Biological organisms use complex molecular networks to navigate their environment and regulate their internal state. The development of synthetic systems with similar capabilities could lead to applications such as smart therapeutics or fabrication methods based on self-organization. To achieve this, molecular control circuits need to be engineered to perform integrated sensing, computation and actuation. Here we report a DNA-based technology for implementing the computational core of such controllers. We use the formalism of chemical reaction networks as a 'programming language' and our DNA architecture can, in principle, implement any behaviour that can be mathematically expressed as such. Unlike logic circuits, our formulation naturally ...
Researchers increasingly envision an important role for artificial biochemical circuits in biologica...
Thesis (Ed.D.)--University of Washington, 2020At the nanoscale, the ability to control spatio-tempor...
The design of synthetic circuits for controlling molecular-scale processes is an important goal of s...
Biological organisms use complex molecular networks to navigate their environment and regulate their...
Biological organisms use complex molecular networks to navigate their environment and regulate their...
Thesis (Ph.D.)--University of Washington, 2015The potential of robots operating at a molecular or ce...
The design of synthetic circuits for controlling molecular-scale processes is an important goal of s...
Biological organisms are beautiful examples of programming. The program and data are stored in biolo...
Readily programmable chemical networks are important tools as the scope of chemistry expands from in...
Biomolecular systems that can process information are sought for computational applications, because...
Biomolecular systems that can process information are sought for computational applications, because...
Inspired by signaling networks in living cells, DNA-based programming aims for the engineering of bi...
The use of abstract chemical reaction networks (CRNs) as a modelling and design framework for the im...
Thesis (Ph.D.)--University of Washington, 2019Biology offers compelling proof that macroscopic “livi...
Deoxyribonucleic acid (DNA), a genetic material, encodes all living information and living character...
Researchers increasingly envision an important role for artificial biochemical circuits in biologica...
Thesis (Ed.D.)--University of Washington, 2020At the nanoscale, the ability to control spatio-tempor...
The design of synthetic circuits for controlling molecular-scale processes is an important goal of s...
Biological organisms use complex molecular networks to navigate their environment and regulate their...
Biological organisms use complex molecular networks to navigate their environment and regulate their...
Thesis (Ph.D.)--University of Washington, 2015The potential of robots operating at a molecular or ce...
The design of synthetic circuits for controlling molecular-scale processes is an important goal of s...
Biological organisms are beautiful examples of programming. The program and data are stored in biolo...
Readily programmable chemical networks are important tools as the scope of chemistry expands from in...
Biomolecular systems that can process information are sought for computational applications, because...
Biomolecular systems that can process information are sought for computational applications, because...
Inspired by signaling networks in living cells, DNA-based programming aims for the engineering of bi...
The use of abstract chemical reaction networks (CRNs) as a modelling and design framework for the im...
Thesis (Ph.D.)--University of Washington, 2019Biology offers compelling proof that macroscopic “livi...
Deoxyribonucleic acid (DNA), a genetic material, encodes all living information and living character...
Researchers increasingly envision an important role for artificial biochemical circuits in biologica...
Thesis (Ed.D.)--University of Washington, 2020At the nanoscale, the ability to control spatio-tempor...
The design of synthetic circuits for controlling molecular-scale processes is an important goal of s...