Imperial/Infector Detector/Specification

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(Infector Detector: Specifications)
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== Project Plan ==
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== Specifications in detail ==
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The formation of biofilms in bacteria is a common phenomenon and is present in many opportunistic pathogens. The biofilm is composed of a series of polysaccharides and proteins, which binds together to form a large complex, adhering the bacteria together. The presence of biofilms act as a defensive barrier against the immune system, and also external anti-microbial agents. In order to coordinate the formation of a biofilm, the concentration of bacteria must be relatively large. To do this, many bacteria uses some form of quorum sensing to orchestrate the formation of a biofilm(reference 1).
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=== Input: AHL 5-50nM ===
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=== Output: Fluorescent Protein ===
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Many forms of quorum sensing components are used be bacteria. Some systems including the Lux (Las) system, encoded by the ''lux'' operon used in ''Escherichia'' bacteria. The lux system produces acyl-homoserine lactones (AHL), which is freely diffusible. Also the ''fsr'' system found in ''Enteroccous'' encodes for a signaling peptide, which is detected by a two component signaling system. Both systems are found to be active during biofilm formation, suggesting that quorum sensing is essential in biofilm formation.
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=== Operating Conditions ===
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=== Health & Safety ===
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For our project, we have decided to target the Lux system, since it is a better understood. Our device will detect the specific signaling molecule 3-oxohexanoyl-homoserine lactone (3OC<sub>6</sub>HSL). This molecule can be detected by the counterpart LuxR.
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=== Packaging and Shelf-life ===
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For future research, it is possible to attempt to use detectors in other quorum sensing systems, such as those found in ''Enteroccocus''. Alternatively, other pathogen-secreted materials can be used to detect biofilms. Examples will include &alpha;-toxins found in ''Staphylococcus''.
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Revision as of 21:15, 22 October 2007


Infector Detector: Specifications

The system must be able to detect the presence of biofilms on urinary catheters by detection of AHL, at a minimum concentration of 5nM, and report with a visual signal within 3 hours. It must work within a temperature range of 20°-30°C, be portable and easy to use, have a shelf life of at least seven days, and must not be harmful or infectious.


Property
Value
Inputs
System must be sensitive to AHL concentration between 5-50nM
Outputs
System must give a visual signal if bacteria is present
Operating Conditions
System must operate within temperature 20-30°C
 
System must operate within pH range of 6-8
Health Regulations
System Must not be living replicating bacteria
Response Time
System needs to have a response time under 3 hour
Lifespan
System must have a shelf life of 7 days
Packaging
System must be portable and convenient to use


Specifications in detail

Input: AHL 5-50nM

Output: Fluorescent Protein

Operating Conditions

Health & Safety

Packaging and Shelf-life