Team:ETH Zurich/modeling/diffmodel

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(Initial conditions determined by bead preparation step)
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=== ''' Initial conditions determined by bead preparation step''' ===
=== ''' Initial conditions determined by bead preparation step''' ===
Non-induced cells, that is all cells except the one from the middle well of the first row have an initial LuxR concentration of LuxR due to constitutive production and degradation :
Non-induced cells, that is all cells except the one from the middle well of the first row have an initial LuxR concentration of LuxR due to constitutive production and degradation :
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$$ [LuxR_i]=\frac{a_{LuxR}}{d_{LuxR}} $$
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$$ [LuxR]_i=\frac{a_{LuxR}}{d_{LuxR}} $$
The cells of the first row are induced by 10 μ M AHL just before they are encapsulated in alginate. Then, bead formation takes half-an-hour before these cells are added in the first well. During this half-an-hour AHL can diffuse out. Therefore initial conditions in the first cell completely depend on these previous steps. We have also simulated this bead preparation in order to get these initial conditions.
The cells of the first row are induced by 10 μ M AHL just before they are encapsulated in alginate. Then, bead formation takes half-an-hour before these cells are added in the first well. During this half-an-hour AHL can diffuse out. Therefore initial conditions in the first cell completely depend on these previous steps. We have also simulated this bead preparation in order to get these initial conditions.
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After 30 minutes, almost all LuxR is bound to AHL and converted to RLux, so that we have  
After 30 minutes, almost all LuxR is bound to AHL and converted to RLux, so that we have  
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$$ [LuxR_i]= 10nM$$
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$$ [LuxR]_i= 10nM$$
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$$ [RLux_i]= 160 nM$$
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$$ [RLux]_i= 160 nM$$
RLux has already started to trigger the production of LuxI and GFP, so that we have  
RLux has already started to trigger the production of LuxI and GFP, so that we have  
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$$ [mRNAGFP_i] =  24nM$$
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$$ [mRNAGFP]_i =  24nM$$
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$$ [GFP_i] =  180nM$$
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$$ [GFP]_i =  180nM$$
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$$ [mRNALuxI_i] = 24nM$$
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$$ [mRNALuxI]_i = 24nM$$
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$$ [LuxI_i] = 3300nM$$
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$$ [LuxI]_i = 3300nM$$
== Parameter estimation ==
== Parameter estimation ==

Revision as of 02:44, 16 October 2014

iGEM ETH Zurich 2014