Team:Aachen/Achievements

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=Achievements=
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On this page, we summarized all things we accomplished throughout our project "''Cellock Holmes'' - A Case of Identity", and present the medal criteria we have fulfilled for the iGEM competition 2014:
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     <div class="menusmall-item menusmall-info" style="height: 180px; width: 180px;"><div class="menukachel" style="top:32%; line-height:1.5em;">Medal Fulfillments</div></div>
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==Medal fulfillments==
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==Medal Fulfillments==
<span class="anchor" id="achmedals"></span>
<span class="anchor" id="achmedals"></span>
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===Bronze requirements===
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{| style="float:left; margin-left:30px; margin-bottom:20px"
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# Team registration.
+
| https://static.igem.org/mediawiki/2014/thumb/b/b8/Aachen_14-10-14_Bronze_iFG.png/230px-Aachen_14-10-14_Bronze_iFG.png
-
# Complete [https://igem.org/2014_Judging_Form?id=1319 Judging form].
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|<span style="font-size:150%">'''Bronze Requirements (6/6)'''</span>
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# Team [https://2014.igem.org/Team:Aachen/ Wiki].
+
# Our team was registered successfully.
-
# Present a poster and a talk at the iGEM Jamboree.
+
# The [https://igem.org/2014_Judging_Form?id=1319 Judging form] was completed.
-
# Participate in the [https://2014.igem.org/Team:Aachen/Interlab_Study Measurement Interlab Study]
+
# Team [https://2014.igem.org/Team:Aachen/ Wiki] was created.
-
# [https://2014.igem.org/Team:Aachen/Parts Parts] were submitted to the [http://parts.igem.org/Main_Page partsregistry].
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# We are looking forward to present a poster and a talk at the iGEM Jamboree.
 +
# We successfully participated in the [https://2014.igem.org/Team:Aachen/Interlab_Study Measurement Interlab Study].
 +
# Several [https://2014.igem.org/Team:Aachen/Parts parts] were submitted to the [http://parts.igem.org/Main_Page Registry of Standard Biological Parts].
 +
|-
 +
|colspan="2" | &nbsp;
 +
|-
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|https://static.igem.org/mediawiki/2014/thumb/4/42/Aachen_14-10-14_Silver_iFG.png/230px-Aachen_14-10-14_Silver_iFG.png
 +
|<span style="font-size:150%;">'''Silver Requirements (4/4)</span>
 +
# It was experimentally validated that [http://parts.igem.org/Part:BBa_K1319001 K1319001], [http://parts.igem.org/Part:BBa_K1319004 K1319004] and other [https://2014.igem.org/Team:Aachen/Parts BioBrick Parts] and Devices of our own design work as expected.
 +
# The characterization of [http://parts.igem.org/Part:BBa_K1319001 K1319001], [http://parts.igem.org/Part:BBa_K1319004 K1319004] and other [https://2014.igem.org/Team:Aachen/Parts BioBrick Parts] is documented in the 'Main Page' section of that Registry entry and in the parts section of our Wiki.
 +
# [http://parts.igem.org/Part:BBa_K1319001 K1319001], [http://parts.igem.org/Part:BBa_K1319004 K1319004] and other [https://2014.igem.org/Team:Aachen/Parts BioBrick Parts] were submitted to the iGEM Parts Registry.
 +
# During the project we addressed several [https://2014.igem.org/Team:Aachen/PolicyPractices important questions beyond the bench]. Together with students of the [https://2014.igem.org/Team:Aachen/Collaborations/Kaiser-Karls-Gymnasium Kaiser-Karls-Gymnasium] and the [https://2014.igem.org/Team:Aachen/Collaborations/Neanderlab Gymnasiun am Neandertal] as well as people at the [https://2014.igem.org/Team:Aachen/Collaborations/MakerFaire MakerFaire] and at the [https://2014.igem.org/Team:Aachen/Meetup iGEM Meetup] we discussed several issues regarding our project, microorganisms in our environment and synthetic biology. Since we use genetically engineered bacteria to detect human pathogens, [https://2014.igem.org/Team:Aachen/Safety safety] was an important aspect for us throughout the whole project. Together with other German iGEM Teams we encountered an issue regarding [https://2014.igem.org/Team:Aachen/PolicyPractices/BioBrickIntellectualProperty intellectual property rights] in context of the legal status of Biobricks.
 +
|-
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|colspan="2" | &nbsp;
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|-
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|https://static.igem.org/mediawiki/2014/thumb/5/5b/Aachen_14-10-14_Gold_iFG.png/230px-Aachen_14-10-14_Gold_iFG.png
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|<span style="font-size:150%;">'''Gold Requirements (4/1)'''</span>
 +
# We demonstrated a substantial improvement in cost efficiency of our [https://2014.igem.org/Team:Aachen/OD/F_device OD/F Device] in comparison to commercially available spectrophotometers. For more information see [https://2014.igem.org/Team:Aachen/PolicyPractices/Economics Economical View].
 +
# We increased the accessability of our new measurement techniques by sharing instructions to build our DIY devices [https://2014.igem.org/Team:Aachen/Notebook/Engineering/WatsOn#watsondiy ''WatsOn''] and the [https://2014.igem.org/Team:Aachen/Notebook/Engineering/ODF#diy OD/F Device].
 +
# Helped three other iGEM Teams:
 +
#:* We built a [https://2014.igem.org/Team:Aachen/Collaborations/Braunschweig low-cost DIY methane sensor] for [https://2014.igem.org/Team:Braunschweig Team Braunschweig].
 +
#:* We built [https://2014.igem.org/Team:Aachen/Collaborations/Freiburg AcCELLoMatrix Masks] for [https://2014.igem.org/Team:Freiburg Team Freiburg].
 +
#:* We [https://2014.igem.org/Team:Aachen/Collaborations/Heidelberg tested different expression vectors] constructed by [https://2014.igem.org/Team:Heidelberg Team Heidelberg].
 +
# On top of the Policy & Practice aspects already mentioned in the Silver Medal Requirements, we also critically [https://2014.igem.org/Team:Aachen/Collaborations/Neanderlab#neanderlabevaluation evaluated] the effectiveness of our approach to increase the social acceptance of gene technology in general, and of our initiative to spark interest for synthetic biology and DIY hardware.
 +
|}
-
===Silver requirements===
+
In addition to the medal criteria of the measurement track, we have characterized the existing BioBricks [http://parts.igem.org/Part:BBa_K131026:Experience K131026] and [http://parts.igem.org/Part:BBa_I746909:Experience I746909]. We improved [http://parts.igem.org/Part:BBa_K731520 K731520] by replacing the GFP with an iLOV (now [http://parts.igem.org/Part:BBa_K1319042 K1319042]) and showed that it functions in our two-dimensional biosensor ([[Team:Aachen/Project/2D_Biosensor#Achievements|link]]).
-
# Experimentally validate that at least one new BioBrick Part or Device of your own design and construction works as expected.
 
-
# Document the characterization of this part in the “Main Page” section of that Part’s/Device’s Registry entry.
 
-
# Submit this new part to the iGEM Parts Registry (submissions must adhere to the iGEM Registry guidelines).
 
-
# iGEM projects involve important questions beyond the bench, for example relating to (but not limited to) ethics, sustainability, social justice, safety, security, or intellectual property rights. Articulate at least one question encountered by your team, and describe how your team considered the(se) question(s) within your project. Include attributions to all experts and stakeholders consulted.
 
-
 
-
===Gold requirements===
 
-
# We demonstrated a substantial improvement over the state of the art in cost of your [https://2014.igem.org/Team:Aachen/PolicyPractices/Economics ''WatsOn''] and [https://2014.igem.org/Team:Aachen/OD/F_device OD/F Device]. For more information see [https://2014.igem.org/Team:Aachen/PolicyPractices#ppeconomics Economical View].
 
-
# Increase the ease of accessibility and portability of methods to other laboratories of a new measurement technique of your choosing.
 
-
# We helped three other iGEM Teams:
 
-
** We built a [https://2014.igem.org/Team:Aachen/Collaborations/Methane_Sensor low-cost DIY methane sensor] for [https://2014.igem.org/Team:Braunschweig Team Braunschweig].
 
-
** We built [https://2014.igem.org/Team:Aachen/Collaborations/Freiburg Data Matrix Masks] for [https://2014.igem.org/Team:Freiburg Team Freiburg]
 
-
** We [https://2014.igem.org/Team:Aachen/Collaborations/Heidelberg chracterize]d different expression vectors constructed by [https://2014.igem.org/Team:Heidelberg Team Heidelberg]
 
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[[File:Aachen_14-10-14_cellock_liegend_panel_iNB.png|right|150px]]
==Biosensor==
==Biosensor==
<span class="anchor" id="achbiosensor"></span>
<span class="anchor" id="achbiosensor"></span>
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[https://2014.igem.org/Team:Aachen/Project/2D_Biosensor Biosensor]
+
We developed and optimized a novel [https://2014.igem.org/Team:Aachen/Project/2D_Biosensor method] for detecting pathogens using a two dimensional biosensor. In our approach, the sensor cells are immobilized in '''[https://2014.igem.org/Team:Aachen/Project/2D_Biosensor#biosensordevelopment optimized agar chips]'''. It has been '''experimentally [https://2014.igem.org/Team:Aachen/Project/2D_Biosensor#biosensorachievements validated]''' that this method works for different kinds of reporter cells, induction substances and readout methods including our newly designed system [https://2014.igem.org/Team:Aachen/Project/Measurement_Device ''WatsOn''].
 +
 
 +
In order to improve the response of our sensor cells to induction we '''designed and engineered a novel [https://2014.igem.org/Team:Aachen/Project/FRET_Reporter reporter system]''' using a TEV protease to activate a reporter protein by cleaving off a quencher. A faster response in comparison to regular expression of the reporter protein was shown by '''[https://2014.igem.org/Team:Aachen/Project/Model computational modeling] as well as in our [https://2014.igem.org/Team:Aachen/Project/FRET_Reporter#reachachievements experiments]'''. All parts needed to build this kind of reporter system have been '''submitted to the parts registry'''.
 +
 
{{Team:Aachen/BlockSeparator}}
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[[File:Aachen WatsOn easy.png|right|150px]]
==''WatsOn''==
==''WatsOn''==
<span class="anchor" id="achwatson"></span>
<span class="anchor" id="achwatson"></span>
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[https://2014.igem.org/Team:Aachen/Project/Measurement_Device ''WatsOn'']
+
[https://2014.igem.org/Team:Aachen/Project/Measurement_Device ''WatsOn''] is a measuring device designed to read out novel two dimensional biosensor. Using ''WatsOn'', we could demonstrate the '''successful detection''' of ''Pseudomonas&nbsp;aeruginosa'' with our chip technology. This measurement device is built from inexpensive and easily available parts to make it ideal for use in low-budget institutions. Following our economic strategy embracing the Open Access principle, we published all technical details and constructional manuals for ''WatsOn'' on our wiki.
 +
 
 +
In addition, we have shown that our '''image analysis software [https://2014.igem.org/Team:Aachen/Project/Measurement_Device#watsonmeasurarty ''Measurarty'']''' can analyze photos of the sensor chips taken by ''WatsOn'' and can '''effectively segment the image''' into pathogenic regions and non-pathogenic regions.
 +
 
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[[File:Aachen_14-10-10_ODF_Button_ipo.png|right|150px]]
==OD/F Device==
==OD/F Device==
<span class="anchor" id="achdevice"></span>
<span class="anchor" id="achdevice"></span>
-
[https://2014.igem.org/Team:Aachen/OD/F_device OD/F Device]
+
In addition to our main project, we built an [https://2014.igem.org/Team:Aachen/OD/F_device OD/F Device] capable of measuring optical density and flourescence. It '''beats commercially available devices in cost and portability'''. It can be built with common, inexpensive and easily available parts. A [https://2014.igem.org/Team:Aachen/Notebook/Engineering/ODF#diy construction manual] is available on our wiki.
 +
 
 +
The device has been '''successfully tested''' with one of the target groups, high school students, in our collaboration with the [https://2014.igem.org/Team:Aachen/Collaborations/Neanderlab NEAnderLab].
 +
 
{{Team:Aachen/BlockSeparator}}
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==Interlab study==
+
[[File:Aachen_Interlab_Cellocks.png|right|150px]]
 +
 
 +
==Interlab Study==
<span class="anchor" id="achinterlab"></span>
<span class="anchor" id="achinterlab"></span>
-
[https://2014.igem.org/Team:Aachen/Interlab_Study Measurement Interlab Study]
+
Since we compete in the Measurement Track of this year's iGEM competition, one of our bronze medal criteria was to participate in the [https://2014.igem.org/Team:Aachen/Interlab_Study Measurement Interlab Study]. Our team was able to measure optical density and fluorescence of ''E.&nbsp;coli'' cells containing the three specified genetic devices, and '''obtained high quality data''' supporting the hypotheses regarding different expression levels depending on plamid copy number and promoter strength.
 +
 
{{Team:Aachen/Footer}}
{{Team:Aachen/Footer}}

Latest revision as of 03:55, 18 October 2014

Achievements

On this page, we summarized all things we accomplished throughout our project "Cellock Holmes - A Case of Identity", and present the medal criteria we have fulfilled for the iGEM competition 2014:

Medal Fulfillments

230px-Aachen_14-10-14_Bronze_iFG.png Bronze Requirements (6/6)
  1. Our team was registered successfully.
  2. The Judging form was completed.
  3. Team Wiki was created.
  4. We are looking forward to present a poster and a talk at the iGEM Jamboree.
  5. We successfully participated in the Measurement Interlab Study.
  6. Several parts were submitted to the [http://parts.igem.org/Main_Page Registry of Standard Biological Parts].
 
230px-Aachen_14-10-14_Silver_iFG.png Silver Requirements (4/4)
  1. It was experimentally validated that [http://parts.igem.org/Part:BBa_K1319001 K1319001], [http://parts.igem.org/Part:BBa_K1319004 K1319004] and other BioBrick Parts and Devices of our own design work as expected.
  2. The characterization of [http://parts.igem.org/Part:BBa_K1319001 K1319001], [http://parts.igem.org/Part:BBa_K1319004 K1319004] and other BioBrick Parts is documented in the 'Main Page' section of that Registry entry and in the parts section of our Wiki.
  3. [http://parts.igem.org/Part:BBa_K1319001 K1319001], [http://parts.igem.org/Part:BBa_K1319004 K1319004] and other BioBrick Parts were submitted to the iGEM Parts Registry.
  4. During the project we addressed several important questions beyond the bench. Together with students of the Kaiser-Karls-Gymnasium and the Gymnasiun am Neandertal as well as people at the MakerFaire and at the iGEM Meetup we discussed several issues regarding our project, microorganisms in our environment and synthetic biology. Since we use genetically engineered bacteria to detect human pathogens, safety was an important aspect for us throughout the whole project. Together with other German iGEM Teams we encountered an issue regarding intellectual property rights in context of the legal status of Biobricks.
 
230px-Aachen_14-10-14_Gold_iFG.png Gold Requirements (4/1)
  1. We demonstrated a substantial improvement in cost efficiency of our OD/F Device in comparison to commercially available spectrophotometers. For more information see Economical View.
  2. We increased the accessability of our new measurement techniques by sharing instructions to build our DIY devices WatsOn and the OD/F Device.
  3. Helped three other iGEM Teams:
  4. On top of the Policy & Practice aspects already mentioned in the Silver Medal Requirements, we also critically evaluated the effectiveness of our approach to increase the social acceptance of gene technology in general, and of our initiative to spark interest for synthetic biology and DIY hardware.

In addition to the medal criteria of the measurement track, we have characterized the existing BioBricks [http://parts.igem.org/Part:BBa_K131026:Experience K131026] and [http://parts.igem.org/Part:BBa_I746909:Experience I746909]. We improved [http://parts.igem.org/Part:BBa_K731520 K731520] by replacing the GFP with an iLOV (now [http://parts.igem.org/Part:BBa_K1319042 K1319042]) and showed that it functions in our two-dimensional biosensor (link).


Aachen 14-10-14 cellock liegend panel iNB.png

Biosensor

We developed and optimized a novel method for detecting pathogens using a two dimensional biosensor. In our approach, the sensor cells are immobilized in optimized agar chips. It has been experimentally validated that this method works for different kinds of reporter cells, induction substances and readout methods including our newly designed system WatsOn.

In order to improve the response of our sensor cells to induction we designed and engineered a novel reporter system using a TEV protease to activate a reporter protein by cleaving off a quencher. A faster response in comparison to regular expression of the reporter protein was shown by computational modeling as well as in our experiments. All parts needed to build this kind of reporter system have been submitted to the parts registry.


Aachen WatsOn easy.png

WatsOn

WatsOn is a measuring device designed to read out novel two dimensional biosensor. Using WatsOn, we could demonstrate the successful detection of Pseudomonas aeruginosa with our chip technology. This measurement device is built from inexpensive and easily available parts to make it ideal for use in low-budget institutions. Following our economic strategy embracing the Open Access principle, we published all technical details and constructional manuals for WatsOn on our wiki.

In addition, we have shown that our image analysis software Measurarty can analyze photos of the sensor chips taken by WatsOn and can effectively segment the image into pathogenic regions and non-pathogenic regions.


Aachen 14-10-10 ODF Button ipo.png

OD/F Device

In addition to our main project, we built an OD/F Device capable of measuring optical density and flourescence. It beats commercially available devices in cost and portability. It can be built with common, inexpensive and easily available parts. A construction manual is available on our wiki.

The device has been successfully tested with one of the target groups, high school students, in our collaboration with the NEAnderLab.


Aachen Interlab Cellocks.png

Interlab Study

Since we compete in the Measurement Track of this year's iGEM competition, one of our bronze medal criteria was to participate in the Measurement Interlab Study. Our team was able to measure optical density and fluorescence of E. coli cells containing the three specified genetic devices, and obtained high quality data supporting the hypotheses regarding different expression levels depending on plamid copy number and promoter strength.