The ability to link systems together such that they behave as predicted once they interact with each other is an essential requirement for the forward-engineering of robust synthetic biological circuits. Unfortunately, because of context-dependencies, parts and functional modules often behave unpredictably once interacting in the cellular environment. This paper reviews recent advances toward establishing a rigorous engineering framework for insulating parts and modules from their context to improve modularity. Overall, a synergy between engineering better parts and higher-level circuit design will be important to resolve the problem of context-dependence
© 2016 Author(s).While signalling and biochemical modules have been the focus of numerous studies, t...
For both embedded systems and biological cell systems, design is a feature that defines their identi...
Synthetic biology is a new field that attempting to catalyze new approaches in biotechnology, medici...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Modularity has been the subject of intense investigation in systems biology for more than two decade...
The parts-based engineering approach in synthetic biology aims to create pre-characterised biologica...
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Compute...
Modularity is a crucial issue in the engineering world, as it enables engineers to achieve predictab...
Work on synthetic biology has largely used a component-based metaphor for system construction. While...
© 1963-2012 IEEE. The ability of cells to sense and respond to their environment is encoded in biomo...
BACKGROUND: Modularity is a crucial issue in the engineering world, as it enables engineers to achie...
Engineered synthetic biological devices have been designed to perform a variety of functions from se...
Background: Modularity is a crucial issue in the engineering world, as it enables engineers to achie...
Despite the efforts that bioengineers have exerted in designing and constructing biological processe...
Background: Gene regulation in biological systems is impacted by the cellular and genetic context-de...
© 2016 Author(s).While signalling and biochemical modules have been the focus of numerous studies, t...
For both embedded systems and biological cell systems, design is a feature that defines their identi...
Synthetic biology is a new field that attempting to catalyze new approaches in biotechnology, medici...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Modularity has been the subject of intense investigation in systems biology for more than two decade...
The parts-based engineering approach in synthetic biology aims to create pre-characterised biologica...
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Compute...
Modularity is a crucial issue in the engineering world, as it enables engineers to achieve predictab...
Work on synthetic biology has largely used a component-based metaphor for system construction. While...
© 1963-2012 IEEE. The ability of cells to sense and respond to their environment is encoded in biomo...
BACKGROUND: Modularity is a crucial issue in the engineering world, as it enables engineers to achie...
Engineered synthetic biological devices have been designed to perform a variety of functions from se...
Background: Modularity is a crucial issue in the engineering world, as it enables engineers to achie...
Despite the efforts that bioengineers have exerted in designing and constructing biological processe...
Background: Gene regulation in biological systems is impacted by the cellular and genetic context-de...
© 2016 Author(s).While signalling and biochemical modules have been the focus of numerous studies, t...
For both embedded systems and biological cell systems, design is a feature that defines their identi...
Synthetic biology is a new field that attempting to catalyze new approaches in biotechnology, medici...