Sender–receiver (S–R) systems abound in biology, with communication systems sending information in various forms. Information theory provides a quantitative basis for analysing these processes and is being applied to study natural genetic, enzymatic and neural networks. Recent advances in synthetic biology are providing us with a wealth of artificial S–R systems, giving us quantitative control over networks with a finite number of well-characterised components. Combining the two approaches can help to predict how to maximise signalling robustness, and will allow us to make increasingly complex biological computers. Ultimately, pushing the boundaries of synthetic biology will require moving beyond engineering the flow of information and towa...
In this article we present novel aspects of the impact that synthetic biology (SB) can express in a ...
Genetic regulatory networks enable cells to respond to changes in internal and external conditions b...
In a previous contribution we briefly sketched novel topics that lie at the interface between synth...
Sender–receiver (S–R) systems abound in biology, with communication systems sending information in v...
Sender–receiver (S–R) systems abound in biology, with communication systems sending information in v...
Sensing and responding to the environment are two essential functions that all biological organisms ...
Sensing and responding to the environment are two essential functions that all biological organisms ...
In this article we present novel aspects of the impact that synthetic biology (SB) can express in a...
In this article we present novel aspects of the impact that synthetic biology (SB) can express in a...
none3Systems and Synthetic biology are emerging fields at the intersection of Biology, Physics and E...
Systems and Synthetic biology are emerging fields at the intersection of Biology, Physics and Engine...
Systems and Synthetic biology are emerging fields at the intersection of Biology, Physics and Engine...
Bacteria-based synthetic biology systems have been proposed in the past twenty years as solutions f...
In this article we present novel aspects of the impact that synthetic biology (SB) can express in a ...
In this article we present novel aspects of the impact that synthetic biology (SB) can express in a ...
In this article we present novel aspects of the impact that synthetic biology (SB) can express in a ...
Genetic regulatory networks enable cells to respond to changes in internal and external conditions b...
In a previous contribution we briefly sketched novel topics that lie at the interface between synth...
Sender–receiver (S–R) systems abound in biology, with communication systems sending information in v...
Sender–receiver (S–R) systems abound in biology, with communication systems sending information in v...
Sensing and responding to the environment are two essential functions that all biological organisms ...
Sensing and responding to the environment are two essential functions that all biological organisms ...
In this article we present novel aspects of the impact that synthetic biology (SB) can express in a...
In this article we present novel aspects of the impact that synthetic biology (SB) can express in a...
none3Systems and Synthetic biology are emerging fields at the intersection of Biology, Physics and E...
Systems and Synthetic biology are emerging fields at the intersection of Biology, Physics and Engine...
Systems and Synthetic biology are emerging fields at the intersection of Biology, Physics and Engine...
Bacteria-based synthetic biology systems have been proposed in the past twenty years as solutions f...
In this article we present novel aspects of the impact that synthetic biology (SB) can express in a ...
In this article we present novel aspects of the impact that synthetic biology (SB) can express in a ...
In this article we present novel aspects of the impact that synthetic biology (SB) can express in a ...
Genetic regulatory networks enable cells to respond to changes in internal and external conditions b...
In a previous contribution we briefly sketched novel topics that lie at the interface between synth...