Team:Aberdeen Scotland/Notebook
From 2014.igem.org
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- | <h1> | + | <h1>Before the Poject start</h1> |
- | <h3> | + | <h3>Activities and planning before the start of the project in the summer</h3> |
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- | < | + | <h4>Initial brainstorming meetings (February-June)</h4> |
+ | <ul> | ||
+ | <li> | ||
+ | Our initial project ideas:<br> | ||
+ | <ol type="a"> | ||
+ | <li><b>Bacterial drones</b><br>Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis</li> | ||
+ | <li><b>Defrosting streets in winter</b><br>To engineer bacteria expressing anti-freeze proteins from an arctic fish in order to provide an alternative for using salt in winter to defrost streets</li> | ||
+ | <li><b>Bacterial drones</b><br>Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis</li> | ||
+ | <li><b>Bacterial drones</b><br>Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis</li> | ||
+ | <li><b>Bacterial drones</b><br>Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis</li> | ||
+ | <li><b>Bacterial drones</b><br>Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis</li> | ||
+ | <li><b>Bacterial drones</b><br>Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis</li> | ||
+ | <li><b>Bacterial drones</b><br>Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis</li> | ||
+ | <li><b>Bacterial drones</b><br>Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis</li> | ||
+ | <li><b>Bacterial drones</b><br>Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis</li> | ||
+ | <li><b>Bacterial drones</b><br>Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis</li> | ||
+ | <li><b>Bacterial drones</b><br>Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis</li> | ||
+ | <li><b>Bacterial drones</b><br>Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis</li> | ||
+ | <li><b>Bacterial drones</b><br>Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis</li> | ||
+ | <li><b>Bacterial drones</b><br>Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis</li> | ||
+ | <li><b>Bacterial drones</b><br>Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis</li> | ||
+ | <li><b>Bacterial drones</b><br>Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis</li> | ||
+ | <li><b>Bacterial drones</b><br>Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis</li> | ||
+ | <li><b>Bacterial drones</b><br>Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis</li> | ||
+ | </ol> | ||
+ | </li> | ||
+ | </ul> | ||
<p>We have worked all summer towards what we hope would turn out to be some peace of mind for a lot of people. The goal is to develop a novel method for diagnosing Trypanosomiasis. A simpler, cheaper alternative to current methods that would be more versatile in developing countries and their remote regions. We wish to create a test that would be portable, endure harsh environmental conditions and most importantly be sensitive to the early stages of the disease.</p> | <p>We have worked all summer towards what we hope would turn out to be some peace of mind for a lot of people. The goal is to develop a novel method for diagnosing Trypanosomiasis. A simpler, cheaper alternative to current methods that would be more versatile in developing countries and their remote regions. We wish to create a test that would be portable, endure harsh environmental conditions and most importantly be sensitive to the early stages of the disease.</p> | ||
<p>This would give a lot of unsuspecting sufferers the chance to get diagnosed early. This way they can get cured quickly, before the disease reaches its later stages, when it is virtually incurable.</p> | <p>This would give a lot of unsuspecting sufferers the chance to get diagnosed early. This way they can get cured quickly, before the disease reaches its later stages, when it is virtually incurable.</p> | ||
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Revision as of 16:53, 15 October 2014
Before the Poject start
Activities and planning before the start of the project in the summer
Initial brainstorming meetings (February-June)
-
Our initial project ideas:
- Bacterial drones
Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis - Defrosting streets in winter
To engineer bacteria expressing anti-freeze proteins from an arctic fish in order to provide an alternative for using salt in winter to defrost streets - Bacterial drones
Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis - Bacterial drones
Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis - Bacterial drones
Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis - Bacterial drones
Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis - Bacterial drones
Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis - Bacterial drones
Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis - Bacterial drones
Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis - Bacterial drones
Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis - Bacterial drones
Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis - Bacterial drones
Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis - Bacterial drones
Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis - Bacterial drones
Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis - Bacterial drones
Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis - Bacterial drones
Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis - Bacterial drones
Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis - Bacterial drones
Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis - Bacterial drones
Engineering bacteria to carry particular substances to specific locations via manipulation of chemotaxis
- Bacterial drones
We have worked all summer towards what we hope would turn out to be some peace of mind for a lot of people. The goal is to develop a novel method for diagnosing Trypanosomiasis. A simpler, cheaper alternative to current methods that would be more versatile in developing countries and their remote regions. We wish to create a test that would be portable, endure harsh environmental conditions and most importantly be sensitive to the early stages of the disease.
This would give a lot of unsuspecting sufferers the chance to get diagnosed early. This way they can get cured quickly, before the disease reaches its later stages, when it is virtually incurable.