Team:Tsinghua/Conclusion

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(Degree of Completeness Regarding the Entire Project)
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[[Image:projectconclusionscheme.png|700px|center|thumb|Project Completeness Judging Form]]
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In conclusion, we have sucessfully achieved what we have previously planned to do. In order for the readers to better comprehend the achievement of our project, we summarized them on a judging form. Three designed modules have been independently constructed and characterized. Some experiments also suggests the recombination of the modules can also work. The module-based design of our project faciliated our experiment, and the ongoing step is the recombination of all of the three modules to synthesize a syngenome based GenSniper.
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[[Image:projectconclusion1.png|800px|center|projectconclusion]][[Image:projectconclusion2.png|800px|center|projectconclusion]]
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[[Image:projectconclusion1.png|800px|center|thumb|Project completeness summary]]
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[[Image:projectconclusion2.png|800px|center|projectconclusion]]
=Further Work=
=Further Work=

Revision as of 13:07, 21 October 2009

Home Background Brainstorming Design Experiment Results Conclusion Protocol

Degree of Completeness Regarding the Entire Project

Project Completeness Judging Form

In conclusion, we have sucessfully achieved what we have previously planned to do. In order for the readers to better comprehend the achievement of our project, we summarized them on a judging form. Three designed modules have been independently constructed and characterized. Some experiments also suggests the recombination of the modules can also work. The module-based design of our project faciliated our experiment, and the ongoing step is the recombination of all of the three modules to synthesize a syngenome based GenSniper.

Project completeness summary


Further Work

1.Produce the GenSniper with both Therapeutic DNA and Targeted BioBrick modification and generate the electronic microscopy pictures of the purified viroins.

2.Further characterize the requirements for Therapeutic DNA package into the GenSniper viroin (whether a stuffer is needed) and incorporate eukaryotic expression BioBricks for functional identification

3.Construct more Targeted BioBricks with different peptide modification and test their specificity to different cells via the established GFP fusion method.

4.Further modify and standardize the Targeted BioBrick-GFP production system for large-scale Targeted BioBricks identification.

Insight to Further Research and Human Practice