Future lipid membrane-associated DNA nanostructures are expected to find applications ranging from synthetic biology to nanomedicine. Here we have designed and synthesized DNA tiles and modified them by amphiphilic covalent moieties. dod-DEG groups, which consist of a hydrophilic diethylene glycol (DEG) and a hydrophobic dodecyl group, are introduced at the phosphate backbone to create amphiphilic DNA strands which are subsequently introduced into one face of DNA tiles. In this way the tile becomes able to stably bind to lipid membranes by insertion of the hydrophobic groups inside the bilayer core. The functionalized tiles do not aggregate in solution. Our results show that these amphiphilic DNA tiles can bind and assemble into 2D lattices...
Equipping DNA with hydrophobic anchors enables targeted interaction with lipid bilayers for applicat...
the number and location of complementary basepairs and inserting repeated base sequences. Membrane-a...
We report experimental evidence of the construction of closed pseudo-hexagonal DNA nanostructures gr...
Future lipid membrane-associated DNA nanostructures are expected to find applications ranging from s...
Abstract DNA is more than a carrier of genetic information: It is a highly versatile structural moti...
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...
Recent developments in DNA nanotechnology brought rich structural and functional diversity. However,...
Much of our knowledge of cellular biology arises from direct observation of active cellular function...
Lipid bilayers and lipid-associated proteins play crucial roles in biology. As in vivo studies and m...
Lipid-anchored DNA can attach functional cargo to bilayer membranes in DNA nanotechnology, synthetic...
DNA origami nanotechnology is being increasingly used to mimic membrane-associated biophysical pheno...
In this research, interaction of amphiphilic DNA with liposome membranes was first addressed. Anchor...
Equipping DNA with hydrophobic anchors enables targeted interaction with lipid bilayers for applicat...
the number and location of complementary basepairs and inserting repeated base sequences. Membrane-a...
We report experimental evidence of the construction of closed pseudo-hexagonal DNA nanostructures gr...
Future lipid membrane-associated DNA nanostructures are expected to find applications ranging from s...
Abstract DNA is more than a carrier of genetic information: It is a highly versatile structural moti...
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...
Recent developments in DNA nanotechnology brought rich structural and functional diversity. However,...
Much of our knowledge of cellular biology arises from direct observation of active cellular function...
Lipid bilayers and lipid-associated proteins play crucial roles in biology. As in vivo studies and m...
Lipid-anchored DNA can attach functional cargo to bilayer membranes in DNA nanotechnology, synthetic...
DNA origami nanotechnology is being increasingly used to mimic membrane-associated biophysical pheno...
In this research, interaction of amphiphilic DNA with liposome membranes was first addressed. Anchor...
Equipping DNA with hydrophobic anchors enables targeted interaction with lipid bilayers for applicat...
the number and location of complementary basepairs and inserting repeated base sequences. Membrane-a...
We report experimental evidence of the construction of closed pseudo-hexagonal DNA nanostructures gr...