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| <img src="https://static.igem.org/mediawiki/2018/9/99/T--NKU_CHINA--fourth-list-icon.png" alt=""> | | <img src="https://static.igem.org/mediawiki/2018/9/99/T--NKU_CHINA--fourth-list-icon.png" alt=""> |
| </div> | | </div> |
− | <h4>CFU per 0.1 OD600 E. coli cultures</h4> | + | <h4>CFU per 0.1 OD<sub>600</sub> E. coli cultures</h4> |
| </div> | | </div> |
| </a> | | </a> |
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| <div class="col-md-6"> | | <div class="col-md-6"> |
| <div class="left-text"> | | <div class="left-text"> |
− | <h4>OD 600 Reference point</h4> | + | <h4>OD<sub>600</sub> Reference point</h4> |
− | <p>❏ Add 100μL LUDOX into wells A1, B1, C1, D1 <br>❏ Add 100μL of dd H<sub>2</sub>O into wells A2, B2, C2, D2 <br>❏ Measure absorbance at 600 nm of all samples in the measurement mode you plan to use for cell measurements <br>❏ Record the data in the table below or in your notebook <br>❏ Import data into Excel sheet provided (OD600 reference point tab)<br><br> </p> | + | <p>❏ Add 100μL LUDOX into wells A1, B1, C1, D1 <br>❏ Add 100μL of dd H<sub>2</sub>O into wells A2, B2, C2, D2 <br>❏ Measure absorbance at 600 nm of all samples in the measurement mode you plan to use for cell measurements <br>❏ Record the data in the table below or in your notebook <br>❏ Import data into Excel sheet provided (OD<sub>600</sub> reference point tab)<br><br> </p> |
| <h4>Particle Standard Curve</h4> | | <h4>Particle Standard Curve</h4> |
− | <p>❏ Obtain the tube labeled ”Silica Beads” from the InterLab test kit and vortex vigorously for 30 seconds. <br>❏ Immediately pipet 96 μL microspheres into a 1.5 mL eppendorf tube <br>❏ Add 904μL of ddH<sub>2</sub>O to the microspheres <br>❏ Vortex well. This is your Microsphere Stock Solution. <br>❏ Repeat dilution series for rows B, C, D <br>❏ Re-Mix (Pipette up and down) each row of plate immediately before putting in the plate reader<br>❏ Measure Abs600 of all samples in instrument <br>❏ Record the data in your notebook <br>❏ Import data into Excel sheet provided (particle standard curve tab) </p> | + | <p>❏ Obtain the tube labeled ”Silica Beads” from the InterLab test kit and vortex vigorously for 30 seconds. <br>❏ Immediately pipet 96 μL microspheres into a 1.5 mL eppendorf tube <br>❏ Add 904μL of ddH<sub>2</sub>O to the microspheres <br>❏ Vortex well. This is your Microsphere Stock Solution. <br>❏ Repeat dilution series for rows B, C, D <br>❏ Re-Mix (Pipette up and down) each row of plate immediately before putting in the plate reader<br>❏ Measure Abs<sub>600</sub> of all samples in instrument <br>❏ Record the data in your notebook <br>❏ Import data into Excel sheet provided (particle standard curve tab) </p> |
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| </div> | | </div> |
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| <div class="left-text"> | | <div class="left-text"> |
| <h4>Cell measurement</h4> | | <h4>Cell measurement</h4> |
− | <p>❏ Pick 2 colonies from each of the transformation plates and inoculate in 5-10 mL LB medium +Chloramphenicol. Grow the cells overnight (16-18 hours) at 37°C and 220 rpm<br>❏ Make a 1:10 dilution of each overnight culture in LB+Chloramphenicol (0.5mL of culture into 4.5mL of LB+Chlor) <br>❏ Measure Abs 600 of these 1:10 diluted cultures <br>❏ Record the data in your notebook <br>❏ Dilute the cultures further to a target Abs600 of 0.02 in a final volume of 12 mL LB medium + Chloramphenicol in 50 mL falcon tube (amber, or covered with foil to block light). <br>❏ Take 500 µL samples of the diluted cultures at 0 hours into 1.5 mL eppendorf tubes, prior to incubation. (At each time point 0 hours and 6 hours, you will take a sample from each of the 8 devices, two colonies per device, for a total of 16 eppendorf tubes with 500 µL samples per time point, 32 samples total). Place the samples on ice. <br>❏ Incubate the remainder of the cultures at 37°C and 220 rpm for 6 hours. <br>❏ Take 500 µL samples of the cultures at 6 hours of incubation into 1.5 mL eppendorf tubes. Place samples on ice. <br>❏ At the end of sampling point you need to measure your samples (Abs 600 and fluorescence measurement), see the below for details. <br>❏ Record data in your notebook <br>❏ Import data into Excel sheet provided (fluorescence measurement tab) </p> | + | <p>❏ Pick 2 colonies from each of the transformation plates and inoculate in 5-10 mL LB medium +Chloramphenicol. Grow the cells overnight (16-18 hours) at 37°C and 220 rpm<br>❏ Make a 1:10 dilution of each overnight culture in LB+Chloramphenicol (0.5mL of culture into 4.5mL of LB+Chlor) <br>❏ Measure Abs<sub>600</sub> of these 1:10 diluted cultures <br>❏ Record the data in your notebook <br>❏ Dilute the cultures further to a target Abs<sub>600</sub> of 0.02 in a final volume of 12 mL LB medium + Chloramphenicol in 50 mL falcon tube (amber, or covered with foil to block light). <br>❏ Take 500 µL samples of the diluted cultures at 0 hours into 1.5 mL eppendorf tubes, prior to incubation. (At each time point 0 hours and 6 hours, you will take a sample from each of the 8 devices, two colonies per device, for a total of 16 eppendorf tubes with 500 µL samples per time point, 32 samples total). Place the samples on ice. <br>❏ Incubate the remainder of the cultures at 37°C and 220 rpm for 6 hours. <br>❏ Take 500 µL samples of the cultures at 6 hours of incubation into 1.5 mL eppendorf tubes. Place samples on ice. <br>❏ At the end of sampling point you need to measure your samples (Abs <sub>600</sub> and fluorescence measurement), see the below for details. <br>❏ Record data in your notebook <br>❏ Import data into Excel sheet provided (fluorescence measurement tab) </p> |
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| </div> | | </div> |
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| <div class="col-md-6"> | | <div class="col-md-6"> |
| <div class="left-text"> | | <div class="left-text"> |
− | <h4>CFU per 0.1 OD600 E. coli cultures</h4> | + | <h4>CFU per 0.1 OD<sub>600</sub> E. coli cultures</h4> |
− | <p>❏ culture colonies for two Positive Control (BBa_I20270) cultures and your two Negative Control (BBa_R0040) cultures for 16-18 hours <br>❏ Dilute the overnight culture to OD600 = 0.1 in 1mL of LB + Cam media. Do this in triplicate for each culture. Check the OD600 and make sure it is 0.1<br>❏ Aseptically spead plate 100 μL on LB + Cam plates for those Final Dilution Factor is 8 x 10<sup>4</sup> or 8 x 10<sup>5</sup> or 8 x 10<sup>6</sup><br>❏ Incubate at 37°C overnight and count colonies after 18-20 hours of growth<br>❏ Count the colonies on each plate with fewer than 300 colonies. Multiple the colony count by the Final Dilution Factor on each plate. </p> | + | <p>❏ culture colonies for two Positive Control (BBa_I20270) cultures and your two Negative Control (BBa_R0040) cultures for 16-18 hours <br>❏ Dilute the overnight culture to OD<sub>600</sub> = 0.1 in 1mL of LB + Cam media. Do this in triplicate for each culture. Check the OD<sub>600</sub> and make sure it is 0.1<br>❏ Aseptically spead plate 100 μL on LB + Cam plates for those Final Dilution Factor is 8 x 10<sup>4</sup> or 8 x 10<sup>5</sup> or 8 x 10<sup>6</sup><br>❏ Incubate at 37°C overnight and count colonies after 18-20 hours of growth<br>❏ Count the colonies on each plate with fewer than 300 colonies. Multiple the colony count by the Final Dilution Factor on each plate. </p> |
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| </div> | | </div> |
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| <ul class="tabs clearfix" data-tabgroup="first-tab-group"> | | <ul class="tabs clearfix" data-tabgroup="first-tab-group"> |
| <li><a href="#tab1" class="active"> | | <li><a href="#tab1" class="active"> |
− | OD 600 Reference point | + | OD <sub>600</sub> Reference point |
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| </a></li> | | </a></li> |
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| </a></li> | | </a></li> |
| <li><a href="#tab5"> | | <li><a href="#tab5"> |
− | Abs600 Raw Readings | + | Abs<sub>600</sub> Raw Readings |
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| </a></li> | | </a></li> |
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| <img src="https://static.igem.org/mediawiki/2018/8/83/T--NKU_CHINA--blog-post-1.jpg" alt=""> | | <img src="https://static.igem.org/mediawiki/2018/8/83/T--NKU_CHINA--blog-post-1.jpg" alt=""> |
| <div class="text-content"> | | <div class="text-content"> |
− | <h4>OD 600 Reference point</h4> | + | <h4>OD <sub>600</sub> Reference point</h4> |
− | <p>According to the Reference OD600, We calculate the final result: <br>OD600/Abs600=3.818 <br>All cell density readings using this instrument with the same settings and volume can be converted to OD600, so that we can use this ratio to convert subsequent experimental data</p> | + | <p>According to the Reference OD<sub>600</sub>, We calculate the final result: <br>OD<sub>600</sub>/Abs<sub>600</sub>=3.818 <br>All cell density readings using this instrument with the same settings and volume can be converted to OD<sub>600</sub>, so that we can use this ratio to convert subsequent experimental data</p> |
| </div> | | </div> |
| </div> | | </div> |
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| <div class="text-content"> | | <div class="text-content"> |
| <h4>Particle standard curve</h4> | | <h4>Particle standard curve</h4> |
− | <p>We prepare a dilution series of monodisperse silica microspheres and measure the Abs 600 in plate reader. The size and optical characteristics of these microspheres are similar to cells, and there is a known amount of particles per volume. This measurement allows us to construct a standard curve of particle concentration which can be used to convert Abs 600 measurements to an estimated number of cells.<br>The final result:<br>mean of med-high levels=6.24E+08</p> | + | <p>We prepare a dilution series of monodisperse silica microspheres and measure the Abs<sub>600</sub> in plate reader. The size and optical characteristics of these microspheres are similar to cells, and there is a known amount of particles per volume. This measurement allows us to construct a standard curve of particle concentration which can be used to convert Abs<sub>600</sub> measurements to an estimated number of cells.<br>The final result:<br>mean of med-high levels=6.24E+08</p> |
| </div> | | </div> |
| </div> | | </div> |
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| <img src="https://static.igem.org/mediawiki/2018/e/e4/T--NKU_CHINA--图片12.jpg" alt=""> | | <img src="https://static.igem.org/mediawiki/2018/e/e4/T--NKU_CHINA--图片12.jpg" alt=""> |
| <div class="text-content"> | | <div class="text-content"> |
− | <h4>Abs600 Raw Readings</h4> | + | <h4>Abs<sub>600</sub> Raw Readings</h4> |
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| </div> | | </div> |