Lab techniques Flashcards
1
Q
Cell tissue culture - passaging adherent cells
A
- Set up tissue culture hood, sterilise using ethanol and place all needed supplies in it
- Examine cells for contamination under the microscope
- Remove media using a macroman fitted with a sterile 10 ml pipette tip
- Wash cells with 10 ml of PBS, using a new 10 ml pipette tip, then discard the PBS
- Add 2 ml of trypsin EDTA to lift the cells and incubate for 10 minutes
- Check under the microscope that the cells have detached, tap the flask gently if necessary
- Using a 5 ml pipette tip, break up the clumps of cells by pipetting up and down
- Add 8 ml of media (e.g. DMEM) to the cells
- Take a 2 ml sample and transfer into a ladled LP3 tube
- Using a haemocytometer and counter, determine the cell density under a microscope
- Based on you cell count determine the ratio the cells need to be passaged
- Remove the excess cell solution and top up with media to make up 10 ml in the flask (or 20 ml in the large flasks)
- Update the passage number on the flask
2
Q
Trypan blue
A
- Set up tissue culture hood, sterilise using ethanol and place all needed supplies in it.
- Lift cells and seed 12 well plates, at a density of 3x104 cells/cm2, allow cells to attach overnight.
- Treat cells with the following drugs alone and/or in combination: gemcitabine (100µM), tumour necrosis factor (TNF)-related apoptosis-inducing ligand (100ng/µl), chloroquine (50 µM) and MG132 (30µM).
- Following treatment, collected the media for each treatment into label Eppendorf tubes. Spin down and discard the media.
- Rinse wells with 300µl PBS and add to the appropriate Eppendorf tube.
- Lift remaining cells from wells using 400µL Accutase, incubate 10 to 15 minutes and add the lifted cells to the Eppendorf’s as well.
- Transfer 200 µl of cell solution to a new labelled Eppendorf and add 200 µl of Trypan blue (a 1:1 ratio). Mix by pipetting up and down.
- Using a haemocytometer and counter, count the number of viable (white cells) and dead cells (blue cells).
3
Q
MTT Assay
A
- Set up tissue culture hood, sterilise using ethanol and place all needed supplies in it.
- Lift cells and seed 96 well plates, at a density of 3x104 cells/cm2, allow cells to attach overnight. Add media to the remaining wells and 10 ml of media between the wells. (see figure below)
- Treat cells with the following drugs alone and/or in combination: gemcitabine (100µM), tumour necrosis factor (TNF)-related apoptosis-inducing ligand (100ng/µl), chloroquine (50 µM) and MG132 (30µM).
- Following treatment add 25 µl of 0.5mg/ml MTT to the wells C to F from columns 1 to 12. Incubate for 4 hours.
- Solubilise formazan crystals using 100 µl of 10% SDS and incubate
overnight. - Read absorbance at 595 nm.
4
Q
Western blotting: Protein isolation from whole cell extract
A
- Seed 60 cm2 dishes at a density of 3x104 cells/cm2, allow cells to attach overnight.
- Treat cells with the following drugs alone and/or in combination: gemcitabine (100µM), tumour necrosis factor (TNF)-related apoptosis- inducing ligand (100ng/µl), chloroquine (50 µM) and MG132 (30µM).
- Following treatment, transfer media into a chilled labelled 50 ml falcon tube. This media may contain cells that had responded to the treatment and were no longer adherent.
- Place dishes on ice and harvest attached cells by mechanically scraping into 7 ml PBS. Add into the same chilled labelled 50 ml falcon tube. Repeat with another 5 ml PBS.
- Centrifuge at 10,000g at 4 °C for 10 minutes. Discard supernatant.
- Re-suspend the pellet in 1 ml of PBS and transfer into labelled Eppendorf.
- Spin down at 11,000rpm for 10 seconds. Discard supernatant.
- Re-suspend cells in 35 µl lysis buffer, pipette up and down to break up pellet.
- Vortex 5 seconds and incubate on ice for 5 minutes.
- Following incubation, sonicate 3 times to break open cells
- Spin down in a chill spinner at 14000 g for 10 minutes at 4 °C
- Transfer supernatant into new labelled Eppendorf tube.
5
Q
Western blotting:
Sodium Dodecyl Sulphate (SDS) Polyacrylamide Gel Electrophoresis
A
- To resolve protein within the cell extracts, SDS Polyacrylamide Gel Electrophoresis (PAGE) has to be performed.
- Prepare the SDS polyacrylamide gel. Pour the resolving gel first followed b the stacking gel.
- Using the concentrations of samples determined using the Bradford assay, prepare 5 µg of protein samples in 2x SDS samples buffer.
- Boil for 5 minutes at 95°C to denature the protein.
- Load gel with 10 µl of samples into wells, 4 µl biotinylated marker and 5 µl rainbow marker.
- Run the gel at 175 volts, until the bromophenol blue in the sample
buffer has run off the gel
6
Q
Western blotting:
Semi-dry transfer
A
- Dismantle the gel apperartus and equilibrate the gel in Towbins transfer buffer.
- pre-soak PVDF membrane in methanol and then transfer into Towbins transfer buffer.
- Onto the anode of the semi dry transfer apparatus, place three layers of Whatman filter paper soaked in Towbins transfer buffer followed by the PVDF membrane.
- Carefully place the gel ontop followed by additional place three layers of Whatman filter paper soaked in Towbins transfer buffer.
- Run the apparatus at 15 volts for 50 minutes
- Fix the protein onto the PVDF by incubating with Glutaraldehyde (0.2% v/v in PBS) for 10 minutes at room temperature.
- Next transfer the membrane was into blocking buffer and incubate at room temperature for 1 hour on an orbital shaker.
7
Q
Western blotting:
Chemiluminescence
A
- Wash the membrane in 10 ml TBS-Tween buffer for 2 minutes. Repeat.
- Incubate with a primary antibody in TBS-Tween overnight at 4°C on an orbital shaker.
- Discard the primary antibody and wash with 10 ml TBS-Tween for 2
minutes. Repeat 2 times. - Incubate the blot on an orbital shaker for 1 hour at room temperature with the appropriate secondary antibody ( 5 µl anti mouse-HRP-conjugated antibody solution and anti-biotin anti-body.
- Discard the secondary antibody and was the membrane with TBS- Tween a further 3 times.
- To develop the blots, take them to the dark room. Incubate the membrane with 5ml of 1x LumiGLO reagent for 1 minute.
- Following the incubation place the membrane in an X-ray cassette between two sheets of overlay plastic. In the dark place an X-ray film on top and expose for 5 seconds.
- Develop the film in Konica SRX-101A. Repeat by exposing the X-ray film to the membrane for varying amount of time.
- Loading can be assessed by probing the blot for an anti- housekeeping gene such as GAPDH
8
Q
PCR:
Setting up PCR
A
- Set up PCR machine to denaturing at 95 °C (20 sec), annealing at 59°C (20 sec) followed by amplification at 68 °C (for 1 min) and repeat for 30 cycles.
- In PCR tubes combine and start PCR.
2 µl cDNA
0.5 µl forward primer
0.5 µl reverse primer - 5 µl mastermix – containing dNTPs, Taq polymerase and buffer Up to 25 µl water
Total volume: 25 µl
9
Q
PCR:
Visualising results on agarose gel
A
- Prepare agarose gel:
In microwave safe container combine TAE buffer with 1.2 % agarose Microwave
Allow to cool and pour into tray Allow to set - Load samples into each well and run gel
- Image your gel and analyse results
10
Q
PCR:
DNA purification
A
- Use the NEB PCR &DNA clean up kit. Begin with adding binding buffer to your PCR sample at a ratio of 5:1 (e.g. to a reaction of 20 µl add 100 µl buffer) and mix well by pipetting up and down. Do not vortex.
- Insert a column (provided in the kit) on to a new tube and transfer the sample into a column.
- Spin for 1 minute at 13,000rpm (the DNA will now be bound to the column). Remove column and discard flow through.
- Re insert column into the tube and add 200 µl DNA wash buffer. Spin for another 1 minute at 13,000rpm. Then repeat with another 200µl of DNA washing buffer.
- Transfer column to a clean tube and add 20 µl of elusion buffer to
the centre of the matrix. Spin for 1 minute. - The elute now contains your DNA sample.
11
Q
Cloning DNA
A
- PCR gene of interest from cDNA
- Ligate into pGEM-T Easy, by seting up a ligation buffer. Mix the reaction and incubate for 1 hour at room temperature.
- Transform into JM109 (E coli).
- Agar plates contain Ampicillin (10g/ml) and spread with IPTG/X-gal.
12
Q
Bacterial transformation
A
- Thaw 20µl aliquots of bacteria on ice. The bacteria are very fragile and should not be vortexed, or pipetted vigourously.
- Gently add DNA for transformation while inserting the pipette tip into the bacterial suspension. Leave on ice for 30 minutes. Add no more than 10µl of DNA. For ligations, I usually add 1µl of a 10µl reaction. For transformation from a plasmid, add about 50ng. Place agar plates in the incubator to allow them to warm up.
- Heat shock bacteria at 42°C for EXACTLY 45 seconds and return to ice for 2 minutes.
- Add 80µl of SOC (or LB - But this reduces efficiency) and place in 37°C water bath for 1 hour.
- Plate onto LB agar (or whatever) with appropriate antibiotic selection. For blue/white selection, agar plates should be spread with 20µl of 50mg/ml X-gal and 100µl of 100mM IPTG, then allowed to absorb for at least 30 minutes at 37°C before plating bacteria. Do this at step 2.
- Incubate plates for several hours to overnight at 37°C and pick colonies
13
Q
DNA Extraction from bacteria: Mini prep
A
- Use the NEB Plasmid Miniprep Kit.
- Pellet 1.5 ml bacterial culture by centrifugation for 30 seconds. Discard supernatant.
- Resuspend pellet in 200 μl Plasmid Resuspension Buffer. Vortex or pipet to ensure cells are completely resuspended. There should be no visible clumps.
- Add 200 μl Plasmid Lysis Buffer, gently invert tube 5–6 times, and incubate at room temperature for 1 minute. Colour should change to dark pink, and solution will become transparent and viscous.
- Add 400 μl of Plasmid Neutralization Buffer, gently invert tube until neutralized, and incubate at room temperature for 1 minute. Sample is neutralized when colour is uniformly yellow and precipitate forms.
- Centrifuge lysate for 2–5 minutes. For best results, and especially culture volumes > 1 ml, we recommend a 5 minute spin to ensure efficient RNA removal by RNase A. Pellet should be compact; spin longer if needed.
- Carefully transfer supernatant to the spin column and centrifuge for 1 minute. Discard flow-through.
- Re-insert column in the collection tube and add 200 μl of Plasmid Wash Buffer
- Centrifuge for 1 minute. Discarding the flow-through is optional.
- Add 400 μl of Plasmid Wash Buffer 2 and centrifuge for 1 minute.
- Transfer column to a clean 1.5 ml microfuge tube. Use care to ensure that the tip of the column does not come into contact with the flow-through. If there is any doubt, re-spin the column for 1 minute.
- Add ≥ 30 μl DNA Elution Buffer to the center of the matrix. Wait for 1 minute, then spin for 1 minute to elute DNA. Nuclease-free water (pH 7–8.5) can also be used to elute the DNA. Yield may slightly increase if a larger volume of DNA Elution Buffer is used, but the DNA will be less concentrated. For larger size DNA, (≥ 10 kb), heating the elution buffer to 50°C prior to use can improve yield.
14
Q
Transfection (complex)
A
- Seed cells at a density of 1x 105 cells in 500uL in 4 well plates
- 1.5mL tube, dilute 1.6ul-2uL Lipofectamine in 50 μl of Opti-MEM® in serum free medium (ratio 1:2). Incubate for 5 minutes at room temperature. (Note: non-transfected control won’t contain Lipofectamine so just add 50uL of medium to the tube).
- 1.5mL tube, dilute DNA (0.8 ug) in 50 μl of Opti-MEM® I Reduced Serum Medium without serum (or other medium without serum). Mix gently. (Note: non-transfected
cells and vehicle controls won’t contain DNA
so add only 50uL of medium to the tube). - Combine the diluted DNA with diluted
Lipofectamine™ 2000 (total volume = 100 μl). Mix gently and incubate for 20 minutes at room temperature (solution may appear cloudy). Note: Complexes are stable for 6 hours at room temperature. - Add the 100 μl of complexes to each well containing cells and medium. Mix gently by rocking the plate back and forth.
- Incubate cells at 37°C in a CO2 incubator for 18-48 hours prior to testing for transgene expression. It is not necessary to change the medium, but medium may be replaced after 4-6 hours. 5. For stable cell lines: Passage cells at a 1:10 (or higher dilution) into fresh growth medium 24 hours after transfection. Add selective medium (if desired) the following day.
15
Q
Transfection (simplified)
A
- Seed cells to be 70-90% confluent at transfcetion
- Dilute four amounts of Lipfectamine reagent in opti-MEM medium
- Dilute DNA in Opti-MEM medium
- Add diluted DNA to diluted Lipofectamine 2000 reagent (1:1 ratio)
- Incubate
- Add DNA-lipid complex to cells
- Visualise/analyze transfected cells