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− | <p3></p3> | + | <p3>Spatially controlled gene expression requires that the stimulated region is tightly bounded. To verify the feasibility of generating a localised region of redox state of an inducer molecule, we created and solved diffusion models, from steady-state analytical models to time-dependent numerical models using more complicated geometry. Once our diffusion models showed a positive outcome we worked on a transcription-translation model of our genetic construct ‘Patterning Circuit 1’, which we fitted to experimental data in order to estimate unknown model parameters and assess the performance of our constructs.</p3> |
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Revision as of 23:31, 17 October 2018
Overview
Our Aims
Spatially controlled gene expression requires that the stimulated region is tightly bounded. To verify the feasibility of generating a localised region of redox state of an inducer molecule, we created and solved diffusion models, from steady-state analytical models to time-dependent numerical models using more complicated geometry. Once our diffusion models showed a positive outcome we worked on a transcription-translation model of our genetic construct ‘Patterning Circuit 1’, which we fitted to experimental data in order to estimate unknown model parameters and assess the performance of our constructs.
Modelling
Electrochemistry Testing
Integration
Experimental Set-up