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<li> 2 colonies were selected for being both relatively bigger and more separated from the other colonies. </li> | <li> 2 colonies were selected for being both relatively bigger and more separated from the other colonies. </li> | ||
<li> The selected colonies were then inoculated into 5 ml of LB + Chlor and grown overnight at 37 °C at 220 rpm. </li> | <li> The selected colonies were then inoculated into 5 ml of LB + Chlor and grown overnight at 37 °C at 220 rpm. </li> | ||
+ | </ol> | ||
+ | <br> | ||
+ | <i> <u> Day 3: Cell Growth, Sampling and Assay </u> </i> | ||
+ | <i> Part 1: Abs<sub>600</sub>nm and Fluorescence Measurement </i> | ||
+ | <ol> | ||
+ | <li> A cell stock of each overnight culture was made in glycerol for storage, in case there is a need to use them again. To make this stock, 850 µl of culture was added to 350 µl of glycerol. </li> | ||
</td> | </td> | ||
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− | < | + | <li> A 1:10 dilution of each overnight culture was made in LB + Chlor (0.5 mL culture + 4.5 mL media). </li> |
− | + | <li> Abs<sub>600</sub>nm of the 1:10 diluted cultures were measured. </li> | |
− | + | <li> Cultures were diluted further to a target Abs600nm of 0.02 in a final volume of 12 ml LB + Chlor in a 50 ml falcon tube that was covered with tissue paper. </li> | |
− | + | <li> 500 µl of samples of the diluted cultures at 0 h were transferred into 1.5 ml eppendorf tubes labelled A and B. The tubes were placed on ice until they were ready to be laid out according to the plate diagram to measure fluorescence and Abs600. Fluorescence readings at T = 0 h are shown in Fig. 6. </li> | |
− | <li> | + | <li> The rest of the cultures were incubated at 37 °C and 220 rpm for 6 hours. </li> |
− | <li> | + | <li> After the 6-hour-incubation, 500 µl of these cultures were transferred into 1.5 ml eppendorf tubes before being laid out according to the plate diagram below. The samples’ fluorescence and Abs600nm were measured again. Fluorescence readings at T = 6 h are shown in Fig. 7. </li> |
− | <li> 500 µl of | + | |
− | <li> | + | |
</ol> | </ol> | ||
− | |||
<br> | <br> | ||
− | + | <i> Part 2: Colony Forming Units per 0.1 OD600 E. coli Cultures </i> | |
− | <i> | + | |
− | + | ||
− | + | ||
− | + | ||
− | + | ||
− | + | ||
− | + | ||
<br> | <br> | ||
− | + | Only Positive Control (BBa_I20270) cultures and Negative Control (BBa_R0040) were involved in this part. | |
− | + | ||
− | + | ||
<ol> | <ol> | ||
− | + | <li>Overnight cultures were diluted 10-fold in LB + Chlor media to ensure they lay in the linear detection range of our plate reader. </li> | |
− | + | <li>The OD<sub>600</sub>nm of cell cultures were measured. Our results are reflected by Fig. 8. </li> | |
− | + | <li> Overnight cultures were diluted to OD<sub>600</sub> = 0.1 in 1 ml of LB + Chlor media. Each culture was done in triplicate. </li> | |
− | + | <li> Diluted overnight cultures were checked to ensure that OD600 = 0.1, excluding the blank measurement </li> | |
− | + | <li> For each starting sample, serial dilutions were prepared as shown in Fig. 9. </li> | |
− | + | <li> 100 µl of Dilutions 3, 4 and 5 were aseptically spread on LB + Chlor agar plates. </li> | |
− | + | <li> The plates were incubated overnight at 37 °C. </li> | |
− | + | <li> Colonies on each plate were counted. Our results are reflected by Fig. 10. </li> | |
− | + | ||
− | + | ||
− | + | ||
− | <li>Overnight cultures were diluted 10-fold in LB + Chlor media to | + | |
− | <li>OD<sub> | + | |
− | <li>Overnight cultures were diluted to OD<sub>600</sub> = 0.1 in 1 ml of LB + Chlor media. Each culture was done in | + | |
− | <li>Diluted overnight cultures were checked to ensure that OD600 = 0.1 | + | |
− | <li>100 µl of Dilutions 3, 4 and 5 were aseptically spread on LB + Chlor agar plates. | + | |
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− | < | + | <i> Materials </i> |
<ol> | <ol> | ||
<li>SpheroTech Rainbow calibration beads, type RCP-30-5A (Lot Number: AAF02) </li> | <li>SpheroTech Rainbow calibration beads, type RCP-30-5A (Lot Number: AAF02) </li> | ||
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</td> | </td> | ||
<td> | <td> | ||
− | < | + | <i> Methods </i> |
<ol> | <ol> | ||
<li>A sample of SpheroTech beads was prepared according to the manufacturer instructions</li> | <li>A sample of SpheroTech beads was prepared according to the manufacturer instructions</li> |
Revision as of 15:54, 26 June 2018
Interlab Study
OVERVIEW
This year, the Committee aims to discover if it is possible to reduce lab-to-lab variability in fluorescence measurements by normalizing to absolute cell count or colony-forming units (CFUs) instead of optical density (OD). For this, we were required to measure the cell density of Escherichia coli ( E.Coli ) DH5⍺ cells using the methods below. |
Method 1: Converting between absorbance of cells to absorbance of a known concentration of beads In the first method, silica beads are used to estimate the actual amount of cells during fluorescence measurement. These beads are modeled after a typical E. coli cell and are thus expected to scatter light in a similar way to E. Coli cells. As a sample of these silica beads gives a consistent and known absorbance measurement at 600 nm, absorbance measurements from a sample’s cell density can be converted into an “equivalent concentration of beads” measurement that should be more universal and comparable between different labs. Method 2: Counting colony-forming units (CFUs) from the sample In the second method, cell concentration is approximated is by plating a known volume of the sample and letting bacterial colonies grow. As each bacterial colony is assumed to represent a single cell (for cells that do not stick together), the cell concentration in the sample is then directly proportional to the number of CFUs. Using a scaling factor computed from negative and positive control CFUs, a conversion factor from absorbance to CFU can be computed. |
PARTS RECEVIED
Device | Part Number | Usage |
---|---|---|
Negative control | BBa_R0040 | TetR repressible promoter, medium strength promoter |
Positive Control | BBa_I20270 | Promoter MeasKit (J23151) |
Test Device 1 | BBa_J364000 | GFP expressing constitutive device |
Test Device 2 | BBa_J364001 | GFP expressing constitutive device |
Test Device 3 | BBa_J364002 | GFP expressing constitutive device |
Test Device 4 | BBa_J364007 | Expresses GFP under the control of a constitutive promoter |
Test Device 5 | BBa_J364008 | Expresses GFP under the control of a constitutive promoter |
Test Device 6 | BBa_J364009 | Expresses GFP under the control of a constitutive promoter |
MATERIALS & METHODS
Plate Reader
BioTek Synergy H1 Abs 600
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Fluorescence
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Materials
Methods
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Materials
Methods (A) To prepare the Microsphere Stock Solution
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(B) To prepare the serial dilution of microsphere
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Materials
Methods (A) To prepare the fluorescein stock solution
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(B) To prepare the serial dilution of fluorescein
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Materials
Methods Day 1: Transforming Escherichia coli strain DH5α with devices provided in the Distribution Kit
Day 2: Selecting Colonies and Growing Cells Overnight
Day 3: Cell Growth, Sampling and Assay Part 1: Abs600nm and Fluorescence Measurement
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Part 2: Colony Forming Units per 0.1 OD600 E. coli Cultures Only Positive Control (BBa_I20270) cultures and Negative Control (BBa_R0040) were involved in this part.
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Materials
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Methods
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Results
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InterLab
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