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Part:BBa_K660101:Experience

Designed by: Glasgow Uni 2011   Group: iGEM11_Glasgow   (2011-09-16)

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Theoretical Modelling

By GlasgowUni 2011

During our project DISColi, regarding Bio-photolithography in biofilms, we created mathematical models involving Ranaspumin-2 and its rate of diffusion through a biofilm. We are presenting our findings in Figure 1 and Table 1. Also, due to the mode of action of Ranaspumin-2 the attainable spatial resolution seems to be less than 0.09 mm. For more information, please visit GlasgowUni 2011 Wiki

Figure.1. Relative One-dimensional Diffusion of (a)Ranaspumin-2 at certain points in time and (b)Ranaspumin-2 within first 60 min. Threshold indicates critical concentration required for the molecule to work.
(a)
(b)

Table 1. Details on Ranaspumin-2
Name of molecule Length (a.a.) Molecular weight (g/mol) Diffusion rate (mm2/min) Critical concentration (molecules) Translation rate (molecule/min) Achieving Critical Concentration (min)
Ranaspumin-2 98 11287 1.68*10-4 374 105.3 3