Difference between revisions of "Team:Kent/Experiments"

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<label class="hull-title" for="cb15">Calibration of OD 600 Reference Point</label>
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<label class="hull-title" for="cb15">DNA Miniprep Kit (Qiagen)</label>
 
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LUDOX-S40 must be used as a single point reference with the aim to attain a
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Method: (passive + our)
ratiometric conversion factor, which in turn will be used to transform absorbance
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<ul><li>2 x 5 mL of our ampicillin resistant bacteria, containing the plasmid of interest and grown
data into standard OD 600 measurement.
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overnight on LB medium, are centrifuged in falcon tubes at 4500 rpm for 6 minutes.</li>
<br>
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<li>The supernatant is removed and the pelleted bacteria are resuspended in 250μL of P1 buffer
Standard 1 cm path length spectrophotometer readings are instrument dependent,
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(containing 100 μg/mL RNase A). Thoroughly mix/ Vortex mix of the samples is required to
while plate readers possess a path length less than 1 cm and are volume dependent.
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ensure full resuspension. The samples are transferred into Eppendorf tubes.</li>
<br>
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<li>250 μL of P2 buffer is added to each sample and gently mixed by inverting the tube ca. 10 times.
Therefore, in this situation, there are 2 key objectives:
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This lysis reaction should not exceed 5 minutes.</li>
<ul><li>Ratiometric conversion to transform Abs 600 measurements into OD 600
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<li>350 μL of N3 buffer is pipetted to each sample, and gently but thoroughly mixed by inverting the
measurements</li>
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tube ca. 10 times. The samples are then centrifuged in a table top centrifuge at 13.000 rpm for
<li> Accounting for instrument differences</li></ul>
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10 minutes.</li>
<br>
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<li>The supernatant contains our plasmid of interest, while the white pellet is cell debris. 800 μl of
Before starting the protocol, path length correction must be switched off. This is
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the supernatant are pipetted into Qiagen Spin Columns.</li>
because scattering increases with longer wavelengths therefore adjustment is
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<li>The columns are centrifuged for 60 seconds. The plasmids are retained in a silica mesh, while
confounded by scattering solutions such as dense cells. However, many plate
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remaining substances flow through the column into a collection tube.</li>
readers have automatic path length correction which is based on volume
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<li>The column is washed with 500 μL of PB buffer and centrifuged (13.000 rpm for 60 sec) to
adjustment that uses ratio of absorbance measurements at 900 + 950 nm.
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remove any remaining nucleases which could interfere with further processing of the plasmids.</li>
LUDOX solution is only weakly scattering so will produce low absorbance values
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<li>750 μL of PE buffer is added to each sample and centrifuged for 60 seconds to remove any
<br>
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remaining wash buffer. The flow through is discarded and the spin column is placed into a fresh
Use same cuvettes, plates and volumes that are going to be used in cell based assays
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Eppendorf tube.</li></ul>
<br>
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<li>To elute the bound plasmid DNA, 50 μL of EB buffer is added to the column. After letting the
Materials:
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samples stand for ca. 2 minutes, each tube is centrifuged at high speed (13.000 rpm) for 60
<ul><li>1 mL 100% LUDOX</li>
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seconds.
<li>H 2 O</li>
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<li>The spin column is discarded, the Eppendorf tubes now contain our desired plasmid DNA.
<li>96 well plate (black with flat, transparent/clear bottom)</li></ul>
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<br>
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Method
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<ul><li>100 µl of LUDOX should be added into wells A1, B1, C1 and D2 (or 1mL into
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cuvette)</li>
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<li>100 µl of H 2 O should be added into wells A2, B2, C2 and D2</li>
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<li>Measure absorbance 600nm of all samples in all standard measurement modes in instrument</li>
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<li>Record data</li>
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Revision as of 21:11, 29 October 2017


Experiments & Protocols