Team:SDU-Denmark/project-p

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(HPLC determination of beta-carotene and retinal production)
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MG1655 containing PSB1A2 with K274210 plus PSB1C3 with K343005 both under a constitutively active promotor<br>  
MG1655 containing PSB1A2 with K274210 plus PSB1C3 with K343005 both under a constitutively active promotor<br>  
The measurements were preformed on cells after 20 hours of growth. The resulting graphs is presented beneath the text.<br>
The measurements were preformed on cells after 20 hours of growth. The resulting graphs is presented beneath the text.<br>
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[[Image:Team SDU-Denmark-HPLC samples2.png|300px|]]
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[[Image:Team SDU-Denmark-HPLC samples2.png|thumb|left|300px|HPLC analysis of Beta-carotene. Peaks are clearly pressent. Measurements were made after 20 hours of growth]]
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[[Image:Team SDU-Denmark-HPLC samples1.png|300px|]]<br>
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[[Image:Team SDU-Denmark-HPLC samples1.png|thumb|center|300px|HPLC analysis of retinal. Peaks are clearly pressent. Measurements were made after 20 hours of growth]]<br>
When looking at the retinal and beta-carotene standards analysed on the HPLC, peaks for both chemical are clearly present. The retinal retention time is 3,480-3,490 minutes and the beta-carotene retention time is 23,300-23,600 minutes.<br>     
When looking at the retinal and beta-carotene standards analysed on the HPLC, peaks for both chemical are clearly present. The retinal retention time is 3,480-3,490 minutes and the beta-carotene retention time is 23,300-23,600 minutes.<br>     
The spectres for the first run of samples show large amounts of beta-carotene, smaller amounts of which also are products produced by the K274210 biobrick or absorbed form the media in the cells where the K274210 biobrick is absent.<br>  
The spectres for the first run of samples show large amounts of beta-carotene, smaller amounts of which also are products produced by the K274210 biobrick or absorbed form the media in the cells where the K274210 biobrick is absent.<br>  
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The spectre show no measurable amounts of retinal in neither of the samples, but the samples produced by bacteria containing the K343006 brick have a lower amount of beta-carotene.<br> which can indicated that either the bacteria’s production of beta-carotene is lowered or that some of the beta-carotene have been metabolized in the cell, either to a non-measurable concentration of Retinal or some other metabolite. It is also a possibility that the retinal is exported out of the cells.<br>         
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The spectre shows no measurable amounts of retinal in neither of the samples, but the samples produced by bacteria containing the K343006 brick have a lower amount of beta-carotene.<br> which can indicated that either the bacteria’s production of beta-carotene is lowered or that some of the beta-carotene have been metabolized in the cell, either to a non-measurable concentration of Retinal or some other metabolite. It is also a possibility that the retinal is exported out of the cells.<br>         
In the spectres from the second run of samples again show large amounts of beta-carotene produced by the K274210 biobrick or absorbed form the media in the cells where the K274210 biobrick is absent.<br>     
In the spectres from the second run of samples again show large amounts of beta-carotene produced by the K274210 biobrick or absorbed form the media in the cells where the K274210 biobrick is absent.<br>     
The only sample displaying any changes form the first run on the HPLC is TOP10 containing both the K343006 and K274210 biobricks. In the spectre higher amounts of cell metabolites some of them still being produced by the K274210 biobrick but also others produced by the cell.   
The only sample displaying any changes form the first run on the HPLC is TOP10 containing both the K343006 and K274210 biobricks. In the spectre higher amounts of cell metabolites some of them still being produced by the K274210 biobrick but also others produced by the cell.   
In this spectra the peak with a retention time of 3,969 is close to the retention time of retinal form the standards but when examining the spectre of the peak it can be concluded that it not a retinal peak.<br>   
In this spectra the peak with a retention time of 3,969 is close to the retention time of retinal form the standards but when examining the spectre of the peak it can be concluded that it not a retinal peak.<br>   
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In order to assess and quantify the results a standard dilution of beta-carotene and retinal was made and measured: 10 µM, 5 µM, 1 µM, 2 µM, 0,5 µM. The standard dilutions was also measured on the HPLC with the same injection volumen and program as the samples. The resulting graphs is presented beneath the text<br>
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In order to assess and quantify the results a standard dilution of beta-carotene and retinal was made and measured: 10 µM, 5 µM, 1 µM, 2 µM, 0,5 µM. The standard dilutions were also measured on the HPLC with the same injection volumen and program as the samples. The resulting graphs are presented beneath <br>
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[[Image:Team SDU-Denmark-HPLC standards1.png|400px||center]]
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[[Image:Team SDU-Denmark-HPLC standards1.png|400px|thumb|center| HPLC of standard dilutions of beta-carotene and retinal]]
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When doing a HPLC analysis it is possible to quantify the amounts of the chemical compounds in the samples.<br>  
When doing a HPLC analysis it is possible to quantify the amounts of the chemical compounds in the samples.<br>  
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Now it is possible to calculate unknown concentrations from samples using the regression line from the standard curves.<br>
Now it is possible to calculate unknown concentrations from samples using the regression line from the standard curves.<br>
The results for our HPLC analysis can be seen beneath the text.<br>  
The results for our HPLC analysis can be seen beneath the text.<br>  
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[[Image:Team-SDU-Denmark-Amount of beta-carotene and retinal i standards.png|400px|center]]
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[[Image:Team-SDU-Denmark-Amount of beta-carotene and retinal i standards.png|thumb|400px|center|Standard curve of area under the HPLC peaks against beta-carotene and retinal concentration. Regression lines were made.]]
From the equations for the regression line it is possible to calculate the amount of beta-carotene produced by bacteria grown for 20 hours in LB media.<br>  
From the equations for the regression line it is possible to calculate the amount of beta-carotene produced by bacteria grown for 20 hours in LB media.<br>  
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[[Image:Team-SDU-Denmark-Beta-carotene amounts.png|400px||center]]
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[[Image:Team-SDU-Denmark-Beta-carotene amounts.png|400px|thumb|center|Tabel showing calculatet beta-carotene content in samples]]
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All data can be seen under [https://2010.igem.org/Image:Team-SDU-denmark-HPLC_determination_af_beta-carotene_and_retinal_production.zip Raw data]<br>
All data can be seen under [https://2010.igem.org/Image:Team-SDU-denmark-HPLC_determination_af_beta-carotene_and_retinal_production.zip Raw data]<br>

Revision as of 16:16, 27 October 2010