the method can be used with a va...
DNA NanotechnologyModelling the structure and behaviour of vesicles in cells requires liposomes with...
We report experimental evidence of the construction of closed pseudo-hexagonal DNA nanostructures gr...
DNA nanotechnology enables the construction of sophisticated biomimetic nanomachines that are increa...
Over the last decade, functionally designed DNA nanostructures applied to lipid membranes prompted i...
We have developed novel techniques for manufacturing vesicles with predefined attachments to scaffol...
Lipid bilayers and lipid-associated proteins play crucial roles in biology. As in vivo studies and m...
Lipid bilayers and lipid-associated proteins play crucial roles in biology. As in vivo studies and m...
Lipid bilayers and lipid-associated proteins play crucial roles in biology. As in vivo studies and m...
AbstractOver the last decade, functionally designed DNA nanostructures applied to lipid membranes pr...
Lipid bilayers and lipid-associated proteins play crucial roles in biology. As in vivo studies and m...
Cell membranes regulate the distribution of biological machinery between phase-separated lipid domai...
The plasma membrane of cells has evolved to mediate a broad array of functionalities critical to lif...
Over the last decade, functionally designed DNA nanostructures applied to lipid membranes prompted i...
AbstractOver the last decade, functionally designed DNA nanostructures applied to lipid membranes pr...
The self-assembly of the protein clathrin on biological membranes facilitates essential processes of...
DNA NanotechnologyModelling the structure and behaviour of vesicles in cells requires liposomes with...
We report experimental evidence of the construction of closed pseudo-hexagonal DNA nanostructures gr...
DNA nanotechnology enables the construction of sophisticated biomimetic nanomachines that are increa...
Over the last decade, functionally designed DNA nanostructures applied to lipid membranes prompted i...
We have developed novel techniques for manufacturing vesicles with predefined attachments to scaffol...
Lipid bilayers and lipid-associated proteins play crucial roles in biology. As in vivo studies and m...
Lipid bilayers and lipid-associated proteins play crucial roles in biology. As in vivo studies and m...
Lipid bilayers and lipid-associated proteins play crucial roles in biology. As in vivo studies and m...
AbstractOver the last decade, functionally designed DNA nanostructures applied to lipid membranes pr...
Lipid bilayers and lipid-associated proteins play crucial roles in biology. As in vivo studies and m...
Cell membranes regulate the distribution of biological machinery between phase-separated lipid domai...
The plasma membrane of cells has evolved to mediate a broad array of functionalities critical to lif...
Over the last decade, functionally designed DNA nanostructures applied to lipid membranes prompted i...
AbstractOver the last decade, functionally designed DNA nanostructures applied to lipid membranes pr...
The self-assembly of the protein clathrin on biological membranes facilitates essential processes of...
DNA NanotechnologyModelling the structure and behaviour of vesicles in cells requires liposomes with...
We report experimental evidence of the construction of closed pseudo-hexagonal DNA nanostructures gr...
DNA nanotechnology enables the construction of sophisticated biomimetic nanomachines that are increa...