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− | <li><a href="https://2017.igem.org/Team:UST_Beijing/ | + | <li><a href="https://2017.igem.org/Team:UST_Beijing/Cyclase">Cyclase</a></li> |
<li><a href="https://2017.igem.org/Team:UST_Beijing/Experiments">Glucosidase</a></li> | <li><a href="https://2017.igem.org/Team:UST_Beijing/Experiments">Glucosidase</a></li> | ||
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+ | <section style="background-image:url(https://static.igem.org/mediawiki/2017/f/f8/Ustbbjbj.png);background-position:center center;background-repeat:no-repeat;-moz-background-size: cover;background-size: cover;background-attachment:fixed;"> | ||
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− | + | <br /><br /><br /> | |
− | + | <h2 style="font-family:Arial">InterLab Measurement Study</h2><br /> | |
− | + | <p class="text-justify" style="width:700px;text-indent:1em; text-align: left;font-size:18px;line-height:28px;font-family:Arial"> | |
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“All of the 2017 iGEM teams are invited and encouraged to participate in the Fourth International InterLaboratory Measurement Study in synthetic biology.” The goal of our team is to use the InterLab protocol and Measurement Kit provided by iGEM official to do measurements which can help to establish a GFP measurement protocol based on engineering principles that anyone with a plate reader can use in their lab. The specific task for us is to measure GFP fluorescence and standard curve by using plate reader. | “All of the 2017 iGEM teams are invited and encouraged to participate in the Fourth International InterLaboratory Measurement Study in synthetic biology.” The goal of our team is to use the InterLab protocol and Measurement Kit provided by iGEM official to do measurements which can help to establish a GFP measurement protocol based on engineering principles that anyone with a plate reader can use in their lab. The specific task for us is to measure GFP fluorescence and standard curve by using plate reader. | ||
</p> | </p> | ||
− | + | <br /><br /><br /><br /><br /><br /> | |
− | + | <p style="width:700px;border-bottom:1px solid black; font-family:Arial;font-size:28px;line-height:50px;text-align: left">Plasmids used</p> | |
− | + | <br /> | |
− | + | <p class="text-justify" style="width:700px;font-size:18px;line-height:28px;font-family:Arial" > | |
− | + | Kit Plate 7 <br /> | |
− | + | Positive Control (BBa_I20270): well 21B<br /> | |
− | + | Negative Control (BBa_R0040): well 21D<br /> | |
− | + | Test Device 1 (BBa_J364000): well 21F<br /> | |
− | < | + | Test Device 2 (BBa_J364001): well 21H<br /> |
− | + | Test Device 3 (BBa_J364002): well 21J<br /> | |
− | + | Test Device 4 (BBa_J364003): well 21L<br /> | |
− | Kit Plate 7 <br/> | + | Test Device 5 (BBa_J364004): well 21N<br /> |
− | + | Test Device 6 (BBa_J364005): well 21P<br /> | |
− | Positive Control (BBa_I20270): well 21B<br/> | + | <br /> |
− | Negative Control (BBa_R0040): well 21D<br/> | + | |
− | Test Device 1 (BBa_J364000): well 21F<br/> | + | |
− | Test Device 2 (BBa_J364001): well 21H<br/> | + | |
− | Test Device 3 (BBa_J364002): well 21J<br/> | + | |
− | Test Device 4 (BBa_J364003): well 21L<br/> | + | |
− | Test Device 5 (BBa_J364004): well 21N<br/> | + | |
− | Test Device 6 (BBa_J364005): well 21P<br/> | + | |
− | <br/> | + | |
</p> | </p> | ||
− | + | <br /><br /><br /> | |
− | + | <p style="width:700px;border-bottom:1px solid black; font-family:Arial;font-size:28px;line-height:50px;text-align: left">Strain used</p> | |
− | + | <br /> | |
− | Escherichia coli DH5α <br/> | + | <p class="text-justify" style="width:700px;font-size:18px;line-height:28px;font-family:Arial" > |
− | + | Escherichia coli DH5α<br /> | |
− | + | <br /> | |
− | + | </p> | |
− | + | <br /><br /><br /> | |
− | + | <p style="width:700px;border-bottom:1px solid black; font-family:Arial;font-size:28px;line-height:50px;text-align: left">Materials</p> | |
− | + | <br /> | |
− | + | <p class="text-justify" style="width:700px;font-size:18px;line-height:28px;font-family:Arial" > | |
− | + | FITC Standard: one tube with dried down FITC for creating a FITC standard <br /> | |
− | + | LUDOX: one tube with 30% colloidal silica suspended in 1mL of water <br /> | |
− | + | 1xPBS (phosphate buffered saline) <br /> | |
− | + | LB (Luria Bertani) media <br /> | |
− | + | Chloramphenicol (stock concentration 25 mg/mL dissolved in EtOH) <br /> | |
− | + | 50 ml Falcon tube (or equivalent) or 250 ml shake flask for cell growth <br /> | |
− | + | 1.5 ml eppendorf tubes for sample storage <br /> | |
− | + | Ice bucket with ice <br /> | |
− | <br/> | + | Pipettes <br /> |
− | + | 96 well plate <br /> | |
− | + | <br /> | |
− | + | </p> | |
− | + | <br /><br /><br /> | |
− | + | <p style="width:700px;border-bottom:1px solid black; font-family:Arial;font-size:28px;line-height:50px;text-align: left">Machines</p> | |
− | < | + | <br /> |
− | + | <p class="text-justify" style="width:700px;font-size:18px;line-height:28px;font-family:Arial" > | |
− | + | Enspire 2300-001M<br /> | |
− | Enspire 2300-001M<br/> | + | Sigma Laborzentrifugen<br /> |
− | Sigma Laborzentrifugen<br/> | + | Thermo Scientific Nanodrop 2000<br /> |
− | Thermo Scientific Nanodrop 2000<br/> | + | EVOS AMG microscope<br /> |
− | EVOS AMG microscope<br/> | + | <br/> |
− | + | </p> | |
− | + | <br /><br /><br /> | |
− | + | <p style="width:700px;border-bottom:1px solid black; font-family:Arial;font-size:28px;line-height:50px;text-align: left">Software</p> | |
− | + | <br /> | |
− | + | <p class="text-justify" style="width:700px;font-size:18px;line-height:28px;font-family:Arial" > | |
− | + | Microsoft Excel<br /> | |
− | Microsoft Excel<br/> | + | <br/> |
− | + | </p> | |
− | + | <br /><br /><br /> | |
− | + | <p style="width:700px;border-bottom:1px solid black; font-family:Arial;font-size:28px;line-height:50px;text-align: left">Methods</p> | |
− | + | <br /> | |
− | + | <p class="text-justify" style="width:700px;font-size:18px;line-height:28px;font-family:Arial" > | |
− | + | Calibration<br /> | |
− | + | OD600 Reference point<br /> | |
− | + | FITC fluorescence standard curve<br /> | |
− | + | Test Device 1 (BBa_J364000): well 21F<br /> | |
− | + | Test Device 2 (BBa_J364001): well 21H<br /> | |
− | + | Test Device 3 (BBa_J364002): well 21J<br /> | |
− | + | Test Device 4 (BBa_J364003): well 21L<br /> | |
− | Calibration<br/> | + | Test Device 5 (BBa_J364004): well 21N<br /> |
− | OD600 Reference point<br/> | + | Test Device 6 (BBa_J364005): well 21P<br /> |
− | FITC fluorescence standard curve<br/> | + | <br/> |
− | Test Device 1 (BBa_J364000): well 21F<br/> | + | </p> |
− | Test Device 2 (BBa_J364001): well 21H<br/> | + | <br /><br /><br /> |
− | Test Device 3 (BBa_J364002): well 21J<br/> | + | <p style="width:700px;border-bottom:1px solid black; font-family:Arial;font-size:28px;line-height:50px;text-align: left">Cell measurement</p> |
− | Test Device 4 (BBa_J364003): well 21L<br/> | + | <br /> |
− | Test Device 5 (BBa_J364004): well 21N<br/> | + | <p class="text-justify" style="width:700px;font-size:18px;line-height:28px;font-family:Arial"> |
− | Test Device 6 (BBa_J364005): well 21P<br/> | + | Transformation<br /> |
− | + | Measurements<br /> | |
− | + | <br/> | |
− | + | </p> | |
− | + | <br /><br /><br /> | |
− | + | <p style="width:700px;border-bottom:1px solid black; font-family:Arial;font-size:28px;line-height:50px;text-align: left">Protocols</p> | |
− | + | <br /> | |
− | Transformation<br/> | + | <p class="text-justify" style="width:700px;font-size:18px;line-height:28px;font-family:Arial" > |
− | Measurements | + | <a href="http://parts.igem.org/Help:Protocols/Transformation" style="color:blue">Please click here</a> |
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<div class="container" align="center"> | <div class="container" align="center"> | ||
<p align="center" style="font-size: 5px"><br><h5>Copyright © 2017 UST_Beijing iGEM. All rights reserved.</h5></p> | <p align="center" style="font-size: 5px"><br><h5>Copyright © 2017 UST_Beijing iGEM. All rights reserved.</h5></p> | ||
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</body> | </body> | ||
Latest revision as of 16:59, 1 November 2017
InterLab Measurement Study
“All of the 2017 iGEM teams are invited and encouraged to participate in the Fourth International InterLaboratory Measurement Study in synthetic biology.” The goal of our team is to use the InterLab protocol and Measurement Kit provided by iGEM official to do measurements which can help to establish a GFP measurement protocol based on engineering principles that anyone with a plate reader can use in their lab. The specific task for us is to measure GFP fluorescence and standard curve by using plate reader.
Plasmids used
Kit Plate 7
Positive Control (BBa_I20270): well 21B
Negative Control (BBa_R0040): well 21D
Test Device 1 (BBa_J364000): well 21F
Test Device 2 (BBa_J364001): well 21H
Test Device 3 (BBa_J364002): well 21J
Test Device 4 (BBa_J364003): well 21L
Test Device 5 (BBa_J364004): well 21N
Test Device 6 (BBa_J364005): well 21P
Strain used
Escherichia coli DH5α
Materials
FITC Standard: one tube with dried down FITC for creating a FITC standard
LUDOX: one tube with 30% colloidal silica suspended in 1mL of water
1xPBS (phosphate buffered saline)
LB (Luria Bertani) media
Chloramphenicol (stock concentration 25 mg/mL dissolved in EtOH)
50 ml Falcon tube (or equivalent) or 250 ml shake flask for cell growth
1.5 ml eppendorf tubes for sample storage
Ice bucket with ice
Pipettes
96 well plate
Machines
Enspire 2300-001M
Sigma Laborzentrifugen
Thermo Scientific Nanodrop 2000
EVOS AMG microscope
Software
Microsoft Excel
Methods
Calibration
OD600 Reference point
FITC fluorescence standard curve
Test Device 1 (BBa_J364000): well 21F
Test Device 2 (BBa_J364001): well 21H
Test Device 3 (BBa_J364002): well 21J
Test Device 4 (BBa_J364003): well 21L
Test Device 5 (BBa_J364004): well 21N
Test Device 6 (BBa_J364005): well 21P
Cell measurement
Transformation
Measurements
Protocols