Adopting fluorescence of PPIX enhanced by a split G-quadruplex and toehold mediated strand displacement reaction, a series of unlabeled fluorescent logic gates is set up and some of them are cascaded into circuits. Controlled release of PPIX, which is also a photosensitizer in photodynamic diagnosis and therapy, is realized by this circuit, making it a wise choice for DNA computing
A mechanism is developed to construct a logic system by employing DNA/gold nanoparticle (AuNP) conju...
Molecule-like silver nanoclusters (AgNCs) with few to tens of atoms are highly sensitive to the sequ...
The first application of crystal violet as a selective fluorescent switch-on probe for i-motif DNA h...
A simple, versatile, and label-free DNA computing strategy was designed by using toehold-mediated st...
Efficient and economic DNA nanomaterials that can work as logic components are necessary for the dev...
G-quadruplex has been developed as an innovator for analytical chemistry and biomedicine due to its ...
Assembly of G-quadruplexes guided by DNA triplexes in a controlled manner is achieved for the first ...
We proposed a new three-way DNA junction-driven strand displacement mode and fabricated an aptamer-b...
DNA has been used as a building block to construct a series of complex logic circuits to perform non...
DNA-based devices such as DNA logic gates self-assemble into supramolecular structures, as dictated ...
We proposed a new three-way DNA junction-driven strand displacement mode and fabricated an aptamer-b...
We introduced a four-way DNA junction-driven toehold-mediated strand displacement method. Separation...
Abstract In this paper, three kinds of three-input logic gates are designed based on DNA strand disp...
A mechanism is developed to construct a logic system by employing DNA/gold nanoparticle (AuNP) conju...
A DNA-encoding strategy is reported for the programmable regulation of the fluorescence properties o...
A mechanism is developed to construct a logic system by employing DNA/gold nanoparticle (AuNP) conju...
Molecule-like silver nanoclusters (AgNCs) with few to tens of atoms are highly sensitive to the sequ...
The first application of crystal violet as a selective fluorescent switch-on probe for i-motif DNA h...
A simple, versatile, and label-free DNA computing strategy was designed by using toehold-mediated st...
Efficient and economic DNA nanomaterials that can work as logic components are necessary for the dev...
G-quadruplex has been developed as an innovator for analytical chemistry and biomedicine due to its ...
Assembly of G-quadruplexes guided by DNA triplexes in a controlled manner is achieved for the first ...
We proposed a new three-way DNA junction-driven strand displacement mode and fabricated an aptamer-b...
DNA has been used as a building block to construct a series of complex logic circuits to perform non...
DNA-based devices such as DNA logic gates self-assemble into supramolecular structures, as dictated ...
We proposed a new three-way DNA junction-driven strand displacement mode and fabricated an aptamer-b...
We introduced a four-way DNA junction-driven toehold-mediated strand displacement method. Separation...
Abstract In this paper, three kinds of three-input logic gates are designed based on DNA strand disp...
A mechanism is developed to construct a logic system by employing DNA/gold nanoparticle (AuNP) conju...
A DNA-encoding strategy is reported for the programmable regulation of the fluorescence properties o...
A mechanism is developed to construct a logic system by employing DNA/gold nanoparticle (AuNP) conju...
Molecule-like silver nanoclusters (AgNCs) with few to tens of atoms are highly sensitive to the sequ...
The first application of crystal violet as a selective fluorescent switch-on probe for i-motif DNA h...