The development of scaffolded DNA origami, a technique in which a long single-stranded viral genome is folded into arbitrary shapes by hundreds of short synthetic oligonucleotides, represents an important milestone in DNA nanotechnology. Recent findings have revealed that two-dimensional (2D)DNA origami structures based on the original design parameters adopt a global twist with respect to the tile plane, which may be because the conformation of the constituent DNA (10.67 bp/turn) deviates from the natural B-type helical twist (10.4 bp/turn). Here we aim to characterize the effects of DNA hairpin loops on the overall curvature of the tile and explore their ability to control, and ultimately eliminate any unwanted curvature. A series of dumb...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
The rational design of complementary DNA sequences can be used to create nanostructures that self-as...
DNA origami is a powerful method for the creation of 3D nanoscale objects, and in the past few years...
The development of scaffolded DNA origami, a technique in which a long single-stranded viral genome ...
DNA origami has emerged as a versatile method to synthesize nanostructures with high precision. This...
DNA origami represents a class of highly programmable macromolecules that can go through conformatio...
DNA origami has received enormous attention for its ability to program complex nanostructures with a...
DNA origami represents a class of highly programmable macromolecules. Their moderate mechanical rigi...
ABSTRACT: Controlled nucleation of nanoscale building blocks by geometrically defined seeds implante...
© 2022 The Author(s)Two-dimensional (2D) DNA origami that is capable of self-assembling into complex...
We use the oxDNA coarse-grained model to provide a detailed characterization of the fundamental stru...
This thesis describes my investigations into the principles underlying self-assembly of DNA origami ...
DNA origami is a robust technique for the production of DNA whereby a long scaffold strand is folded...
The rational design of complementary DNA sequences can be used to create nanostructures that self-as...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
The rational design of complementary DNA sequences can be used to create nanostructures that self-as...
DNA origami is a powerful method for the creation of 3D nanoscale objects, and in the past few years...
The development of scaffolded DNA origami, a technique in which a long single-stranded viral genome ...
DNA origami has emerged as a versatile method to synthesize nanostructures with high precision. This...
DNA origami represents a class of highly programmable macromolecules that can go through conformatio...
DNA origami has received enormous attention for its ability to program complex nanostructures with a...
DNA origami represents a class of highly programmable macromolecules. Their moderate mechanical rigi...
ABSTRACT: Controlled nucleation of nanoscale building blocks by geometrically defined seeds implante...
© 2022 The Author(s)Two-dimensional (2D) DNA origami that is capable of self-assembling into complex...
We use the oxDNA coarse-grained model to provide a detailed characterization of the fundamental stru...
This thesis describes my investigations into the principles underlying self-assembly of DNA origami ...
DNA origami is a robust technique for the production of DNA whereby a long scaffold strand is folded...
The rational design of complementary DNA sequences can be used to create nanostructures that self-as...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
The rational design of complementary DNA sequences can be used to create nanostructures that self-as...
DNA origami is a powerful method for the creation of 3D nanoscale objects, and in the past few years...