Nature uses non-covalent interactions to achieve structural dynamic reconfiguration of biopolymers. Taking advantage of the programmability of DNA/DNA interactions we report here the rational design of orthogonal DNA-based addressable tiles that self-assemble into polymer-like structures that can be reconfigured by external inputs. The different tiles share the same sticky ends responsible for self-assembly but are rationally designed to contain a specific regulator-binding domain that can be orthogonally targeted by different DNA regulator strands. We show that by sequentially adding specific inputs it is possible to re-organize the formed structures to display well-defined distributions: homopolymers, random and block structures. The vers...
Smart electronics have developed ubiquitously to assist people in everything from navigation to heal...
DNA nanotechnology has emerged as a reliable and programmable way of controlling matter at the nano...
Creating soft materials with the tunable hierarchical structures observed in nature remains an enorm...
Nature uses non-covalent interactions to achieve structural dynamic reconfiguration of biopolymers. ...
Nature uses non-covalent interactions to achieve structural dynamic reconfiguration of biopolymers. ...
We present a set of DNA supramolecular architectures based on the polymerization of discrete DNA til...
We demonstrate a strategy that allows for the spontaneous reconfiguration of self-assembled DNA poly...
We demonstrate a strategy that allows for the spontaneous reconfiguration of self-assembled DNA poly...
DNA is the molecule that encodes the hereditary information in living organisms. In the last years, ...
Adding shape and interaction anisotropy to a colloidal particle offers exquisitely tunable routes to...
To exert its role of a functional polymer, DNA relies on a molecular self-assembly process that is d...
In this paper we report the design and synthesis of DNA molecules (referred to as DNA tiles) with ...
Nucleic acids have proven to be remarkably versatile as an engineering material for chemical tasks i...
We demonstrate a strategy to trigger and finely control the assembly of supramolecular DNA nanostruc...
Experimental demonstration of the Turing univer-sal tile based algorithmic DNA self-assembly has bee...
Smart electronics have developed ubiquitously to assist people in everything from navigation to heal...
DNA nanotechnology has emerged as a reliable and programmable way of controlling matter at the nano...
Creating soft materials with the tunable hierarchical structures observed in nature remains an enorm...
Nature uses non-covalent interactions to achieve structural dynamic reconfiguration of biopolymers. ...
Nature uses non-covalent interactions to achieve structural dynamic reconfiguration of biopolymers. ...
We present a set of DNA supramolecular architectures based on the polymerization of discrete DNA til...
We demonstrate a strategy that allows for the spontaneous reconfiguration of self-assembled DNA poly...
We demonstrate a strategy that allows for the spontaneous reconfiguration of self-assembled DNA poly...
DNA is the molecule that encodes the hereditary information in living organisms. In the last years, ...
Adding shape and interaction anisotropy to a colloidal particle offers exquisitely tunable routes to...
To exert its role of a functional polymer, DNA relies on a molecular self-assembly process that is d...
In this paper we report the design and synthesis of DNA molecules (referred to as DNA tiles) with ...
Nucleic acids have proven to be remarkably versatile as an engineering material for chemical tasks i...
We demonstrate a strategy to trigger and finely control the assembly of supramolecular DNA nanostruc...
Experimental demonstration of the Turing univer-sal tile based algorithmic DNA self-assembly has bee...
Smart electronics have developed ubiquitously to assist people in everything from navigation to heal...
DNA nanotechnology has emerged as a reliable and programmable way of controlling matter at the nano...
Creating soft materials with the tunable hierarchical structures observed in nature remains an enorm...