Artificially designed molecular systems with programmable behaviors have become a valuable tool in chemistry, biology, material science, and medicine. Although information processing in biological regulatory pathways is remarkably robust to error, it remains a challenge to design molecular systems that are similarly robust. With functionality determined entirely by secondary structure of DNA, strand displacement has emerged as a uniquely versatile building block for cell-free biochemical networks. Here, we experimentally investigate a design principle to reduce undesired triggering in the absence of input (leak), a side reaction that critically reduces sensitivity and disrupts the behavior of strand displacement cascades. Inspired by error ...
Nucleic acids are a powerful engineering material that can be used to implement a broad range of com...
The prospects of programming molecular systems to perform complex autonomous tasks have motivated re...
DNA Strand Displacement (DSD) systems model basic reaction rules, such as toehold-mediated strand di...
Artificially designed molecular systems with programmable behaviors have become a valuable tool in c...
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...
Although a number of dynamically-controlled nanostructures and programmable DNA Strand Displacement ...
DNA strand displacement systems have transformative potential in synthetic biology. While powerful e...
DNA strand displacement cascades have proven to be a uniquely flexible and programmable primitive fo...
Biochemical circuits made of rationally designed DNA molecules are proofs of concept for embedding c...
Nucleic acids are information-dense, programmable polymers that can be engineered into primers, prob...
A barrier to wider adoption of molecular computation is the difficulty of implementing arbitrary che...
Biological organisms perform complex information processing and control tasks using sophisticated bi...
DNA strand displacement circuits are powerful tools that can be rationally engineered to implement m...
This PhD thesis aims to present new results in fundamental research on the DNA strand displacement (...
Nucleic acids are a powerful engineering material that can be used to implement a broad range of com...
The prospects of programming molecular systems to perform complex autonomous tasks have motivated re...
DNA Strand Displacement (DSD) systems model basic reaction rules, such as toehold-mediated strand di...
Artificially designed molecular systems with programmable behaviors have become a valuable tool in c...
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...
Although a number of dynamically-controlled nanostructures and programmable DNA Strand Displacement ...
DNA strand displacement systems have transformative potential in synthetic biology. While powerful e...
DNA strand displacement cascades have proven to be a uniquely flexible and programmable primitive fo...
Biochemical circuits made of rationally designed DNA molecules are proofs of concept for embedding c...
Nucleic acids are information-dense, programmable polymers that can be engineered into primers, prob...
A barrier to wider adoption of molecular computation is the difficulty of implementing arbitrary che...
Biological organisms perform complex information processing and control tasks using sophisticated bi...
DNA strand displacement circuits are powerful tools that can be rationally engineered to implement m...
This PhD thesis aims to present new results in fundamental research on the DNA strand displacement (...
Nucleic acids are a powerful engineering material that can be used to implement a broad range of com...
The prospects of programming molecular systems to perform complex autonomous tasks have motivated re...
DNA Strand Displacement (DSD) systems model basic reaction rules, such as toehold-mediated strand di...