Living cells maintain a steady state of biochemical reaction rates by exchanging energy and matter with the environment. These exchanges usually do not occur in in vitro systems, which consequently go to chemical equilibrium. This in turn has severely constrained the complexity of biological networks that can be implemented in vitro. We developed nanoliter-scale microfluidic reactors that exchange reagents at dilution rates matching those of dividing bacteria. In these reactors we achieved transcription and translation at steady state for 30 h and implemented diverse regulatory mechanisms on the transcriptional, translational, and posttranslational levels, including RNA polymerases, transcriptional repression, translational activation, and ...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Forward engineering synthetic circuits are at the core of synthetic biology. Automated solutions wil...
Living cells maintain a steady state of biochemical reaction rates by exchanging energy and matter w...
Living cells maintain a steady state of biochemical reaction rates by exchanging energy and matter w...
The limitations of cell-based synthetic biology are becoming increasingly apparent as researchers ai...
Cell-free systems have emerged as a versatile platform for constructing complex biological systems f...
The limitations of cell-based synthetic biology are becoming increasingly apparent as researchers ai...
The limitations of cell-based synthetic biology are becoming increasingly apparent as researchers ai...
The limitations of cell-based synthetic biology are becoming increasingly apparent as researchers ai...
The limitations of cell-based synthetic biology are becoming increasingly apparent as researchers ai...
Thanks to recent advancements in synthetic biology, the dream of creating a synthetic cell has becom...
Cell-free transcription-translation provides a simplified prototyping environment to rapidly design ...
\u3cp\u3eCell-free transcription-translation provides a simplified prototyping environment to rapidl...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Forward engineering synthetic circuits are at the core of synthetic biology. Automated solutions wil...
Living cells maintain a steady state of biochemical reaction rates by exchanging energy and matter w...
Living cells maintain a steady state of biochemical reaction rates by exchanging energy and matter w...
The limitations of cell-based synthetic biology are becoming increasingly apparent as researchers ai...
Cell-free systems have emerged as a versatile platform for constructing complex biological systems f...
The limitations of cell-based synthetic biology are becoming increasingly apparent as researchers ai...
The limitations of cell-based synthetic biology are becoming increasingly apparent as researchers ai...
The limitations of cell-based synthetic biology are becoming increasingly apparent as researchers ai...
The limitations of cell-based synthetic biology are becoming increasingly apparent as researchers ai...
Thanks to recent advancements in synthetic biology, the dream of creating a synthetic cell has becom...
Cell-free transcription-translation provides a simplified prototyping environment to rapidly design ...
\u3cp\u3eCell-free transcription-translation provides a simplified prototyping environment to rapidl...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Life is sustained by complex systems operating far from equilibrium and consisting of a multitude of...
Forward engineering synthetic circuits are at the core of synthetic biology. Automated solutions wil...