A barrier to wider adoption of molecular computation is the difficulty of implementing arbitrary chemical reaction networks (CRNs) that are robust and replicate the kinetics of designed behavior. DNA Strand Displacement (DSD) cascades have been a favored technology for this purpose due to their potential to emulate arbitrary CRNs and known principles to tune their reaction rates. Progress on leakless cascades has demonstrated that DSDs can be arbitrarily robust to spurious "leak" reactions when incorporating systematic domain level redundancy. These improvements in robustness result in slower kinetics of designed reactions. Existing work has demonstrated the kinetic and thermodynamic effects of sequence mismatch introduction and elimination...
DNA strand displacement cascades have proven to be a uniquely flexible and programmable primitive fo...
Hybridization of DNA strands can be used to build molecular devices, and control of the kinetics of ...
Logic circuits based on DNA strand displacement reactions have been shown to be versatile enough to ...
While current experimental demonstrations have been limited to small computational tasks, DNA strand...
Abstract. While current experimental demonstrations have been lim-ited to small computational tasks,...
DNA strand displacement (DSD) has recently become a common technology for constructing molecular dev...
Although a number of dynamically-controlled nanostructures and programmable DNA Strand Displacement ...
Colocalization can strongly alter the kinetics and efficiency of chemical processes. For instance, i...
DNA is used to construct synthetic systems that sense, actuate, move and compute. The operation of m...
DNA Strand Displacement (DSD) systems model basic reaction rules, such as toehold-mediated strand di...
Recent years have seen great advances in the development of synthetic self-assembling molecular syst...
Artificially designed molecular systems with programmable behaviors have become a valuable tool in c...
Thesis (Ed.D.)--University of Washington, 2020At the nanoscale, the ability to control spatio-tempor...
Over the last century, the silicon revolution has enabled us to build faster, smaller and more sophi...
In molecular programming, the Chemical Reaction Network model is often used to describe real or hypo...
DNA strand displacement cascades have proven to be a uniquely flexible and programmable primitive fo...
Hybridization of DNA strands can be used to build molecular devices, and control of the kinetics of ...
Logic circuits based on DNA strand displacement reactions have been shown to be versatile enough to ...
While current experimental demonstrations have been limited to small computational tasks, DNA strand...
Abstract. While current experimental demonstrations have been lim-ited to small computational tasks,...
DNA strand displacement (DSD) has recently become a common technology for constructing molecular dev...
Although a number of dynamically-controlled nanostructures and programmable DNA Strand Displacement ...
Colocalization can strongly alter the kinetics and efficiency of chemical processes. For instance, i...
DNA is used to construct synthetic systems that sense, actuate, move and compute. The operation of m...
DNA Strand Displacement (DSD) systems model basic reaction rules, such as toehold-mediated strand di...
Recent years have seen great advances in the development of synthetic self-assembling molecular syst...
Artificially designed molecular systems with programmable behaviors have become a valuable tool in c...
Thesis (Ed.D.)--University of Washington, 2020At the nanoscale, the ability to control spatio-tempor...
Over the last century, the silicon revolution has enabled us to build faster, smaller and more sophi...
In molecular programming, the Chemical Reaction Network model is often used to describe real or hypo...
DNA strand displacement cascades have proven to be a uniquely flexible and programmable primitive fo...
Hybridization of DNA strands can be used to build molecular devices, and control of the kinetics of ...
Logic circuits based on DNA strand displacement reactions have been shown to be versatile enough to ...