Team:Dundee/Team

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Revision as of 11:24, 10 July 2013

iGEM Dundee 2013 · Toxi-Mop

Individuals behind the Team

Microcystin, a toxin released by specific cyanobacteria, is harmful to mammals due to its ability in binding to the PP1 protein and ceasing its operation. ToxiMop uses this binding feature and aims to integrate the PP1 protein into a bacterial cell to mop up the toxin. An example of this was at the Beijing Olympics in 2008, when 10, 000 people were hired to clean up the algae in time for the sailing regatta. The current detection process takes approximately 24 hours. The team’s aim is to reduce this to 1 hour.

The benefit of Teamwork

What comes to people's mind when they hear the word, 'Synthetic biology'? Many people don't know what it is, or have an ambiguous image that it is something dangerous. Synthetic biology is not about the un-natural, think of it as playing with the Universe's lego kit. Building with what is already here, we try to create something better..

Craig Johnston

Field: Mathematics
Team: Dry team
Role: Mathematical modelling
Aspirations:
To develop mathematical models that help enhance the understanding of the biology in our toximop project.

Kyle Harrison

Field: Applied Computing
Team: Dry team
Role: Software Development / Design
Aspirations:
Applying software development techniques, design principles, and methodologies to real applications.

Rachel Findlay

Field: Mathematical Biology
Team: Dry team
Role: Mathematical Modelling
Aspirations:
Experience in relating mathematical models to biological concepts and constructing relevant models.

Nasir Ahmad

Field: Physics
Team: Dry team
Role: Hardware Designer / Modelling
Aspirations:
Gain knowledge in microbiology & applying existing knowledge in new and interesting ways.

Ewa Grabowiecka

Field: Microbiology
Team: Wet team
Role: Microcystin Sensor
Aspirations:
Build an efficient Microcystin Mop.

Philip Rodger

Field: Molecular Biology
Team: Wet team
Role: Microcystin Detector
Aspirations:
Designing a microcystin detector by modifying existing E.coli and B.subtilis.

John Allan

Field: Microbiology
Team: Wet team
Role: Microcystin Sensor
Aspirations:
Succesfully clone a microcystin receptor & express this in bacterial cells improving existing detection methods.

Alice Rowan

Field: Biomedical Sciences
Team: Wet team
Role: Microcystin Sensor
Aspirations:
I hope to develop a biological mop to reduce microcystin levels in freshwater systems.

Chris Earl

Field: Molecular Biology
Team: Wet team
Role: Microcystin Sensor
Aspirations:
Succesfully clone microcystin receptors and express these in bacterial cells.

Kyle Buchan

Field: Molecular Biology
Team: Wet team
Role: Microbiology Specialist
Aspirations:
Achieve a higher understanding and appreciation for the field of synthetic biology as a whole, &gaining valuable lab experience.

Prof Tracy Palmer

Field: Microbiology
Role: Supervisor - Instructor for biological experiments
Aspirations:

Prof Frank Sargent

Field: Microbiology
Role: Supervisor
Aspirations:

Dr Fordyce Davidson

Field: Mathmatics
Role: Supervisor
Aspirations:

Dr Lionel Dupuy

Field: Mathmatics
Role: Supervisor
Aspirations:

Lucia Licandro

Field: Microbiology
Role: Advisor
Aspirations:

Richard Owens

Field: Microbiology
Role: Advisor
Aspirations:

Cian McNabola

Field: Games Design
Role: Mascot Design - Volunteer
Aspirations:
.

Darryl Johnson

Field: Graphics Design
Role: Logo Design - Volunteer
Aspirations: