Gene networks and signaling pathways display complex topologies and, as a result, complex nonlinear behaviors. Accumulating evidence shows that both static (concentration) and dynamical (rate-of-change) features of transcription factors, ligands and environmental stimuli control downstream processes and ultimately cellular functions. Currently, however, methods to generate stimuli with the desired features to probe cell response are still lacking. Here, combining tools from Control Engineering and Synthetic Biology (cybergenetics), we propose a simple and cost-effective microfluidics-based platform to precisely regulate gene expression and signaling pathway activity in mammalian cells by means of real-time feedback control. We show that thi...
International audienceGene expression plays a central role in the orchestration of cellular processe...
Mammalian cells are dynamical systems. They detect, adapt and respond to time-varying inputs such as...
Cellular systems have evolved numerous mechanisms to adapt to environmental stimuli, underpinned by ...
Gene networks and signaling pathways display complex topologies and, as a result, complex nonlinear ...
Gene networks and signaling pathways display complex topologies and, as a result, complex nonlinear ...
Applications of control engineering to mammalian cell biology have been recently implemented for pre...
Automatic control of gene expression in living cells is paramount importance to characterize both en...
Observation of single-cell behavior has become increasingly important to our understanding of comple...
Automatic control of gene expression in living cells is paramount importance to characterize both en...
International audienceBy implementing an external feedback loop one can tightly control the expressi...
During development, state transitions are coordinated through changes in the identity of molecular r...
Real-time automatic regulation of gene expression is a key technology for synthetic biology enabling...
International audienceGene expression plays a central role in the orchestration of cellular processe...
Mammalian cells are dynamical systems. They detect, adapt and respond to time-varying inputs such as...
Cellular systems have evolved numerous mechanisms to adapt to environmental stimuli, underpinned by ...
Gene networks and signaling pathways display complex topologies and, as a result, complex nonlinear ...
Gene networks and signaling pathways display complex topologies and, as a result, complex nonlinear ...
Applications of control engineering to mammalian cell biology have been recently implemented for pre...
Automatic control of gene expression in living cells is paramount importance to characterize both en...
Observation of single-cell behavior has become increasingly important to our understanding of comple...
Automatic control of gene expression in living cells is paramount importance to characterize both en...
International audienceBy implementing an external feedback loop one can tightly control the expressi...
During development, state transitions are coordinated through changes in the identity of molecular r...
Real-time automatic regulation of gene expression is a key technology for synthetic biology enabling...
International audienceGene expression plays a central role in the orchestration of cellular processe...
Mammalian cells are dynamical systems. They detect, adapt and respond to time-varying inputs such as...
Cellular systems have evolved numerous mechanisms to adapt to environmental stimuli, underpinned by ...