Team:SDU-Denmark/project-t

From 2010.igem.org

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This is the method by which the Cambridge team characterized their beta-carotene-generating BioBrick in 2009. <br>
This is the method by which the Cambridge team characterized their beta-carotene-generating BioBrick in 2009. <br>
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Apart from photospectrometry, the resuspension of beta-carotene or retinal in acetone can be subjected to analysis by HPLC. HPLC can be used to separate retinal from beta-carotene, to get a better indication of whether or not our retinal-generating part actually produces retinal from beta-carotene. For this particular purpose, we use a C-18 column, and the eluents used are as follows: <br>
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Apart from photospectrometry, the resuspension of beta-carotene or retinal in acetone can be subjected to analysis by HPLC. HPLC can be used to separate retinal from beta-carotene, to get a better indication of whether or not our retinal-generating part actually produces retinal from beta-carotene.  
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A-buffer: 100% methanol with 0,1% trifluoroacetic acid. <br>
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B-buffer: A mixture consisting of 60% methanol and 40% acetone with 0,1% trifluoroacetic acid. <br>
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Due to the chemical properties of beta-carotene and retinal, respectively, retinal will come through the column before beta-carotene when a gradient is run from 100% A-buffer to 100% B-buffer. <br>
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Afterwards, the solutions of purified retinal or beta-carotene are studied using UV-vis photospectrometry and the values and spectra are compared to those of the same compounds of known concentrations. Again, this gives both qualitative and quantitative indications of whether the compound in question is present and, if it is, in what concentration. <br>
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See our results [https://2010.igem.org/Team:SDU-Denmark/project-r#UV-Vis_spectrophotometer_determination_of_beta-carotene_production here].
See our results [https://2010.igem.org/Team:SDU-Denmark/project-r#UV-Vis_spectrophotometer_determination_of_beta-carotene_production here].

Revision as of 20:56, 24 October 2010