Team:Northwestern/Project/Modeling
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Status: Under Development | Status: Under Development | ||
- | The purpose of Modeling was to characterize expression vectors in terms of expression level and time-delay, all activated by a | + | The purpose of Modeling was to characterize expression vectors in terms of expression level and time-delay, all activated by a diffusing inducer. |
Using simple enzyme kinetics equations, we elected to mathematically simulate the following model: | Using simple enzyme kinetics equations, we elected to mathematically simulate the following model: | ||
- | [[Image:SuperModeling.jpg| | + | [[Image:SuperModeling.jpg|600px|center]] |
Variables: | Variables: | ||
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- | Matlab was used to generate a theoretical model where IPTG would diffuse down the biofilm as according to Fick's Law of Diffusion and initiate the process. | + | Matlab was used to generate a theoretical model where IPTG would diffuse down the biofilm as according to Fick's Law of Diffusion and initiate the process. The extracellular substrate concentration was assumed to be much greater than the uptake/use, and so would diffuse in at a constant rate. |
- | + | This model was fitted with empirical data using cp-lacpi-gfp to estimate the rate constant, and therefore the effects of varying cp, lacpi, and rbs on enzyme and final product production. | |
- | + | ---- | |
+ | MATLAB file provided upon request. | ||
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References: | References: | ||
Revision as of 23:19, 23 October 2010
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