Although a number of dynamically-controlled nanostructures and programmable DNA Strand Displacement (DSD) systems have been designed using DNA strand displacement, predictability and scalability of these DNA-based systems remain limited due to leakages introduced by spuriously triggered displacement events. We present a systematic design method for implementing leak-resistant DNA strand displacement systems in which each legitimate displacement event requires signal species to bind cooperatively at the two designated toehold binding sites in the protected fuel complexes, and thus inhibits spurious displacement events. To demonstrate the potential of the leak-resistant design approach for the construction of arbitrary complex digital circuit...
DNA strand displacement technique is widely used in DNA programming, DNA biosensors, and gene analys...
DNA strand displacement technique is widely used in DNA programming, DNA biosensors, and gene analys...
DNA strand displacement has been used to construct a variety of components, devices, and circuits. T...
Although a number of dynamically-controlled nanostructures and programmable DNA Strand Displacement ...
Abstract. While current experimental demonstrations have been lim-ited to small computational tasks,...
While current experimental demonstrations have been limited to small computational tasks, DNA strand...
Artificially designed molecular systems with programmable behaviors have become a valuable tool in c...
DNA strand displacement cascades have proven to be a uniquely flexible and programmable primitive fo...
A barrier to wider adoption of molecular computation is the difficulty of implementing arbitrary che...
DNA strand displacement (DSD) has recently become a common technology for constructing molecular dev...
Dynamic DNA nanotechnology, a subfield of DNA nanotechnology, is concerned with the study and applic...
DNA Strand Displacement (DSD) systems model basic reaction rules, such as toehold-mediated strand di...
DNA strand displacement systems have transformative potential in synthetic biology. While powerful e...
Most of the dynamic DNA devices are rationally constructed by utilizing toehold-mediated DNA strand ...
<div><p>DNA is increasingly being used as an ideal material for the construction of nanoscale struct...
DNA strand displacement technique is widely used in DNA programming, DNA biosensors, and gene analys...
DNA strand displacement technique is widely used in DNA programming, DNA biosensors, and gene analys...
DNA strand displacement has been used to construct a variety of components, devices, and circuits. T...
Although a number of dynamically-controlled nanostructures and programmable DNA Strand Displacement ...
Abstract. While current experimental demonstrations have been lim-ited to small computational tasks,...
While current experimental demonstrations have been limited to small computational tasks, DNA strand...
Artificially designed molecular systems with programmable behaviors have become a valuable tool in c...
DNA strand displacement cascades have proven to be a uniquely flexible and programmable primitive fo...
A barrier to wider adoption of molecular computation is the difficulty of implementing arbitrary che...
DNA strand displacement (DSD) has recently become a common technology for constructing molecular dev...
Dynamic DNA nanotechnology, a subfield of DNA nanotechnology, is concerned with the study and applic...
DNA Strand Displacement (DSD) systems model basic reaction rules, such as toehold-mediated strand di...
DNA strand displacement systems have transformative potential in synthetic biology. While powerful e...
Most of the dynamic DNA devices are rationally constructed by utilizing toehold-mediated DNA strand ...
<div><p>DNA is increasingly being used as an ideal material for the construction of nanoscale struct...
DNA strand displacement technique is widely used in DNA programming, DNA biosensors, and gene analys...
DNA strand displacement technique is widely used in DNA programming, DNA biosensors, and gene analys...
DNA strand displacement has been used to construct a variety of components, devices, and circuits. T...