Recently, the toehold-mediated DNA strand displacement reaction has been widely used in detecting molecular signals. However, traditional strand displacement, without cooperative signaling among DNA inputs, is insufficient for the design of more complicated nanodevices. In this work, a logic computing system is established using the cooperative "binding-induced" mechanism, based on the AuNP-based beacons, in which five kinds of multiple-input logic gates have been constructed. This system can recognize DNA and protein streptavidin simultaneously. Finally, the manipulations of the logic system are also demonstrated by controlling programmed conjugate DNA/AuNP clusters. This study provides the possibility of detecting multiple input...
Controlling DNA self-assembly processes using rationally designed logic gates is a major goal of DNA...
Efficient and economic DNA nanomaterials that can work as logic components are necessary for the dev...
The construction of compact and robust artificial biochemical circuits based on nucleic acids can he...
Recently, the toehold-mediated DNA strand displacement reaction has been widely used in detecting mo...
A mechanism is developed to construct a logic system by employing DNA/gold nanoparticle (AuNP) conju...
A mechanism is developed to construct a logic system by employing DNA/gold nanoparticle (AuNP) conju...
In this paper, a logic computing model was constructed using a DNA nanoparticle, combined with color...
A DNA-encoding strategy is reported for the programmable regulation of the fluorescence properties o...
DNA nanotechnology has been developed in order to construct nanostructures and nanomachines by virt...
Circular DNA logic gates were constructed on the basis of DNA three-way branch migration. In this lo...
Sequential DNA detection is a fundamental issue for elucidating the interactive relationships among ...
Molecular circuits capable of implementing Boolean logic in cellular environments have emerged as an...
Abstract Nucleic acids are natural macromolecules with the ability to store and transmit information...
In molecular engineering, DNA molecules have been extensively studied owing to their capacity for ac...
DNA nanostructures constitute attractive devices for logic computing and nanomechanics. An emerging ...
Controlling DNA self-assembly processes using rationally designed logic gates is a major goal of DNA...
Efficient and economic DNA nanomaterials that can work as logic components are necessary for the dev...
The construction of compact and robust artificial biochemical circuits based on nucleic acids can he...
Recently, the toehold-mediated DNA strand displacement reaction has been widely used in detecting mo...
A mechanism is developed to construct a logic system by employing DNA/gold nanoparticle (AuNP) conju...
A mechanism is developed to construct a logic system by employing DNA/gold nanoparticle (AuNP) conju...
In this paper, a logic computing model was constructed using a DNA nanoparticle, combined with color...
A DNA-encoding strategy is reported for the programmable regulation of the fluorescence properties o...
DNA nanotechnology has been developed in order to construct nanostructures and nanomachines by virt...
Circular DNA logic gates were constructed on the basis of DNA three-way branch migration. In this lo...
Sequential DNA detection is a fundamental issue for elucidating the interactive relationships among ...
Molecular circuits capable of implementing Boolean logic in cellular environments have emerged as an...
Abstract Nucleic acids are natural macromolecules with the ability to store and transmit information...
In molecular engineering, DNA molecules have been extensively studied owing to their capacity for ac...
DNA nanostructures constitute attractive devices for logic computing and nanomechanics. An emerging ...
Controlling DNA self-assembly processes using rationally designed logic gates is a major goal of DNA...
Efficient and economic DNA nanomaterials that can work as logic components are necessary for the dev...
The construction of compact and robust artificial biochemical circuits based on nucleic acids can he...