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  2. Engineering of self­ cloning brewer’s yeast for novel terpene…

    https://www.engbio.cam.ac.uk/synbiofund/scby_project_folder/terpene-beer
    11 Jul 2024: Search site. Engineering Biology in Cambridge. Engineering of self cloning brewer’s yeast for novel terpene profiles in beer. Engineering of self cloning brewer’s yeast for novel terpene profiles in beer. The Idea. Terpene flavor compounds are
  3. SynBio Student Society full application | Engineering Biology in…

    https://www.engbio.cam.ac.uk/synbiofund/SynBio_project_folder/synbio-student-society-full
    11 Jul 2024: Search site. Engineering Biology in Cambridge. SynBio Student Society full application. To establish the Cambridge University Synthetic Biology Society (CUSBS) to promote the field of synthetic biology amongst the student community and within
  4. An extended DNA recombinase toolkit for mammalian systems |…

    https://www.engbio.cam.ac.uk/synbiofund/recombinase_toolkit_folder/recombinase-toolkit
    11 Jul 2024: Search site. Engineering Biology in Cambridge. An extended DNA recombinase toolkit for mammalian systems. Identifying, screening and optimising a novel recombinase toolkit for mammalian cells. The Idea. DNA recombinases perform excision, integration
  5. An extended DNA recombinase toolkit for mammalian systems |…

    https://www.engbio.cam.ac.uk/synbiofund/recombinase_toolkit_folder/recombinase
    11 Jul 2024: Search site. Engineering Biology in Cambridge. An extended DNA recombinase toolkit for mammalian systems. Contact us. Email: coordinator@engbio.cam.ac.uk. Tel: 01223 767147. Department of Biochemistry. Sanger Building. Tennis Court Road. Cambridge.
  6. Flexible, low cost, live­ cell imaging platform | Engineering Biology …

    https://www.engbio.cam.ac.uk/synbiofund/imaging_platform_project_folder/platform
    11 Jul 2024: Search site. Engineering Biology in Cambridge. Flexible, low cost, live cell imaging platform. Contact us. Email: coordinator@engbio.cam.ac.uk. Tel: 01223 767147. Department of Biochemistry. Sanger Building. Tennis Court Road. Cambridge. CB2 1GA.
  7. Flexible, low cost, live­ cell imaging platform | Engineering Biology …

    https://www.engbio.cam.ac.uk/synbiofund/imaging_platform_project_folder/cell-imaging-platform
    11 Jul 2024: Search site. Engineering Biology in Cambridge. Flexible, low cost, live cell imaging platform. Continued development of a flexible, low cost, live-imaging platform for long term monitoring of cell behaviour in vitro. The Idea. At present, long term
  8. The Green Mother Machine: a microfluidics device for cyanobacteria |…

    https://www.engbio.cam.ac.uk/synbiofund/Green_Mother_project_folder/green-mother-machine
    11 Jul 2024: Search site. Engineering Biology in Cambridge. The Green Mother Machine: a microfluidics device for cyanobacteria. Optimising a microfluidic chemostat for experiments using cyanobacteria, including growth and feeding channels. The Idea.
  9. Engineering of self­ cloning brewer’s yeast for novel terpene…

    https://www.engbio.cam.ac.uk/synbiofund/scby_project_folder/terpene-profiles-beerp-df
    11 Jul 2024: Search site. Engineering Biology in Cambridge. Engineering of self cloning brewer’s yeast for novel terpene profiles in beer. Contact us. Email: coordinator@engbio.cam.ac.uk. Tel: 01223 767147. Department of Biochemistry. Sanger Building. Tennis
  10. Novel bioluminescent reporters full application | Engineering Biology …

    https://www.engbio.cam.ac.uk/synbiofund/Novel_bioluminescent_reporters_project_folder/reporters
    11 Jul 2024: Search site. Engineering Biology in Cambridge. Novel bioluminescent reporters full application. Finding, testing and generating optimised bioluminescent reporter vectors for use in various organisms. Outcomes, Outputs and Progress. Shore seawater
  11. Faster engineering for cyanobacteria | Engineering Biology in…

    https://www.engbio.cam.ac.uk/synbiofund/Faster_engineering_cyanobacteria_project_folder/cyanobacteria-engineering
    11 Jul 2024: Search site. Engineering Biology in Cambridge. Faster engineering for cyanobacteria. Developing a series of plasmids and a method to rapidly increase production of cyanobacterial mutants with multiple alterations. The Idea. Cyanobacteria (oxygenic

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