DNA nanotechnology provides methods for building custom membrane-interacting nanostructures with diverse functions, such as shaping membranes, tethering defined numbers of membrane proteins, and transmembrane nanopores. The modification of DNA nanostructures with hydrophobic groups, such as cholesterol, is required to facilitate membrane interactions. However, cholesterol-induced aggregation of DNA origami nanostructures remains a challenge. Aggregation can result in reduced assembly yield, defective structures, and the inhibition of membrane interaction. Here, we quantify the assembly yield of two cholesterol-modified DNA origami nanostructures: a 2D DNA origami tile (DOT) and a 3D DNA origami barrel (DOB), by gel electrophoresis. We found...
DNA nanotechnology enables the precise construction of nanoscale devices that mimic aspects of natur...
Much of our knowledge of cellular biology arises from direct observation of active cellular function...
We have developed novel techniques for manufacturing vesicles with predefined attachments to scaffol...
DNA nanotechnology allows for the programmable self-assembly of nanostructures of arbitrary shapes a...
DNA origami nanotechnology is being increasingly used to mimic membrane-associated biophysical pheno...
Biological membranes fulfill many important tasks within living organisms. In addition to separating...
DNA origami nanotechnology is being increasingly used to mimic membrane-associated biophysical pheno...
DNA origami is a state-of-the-art technology that enables the fabrication of nano-objects with defin...
DNA nanotechnology allows for the design of programmable DNA-built nanodevices which controllably in...
We report a synthetic biology-inspired approach for the engineering of amphipathic DNA origami struc...
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...
DNA nanostructures are powerful tools for synthetic biology with great promise as drug delivery devi...
DNA nanotechnology allows for the design of programmable DNA-built nanodevices which controllably in...
Lipids are important building blocks in cellular compartments, and therefore their self‐assembly int...
DNA nanotechnology enables the precise construction of nanoscale devices that mimic aspects of natur...
Much of our knowledge of cellular biology arises from direct observation of active cellular function...
We have developed novel techniques for manufacturing vesicles with predefined attachments to scaffol...
DNA nanotechnology allows for the programmable self-assembly of nanostructures of arbitrary shapes a...
DNA origami nanotechnology is being increasingly used to mimic membrane-associated biophysical pheno...
Biological membranes fulfill many important tasks within living organisms. In addition to separating...
DNA origami nanotechnology is being increasingly used to mimic membrane-associated biophysical pheno...
DNA origami is a state-of-the-art technology that enables the fabrication of nano-objects with defin...
DNA nanotechnology allows for the design of programmable DNA-built nanodevices which controllably in...
We report a synthetic biology-inspired approach for the engineering of amphipathic DNA origami struc...
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...
DNA nanostructures are powerful tools for synthetic biology with great promise as drug delivery devi...
DNA nanotechnology allows for the design of programmable DNA-built nanodevices which controllably in...
Lipids are important building blocks in cellular compartments, and therefore their self‐assembly int...
DNA nanotechnology enables the precise construction of nanoscale devices that mimic aspects of natur...
Much of our knowledge of cellular biology arises from direct observation of active cellular function...
We have developed novel techniques for manufacturing vesicles with predefined attachments to scaffol...