We present an embedded feedback control strategy to regulate the density of a microbial population, that is, the number of cells into a given environment, allowing cells to self-regulate their growth rate so as to reach a desired density at steady state. We consider a static culture condition, where cells are provided with a limited amount of space and nutrients. The control strategy is built using a tunable expression system (TES), which controls the production of a growth inhibitor protein, complemented with a quorum sensing mechanism for the sensing of the population density. We show via a simplified population-level model that the TES endows the control system with additional flexibility by allowing the set-point to be changed online. F...
Realizing homeostatic control of metabolites or proteins is one of the key goals of synthetic circui...
ABSTRACT Formation of patterns is a common feature in the development of multicellular organism as w...
In recent years, multicellular applications have been increased in the field of synthetic biology. H...
We present an embedded feedback control strategy to regulate the density of a microbial population, ...
De novo engineering of gene circuits inside cells is extremely difficult, and efforts to realize pre...
International audienceBacteria in groups vary individually, and interact with other bacteria and the...
An ongoing area of study in synthetic biology has been the design and construction of synthetic circ...
Rapid advances in cellular engineering have positioned synthetic biology to address therapeutic and ...
The last decade has seen bacteria at the forefront of biotechnological innovation, with applications...
Quorum sensing is the regulation of gene expression in response to changes in cell density. To measu...
<div><p>Quorum sensing is the regulation of gene expression in response to changes in cell density. ...
peer reviewedMicrobial populations can adapt to adverse environmental conditions either by appropria...
We address the problem of regulating and keeping at a desired balance the relative numbers between c...
Bacteria in groups vary individually, and interact with other bacteria and the environment to produc...
Microbial species rarely exist alone. Nearly everywhere you could think to look, microorganisms of v...
Realizing homeostatic control of metabolites or proteins is one of the key goals of synthetic circui...
ABSTRACT Formation of patterns is a common feature in the development of multicellular organism as w...
In recent years, multicellular applications have been increased in the field of synthetic biology. H...
We present an embedded feedback control strategy to regulate the density of a microbial population, ...
De novo engineering of gene circuits inside cells is extremely difficult, and efforts to realize pre...
International audienceBacteria in groups vary individually, and interact with other bacteria and the...
An ongoing area of study in synthetic biology has been the design and construction of synthetic circ...
Rapid advances in cellular engineering have positioned synthetic biology to address therapeutic and ...
The last decade has seen bacteria at the forefront of biotechnological innovation, with applications...
Quorum sensing is the regulation of gene expression in response to changes in cell density. To measu...
<div><p>Quorum sensing is the regulation of gene expression in response to changes in cell density. ...
peer reviewedMicrobial populations can adapt to adverse environmental conditions either by appropria...
We address the problem of regulating and keeping at a desired balance the relative numbers between c...
Bacteria in groups vary individually, and interact with other bacteria and the environment to produc...
Microbial species rarely exist alone. Nearly everywhere you could think to look, microorganisms of v...
Realizing homeostatic control of metabolites or proteins is one of the key goals of synthetic circui...
ABSTRACT Formation of patterns is a common feature in the development of multicellular organism as w...
In recent years, multicellular applications have been increased in the field of synthetic biology. H...