Imperial/Cell by Date/Conclusion

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= Cell by Date: Conclusion =
= Cell by Date: Conclusion =
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Cell By Date is a great example of how synthetic biology can be integrated into our daily lives. When fully developed it can mimic the function of inducstrial level devices in the food industry at a fraction of the cost. Being a reporter of a break in the cold chain, CBD, can inform the end consumer whether the product he is buying has been exposed to abnormal storage conditions.
 
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This is best explained with an example. Imagine your local supermarket expecting a delivery of frozen lamb steaks. The delivery van arrives, the goods are unloaded and placed on the shelves awaiting for their first victim to arrive. Victim because what the supermarket manager and the end consumer are not aware of is that during their transport the van fridge broke down and thus the steaks were defrosted. The vab driver however fixed the fault, refroze the meat and told nothing upon his arrival to the supermarket. The whole incident will be kept under cover until the first cases of food poisoning arise from the comprimised lamb meat.
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{|border="1" width="80%" align="center"
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|-
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|width="20%" style="background:#ffffcc"|<center>'''Property'''</center>
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|width="--"|<center>'''Value'''</center>
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|<center>'''Achieved ?'''</center>
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|-
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|style="background:#ffffcc"|Inputs
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|<center>Isothermal conditions between 0 & 40 C</center>
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||'''<font color=green>4&deg;C shows negligible activity while 37&deg;C shows highest fluorescence
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This is were CBD comes in handy. By embedding a sticker of CBD on packaged goods, the consumer can check at any time whether the product quality has been comprimised by exposure to ubnormally high temperatures. Just a glance at the sticker and its bright fluorescent colour will inform the buyer of a potential risk. That is if the quality control expert of the supermarket does not spot it first.
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|-
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|style="background:#ffffcc"|
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|<center>Dynamic conditions eg. steps & ramps</center>
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||'''<font color=green>The system responded to stepping of temperature up and down</font>'''
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|-
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|style="background:#ffffcc"|Outputs
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|<center>System should give a visual signal to indicate level of thermal exposure where beef is off</center>
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|'''<font color=red>Not Determined- DSred Express can be substituted for GFPmut3b</font>'''
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|-
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|style="background:#ffffcc"|Activation Energy
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|<center>System needs to have an activation Energy 30 +/- 20 kJ/mol</center>
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||'''<font color=red>Activation energy of system was calculated to be 1.5kJ/mol</font>'''
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|-
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|style="background:#ffffcc"|Health Regulations
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|<center>System must not be living replicating bacteria</center>
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|<center>'''<font color=green>Yes through use of cell free chassis</font>''' </center>
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|-
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|style="background:#ffffcc"|Response Time
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|<center>System needs to have a response time under 1 hour</center>
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||'''<font color=green>Yes system increases significantly after 1 hour</font>'''
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|-
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|style="background:#ffffcc"|Lifespan
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|<center>System must have a shelf life of 7 days</center>
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||'''<font color=red>Not Determined- Packaging method that prevents evaporation</font>'''
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|}
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<br clear="all">
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Even though not fully characterised, promising progress has been made and shows that even without tweaking the initial design, Cell by Date has a great potential just waiting to be exploited.
 
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= Future Work =
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Cell by Date is exemplary in how Synthetic Biology can be integrated into our everyday lives. If the system was properly coupled to the spoilage of meat, it could mimic the function of industrial level devices in the meat industry, all at a fraction of the cost. By constantly monitoring for a break in the cold chain, CBD will inform consumers of any mishandling of the product, and whether or not the meat has been exposed to inappropriate storage/transport conditions.
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===Extending life of reaction===
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[[Image:IC2007 CBD packaging.jpg|thumb|left|430px|'''CBD deactivated''' - Cold chain has not been disrupted]]
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[[Image:IC2007 CBD packaging2.jpg|thumb|right|430px|'''CBD activated''' (Red Glow) - Cold chain has been disrupted]]
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On a bigger note, Cell by Date could be extended beyond the meat industry unto cold chain management iteself, targetting, in particular, pharmaceuticals. This is evident in the global supply of vaccines, especially to those in distant clinics in hot climates which are served by poorly developed transport networks. Under these circumstances, a break in the cold chain could severely compromise the efficacy of the vaccines, and disrupt the administering of a vaccination campaign that could bring more harm than good. As many vaccines are particularly temperature-sensitive, Cell by Date may in fact be more appropriately suited to such products that require a more sensitiive monitoring device like CBD.
 +
In conclusion, even though not fully characterised, promising progress has been made, in which our system shows that even without tweaking the initial design, Cell by Date has a great potential that is just waiting to be exploited.
 +
 +
== Future Work ==
 +
 +
===Extending the life of the reaction===
 +
 +
A major constraint of CBD is its short lifetime. The cell-free extract that is currently used can only support it for a maximum of a few days, or for the production of 12mg of protein whichever comes first. A good approach to further this project would thus be to develop and optimise the cell extracts such that is is capable of expression over the lifespan of the product that it is monitoring.
===Packaging===
===Packaging===
-
Being cell-free, Cell by Date, makes it easier to be embedded on food packaging. This calls for an efficient packaging method that is transparent (for the person to be able to see the fluorescent protein) but also well isolated from the actual food source (to avoid contamination). There are also 2 important factors that need to be taken into consideration. The first is the fact that the cell extract requires oxygen for the reaction to occur. What is not known is how much is needed. This raises the issue whether sealing CBD in a package with limited oxygen will prevent the reaction from occuring. The other factor is evaporation. The smaller the sample tested, the more the evaporation there was and the quicker the reaction mixture vanished. The packaging must therefore sustain the volume of the reaction for the lifespan of the food product.
+
Packaging is also another aspect of Cell by Date that can be further developed. Being cell-free, it is generally easier for CBD be embedded on food packaging, which calls for an efficient packaging method that is transparent (for the person to be able to see the fluorescent protein), but also well isolated from the actual food source (to avoid contamination).  
 +
 
 +
Two important factors however need to be taken into consideration. The first is the fact that the cell extract requires oxygen for the maturation of GFP. It is indetermined of the amount of oxygen required at present, and more tests would need to be performed to understand the conditions of a limited oxygen environment.  
 +
 
 +
The other factor is evaporation. This is a huge factor, and posed a lot of problems for us over the course of experimentation as it affected the performance of the reaction mixture. The packaging must therefore be able to sustain the volume of the reaction mixture for the lifespan of the product as to ensure its efficacy as a temperature-time integrator.
 +
 
 +
 
 +
[[Image:IC2007 CBD packaging3.jpg|thumb|left|430px|'''CBD deactivated''' - Cold chain has not been disrupted]]
 +
[[Image:IC2007 CBD packaging4.jpg|thumb|right|430px|'''CBD activated''' (Red Glow) - Cold chain has been disrupted]]
 +
 
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<center> [https://2007.igem.org/Imperial/Cell_by_Date/Testing << Testing ] | Future Work | [https://2007.igem.org/Imperial Home >> ]</center>
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<center> [https://2007.igem.org/Imperial/Cell_by_Date/Testing << Testing ] | Conclusions | [https://2007.igem.org/Imperial Home >> ]</center>

Latest revision as of 02:36, 27 October 2007




Cell by Date: Conclusion

Property
Value
Achieved ?
Inputs
Isothermal conditions between 0 & 40 C
4°C shows negligible activity while 37°C shows highest fluorescence
Dynamic conditions eg. steps & ramps
The system responded to stepping of temperature up and down
Outputs
System should give a visual signal to indicate level of thermal exposure where beef is off
Not Determined- DSred Express can be substituted for GFPmut3b
Activation Energy
System needs to have an activation Energy 30 +/- 20 kJ/mol
Activation energy of system was calculated to be 1.5kJ/mol
Health Regulations
System must not be living replicating bacteria
Yes through use of cell free chassis
Response Time
System needs to have a response time under 1 hour
Yes system increases significantly after 1 hour
Lifespan
System must have a shelf life of 7 days
Not Determined- Packaging method that prevents evaporation



Cell by Date is exemplary in how Synthetic Biology can be integrated into our everyday lives. If the system was properly coupled to the spoilage of meat, it could mimic the function of industrial level devices in the meat industry, all at a fraction of the cost. By constantly monitoring for a break in the cold chain, CBD will inform consumers of any mishandling of the product, and whether or not the meat has been exposed to inappropriate storage/transport conditions.


CBD deactivated - Cold chain has not been disrupted
CBD activated (Red Glow) - Cold chain has been disrupted

On a bigger note, Cell by Date could be extended beyond the meat industry unto cold chain management iteself, targetting, in particular, pharmaceuticals. This is evident in the global supply of vaccines, especially to those in distant clinics in hot climates which are served by poorly developed transport networks. Under these circumstances, a break in the cold chain could severely compromise the efficacy of the vaccines, and disrupt the administering of a vaccination campaign that could bring more harm than good. As many vaccines are particularly temperature-sensitive, Cell by Date may in fact be more appropriately suited to such products that require a more sensitiive monitoring device like CBD.

In conclusion, even though not fully characterised, promising progress has been made, in which our system shows that even without tweaking the initial design, Cell by Date has a great potential that is just waiting to be exploited.

Future Work

Extending the life of the reaction

A major constraint of CBD is its short lifetime. The cell-free extract that is currently used can only support it for a maximum of a few days, or for the production of 12mg of protein whichever comes first. A good approach to further this project would thus be to develop and optimise the cell extracts such that is is capable of expression over the lifespan of the product that it is monitoring.

Packaging

Packaging is also another aspect of Cell by Date that can be further developed. Being cell-free, it is generally easier for CBD be embedded on food packaging, which calls for an efficient packaging method that is transparent (for the person to be able to see the fluorescent protein), but also well isolated from the actual food source (to avoid contamination).

Two important factors however need to be taken into consideration. The first is the fact that the cell extract requires oxygen for the maturation of GFP. It is indetermined of the amount of oxygen required at present, and more tests would need to be performed to understand the conditions of a limited oxygen environment.

The other factor is evaporation. This is a huge factor, and posed a lot of problems for us over the course of experimentation as it affected the performance of the reaction mixture. The packaging must therefore be able to sustain the volume of the reaction mixture for the lifespan of the product as to ensure its efficacy as a temperature-time integrator.


CBD deactivated - Cold chain has not been disrupted
CBD activated (Red Glow) - Cold chain has been disrupted




<< Testing | Conclusions | Home >>