A mechanism is developed to construct a logic system by employing DNA/gold nanoparticle (AuNP) conjugates as a basic work unit, utilizing a fluorescent beacon probe to detect output signals. To implement the logic circuit, a self-assembly DNA structure is attached onto nanoparticles to form the fluorescent beacon. Moreover, assisted by regulation of multilevel strand displacement, cascaded logic gates are achieved. The computing results are detected by methods using fluorescent signals, gel electrophoresis and transmission electron microscope (TEM). This work is expected to demonstrate the feasibility of the cascaded logic system based on fluorescent nanoparticle beacons, suggesting applications in DNA computation and biotechnology
Molecular logic gates in response to chemical, biological, or optical input signals at a molecular l...
Sequential DNA detection is a fundamental issue for elucidating the interactive relationships among ...
In this work, gold nanoparticles perform Boolean logic operations in response to two proangiogenic t...
A mechanism is developed to construct a logic system by employing DNA/gold nanoparticle (AuNP) conju...
Recently, the toehold-mediated DNA strand displacement reaction has been widely used in detecting mo...
Recently, the toehold-mediated DNA strand displacement reaction has been widely used in detecting mo...
A DNA-encoding strategy is reported for the programmable regulation of the fluorescence properties o...
Efficient and economic DNA nanomaterials that can work as logic components are necessary for the dev...
In this paper, a logic computing model was constructed using a DNA nanoparticle, combined with color...
Circular DNA logic gates were constructed on the basis of DNA three-way branch migration. In this lo...
DNA nanotechnology has been developed in order to construct nanostructures and nanomachines by virt...
In molecular engineering, DNA molecules have been extensively studied owing to their capacity for ac...
Controlling DNA self-assembly processes using rationally designed logic gates is a major goal of DNA...
A simple, versatile, and label-free DNA computing strategy was designed by using toehold-mediated st...
In molecular engineering, DNA molecules have been extensively studied owing to their capacity for ac...
Molecular logic gates in response to chemical, biological, or optical input signals at a molecular l...
Sequential DNA detection is a fundamental issue for elucidating the interactive relationships among ...
In this work, gold nanoparticles perform Boolean logic operations in response to two proangiogenic t...
A mechanism is developed to construct a logic system by employing DNA/gold nanoparticle (AuNP) conju...
Recently, the toehold-mediated DNA strand displacement reaction has been widely used in detecting mo...
Recently, the toehold-mediated DNA strand displacement reaction has been widely used in detecting mo...
A DNA-encoding strategy is reported for the programmable regulation of the fluorescence properties o...
Efficient and economic DNA nanomaterials that can work as logic components are necessary for the dev...
In this paper, a logic computing model was constructed using a DNA nanoparticle, combined with color...
Circular DNA logic gates were constructed on the basis of DNA three-way branch migration. In this lo...
DNA nanotechnology has been developed in order to construct nanostructures and nanomachines by virt...
In molecular engineering, DNA molecules have been extensively studied owing to their capacity for ac...
Controlling DNA self-assembly processes using rationally designed logic gates is a major goal of DNA...
A simple, versatile, and label-free DNA computing strategy was designed by using toehold-mediated st...
In molecular engineering, DNA molecules have been extensively studied owing to their capacity for ac...
Molecular logic gates in response to chemical, biological, or optical input signals at a molecular l...
Sequential DNA detection is a fundamental issue for elucidating the interactive relationships among ...
In this work, gold nanoparticles perform Boolean logic operations in response to two proangiogenic t...