1. Indirect ELISA
An indirect ELISA is one where the primary antigen-specific antibody is recognized by a secondary conjugated antibody. The following protocol is an example of an indirect ELISA method, where the serum samples of of influenza A virus (IAV)-infected mice are tested for the presence of IAV-specific IgG antibody. One strength of this example is that different secondary antibodies can be used that recognize all antibody isotypes or specific isotypes (e.g., IgG).
Coating antigen to the microplate
- Coat the wells of a 96-well ELISA plate with purified antigen by pipetting 50 µL of purified antigen (2 mg/mL of purified A/PR/8 Influenza A virus in 0.05M Tris-HCl buffer (pH 9.5)) into each well of the plate.
- Cover the plate with an adhesive cover and incubate it overnight at 4°C to allow the antigen to bind to the plate.
- Upon incubation completion, remove the coating solution by flicking the plate over a sink.
Blocking
- Block the remaining protein-binding sites in the coated wells by adding 200 µL blocking buffer, 5% donkey serum in 1X PBS is used here, per well. Alternative blocking reagents include 5% non-fat dry milk or BSA in PBS or normal serum from an animal in which the secondary antibody was generated.
- Incubate for at least 2 hours at room temperature or overnight at 4°C.
- Following the incubation, remove the blocking buffer by flicking the plate and then wash plate with PBS containing 1% Tween-20.
Incubation with the primary antibody
- Prepare a serial dilution of the serum sample, which contains the primary antibody, to obtain a dilution range of 1 to 204,800, using 1X PBS. To do this, first dilute the serum 1:12.5 and then perform a 4X dilution (dilution range - 1:12.5 to 1:204,800).
- Add 100 µL of the serially-diluted serum samples to the wells.
- Cover plate with adhesive cover and incubate at room temperature for 1-2 h.
- Following the incubation, flick the plate over a sink and wash plate with PBS containing 1% Tween-20.
Incubation with the secondary antibody
- Add 100 µL of an enzyme-conjugated secondary antibody, horseradish peroxidase, HRP-conjugated donkey anti-mouse secondary in this experiment, to each well.
- Incubate the plate for 1 hour at room temperature.
- Following the incubation, flick the plate over a sink and then wash plate with PBS containing 1% Tween-20.
Detection
- Add 100 µL of the indicator substrate (3,3',5,5'-tetramethylbenzidine (TMB)) at a concentration of 1 mg/mL to each well.
- Incubate the plate with the substrate for 5-10 min at room temperature.
- After 10 min, stop the enzymatic reaction by adding 100 µL 2N Sulfuric acid (H2SO4).
Within 30 min of adding the stop solution, read the plate using a microplate reader at 405 nm to determine the absorbance of the wells.
2. Sandwich ELISA
In this ELISA version, the experimental sample is "sandwiched" between an unconjugated capture antibody and a conjugated detection antibody, both of which are specific to the same protein but at different epitopes. In the following sandwich ELISA example, concentration of human TNFα was determined in unknown sample using a standard curve generated from 2.5X serial dilution of a known standard, recombinant human TNFα (stating at concentration of 75 pg/mL).
Coating capture antibody to the microplate
- Coat the wells of a 96-well ELISA plate with purified capture antibody by adding 100 µL of capture antibody (1-10 µg/mL range) to each well of the plate.
- Cover plate with an adhesive plate cover and incubate it overnight at 4°C.
- After incubation, remove the coating solution from plate by flicking the plate over a sink.
Blocking
- Block the remaining protein-binding sites in the antibody coated wells by adding 200 µL blocking solution, 5% nonfat dry milk containing PBS, to the wells.
- Incubate for at least 2 h at room temperature or overnight at 4°C.
- Following the incubation, remove the blocking buffer by flicking the plate and then wash plate with PBS containing 1% Tween-20.
Add antigen containing test samples
- Add 100 µL of the test sample to the wells. Seal the plate with an adhesive cover.
- Incubate for 1-2 h at room temperature or overnight at 4°C.
- After incubation, remove the samples by flicking the plate over the sink and then wash the wells with 200 µL 1X PBS containing 1% Tween-20.
Add enzyme-conjugated detection antibody
- Add 100 µL of enzyme-conjugated detection antibody to the wells at a preoptimized concentration.
- Seal the plate with an adhesive cover and incubate at room temperature for 2 h.
- Remove the unbound detection antibody by flicking the plate over a sink and wash the wells with 200 µL 1X PBS containing 1% Tween-20.
Detection
- Add 100 µL of the indicator substrate at a concentration of 1 mg/mL. Any bound enzyme-conjugated detection antibody will convert the substrate to a detectable signal.
- Incubate the plate for 5-10 min at room temperature.
- After 5-10 min, stop the enzymatic reaction by adding 100 µL 2N H2SO4 to the wells. Within 30 min of adding the stop solution, read the plate using a microplate reader to determine the absorbance of the wells.
3. Competitive ELISA
The steps of a competitive ELISA are different from those used in indirect and sandwich ELISA, with the main difference being the competitive binding step between the sample antigen and the "add-in" antigen. The sample antigen is incubated with the unlabeled primary antibody. These antibody-antigen complexes are then added to the ELISA plate, which has been pre-coated with the same antigen. After an incubation period, any unbound antibody is washed away. There is an inverse correlation between the amount of free antibody available to bind the antigen in the well and the amount of antigen in the original sample. For example, a sample with abundant antigen would have more antigen-primary antibody complexes, leaving little unbound antibody to bind to the ELISA plate. An enzyme-conjugated secondary antibody specific to the primary antibody is then added to the wells, followed by the substrate.
Coating antigen to the microplate
- Coat the wells of a 96-well ELISA plate with 100 μL of purified antigen at a concentration of 1-10 μg/mL.
- Cover plate with an adhesive plate cover and incubate the plate overnight at 4°C.
- Following incubation, remove the unbound antigen solution from the wells by flicking the plate over a sink.
Blocking
- Block the remaining protein-binding sites in the coated wells by adding 200 μL of blocking buffer to each well, which can be either 5% non-fat dry milk or BSA in PBS.
- Incubate the plate for at least 2 h at room temperature or overnight at 4°C.
Incubation sample (antigen) with the primary antibody
- While blocking the wells, prepare the antigen-antibody mixture by mixing 150 μL sample antigen and 150 μL of primary antibody for each well in the assay.
- Incubate this mixture for 1 h at 37°C.
Add antigen-antibody mixture to the well
- Now, remove the blocking buffer from the wells by flicking the plate over a sink.
- Then, wash the wells with 1X PBS containing Tween-20.
- Add 100 μL of the sample antigen-primary antibody mixture.
- Incubate the plate at 37°C for 1 h.
- Remove the sample mixture by flicking the plate over a sink.
- Then, wash the wells with 1X PBS containing 1% Tween-20 to remove any unbound antibody.
Add the secondary antibody
- Add 100 μL of an enzyme conjugated secondary antibody, which in this case is AP-conjugated antibody, to each well.
- Incubate the plate for 1 h at 37°C.
- Following incubation, wash the plate with 1X PBS containing 1% Tween-20.
Detection
- Add 100 μL of the substrate solution to each well.
- Wait for 5-10 min.
- After 10 min, stop the enzymatic reaction by adding 100 μL 2N sulfuric acid to the wells. Then, measure the absorbance in a microplate reader within 30 min of adding the stop solution