| Literature DB >> 34462737 |
Joseph Longworth1,2, Gunnar Dittmar2,3.
Abstract
The emergence of the coronavirus disease 2019 pandemic increased the interest in analysis of immunoglobulin responses. ELISA and lateral flow assays are widely used but are restricted by a single response value to an antigen or antigen pool. Here, we describe antigen microarrays, an alternative allowing simultaneous assessment of multiple interactions between antigens and the immunoglobulin content of patient sera. The technique requires minimal reagents and sample input and can be adapted to a wide variety of potential antigenic targets of interest.Entities:
Keywords: Antibody; Bioinformatics; Health Sciences; High Throughput Screening; Immunology; Proteomics
Mesh:
Substances:
Year: 2021 PMID: 34462737 PMCID: PMC8387221 DOI: 10.1016/j.xpro.2021.100815
Source DB: PubMed Journal: STAR Protoc ISSN: 2666-1667
Figure 2Schematic of print plate layout along with corresponding array layout using the provided print plan and print design
(A) Layout of the print plate. 20 antigens and their dilutions are placed in alternating positions as indicated by the different colors.
(B) Arrangement of the antigens on the microarray. Antigen from the print plate has the same color in the microarray arrangement. The 20 antigens included can be seen in different colors, each represented by three spots. The different sizes are representing different dilutions. Layout of the array is randomized to prevent spatial effects. If a new print plan and print design was produced by the provided shiny-based application, the layout would be altered correspondingly.
Figure 1Example of a 64 array with 8 × 8 matrix
Figure 3Schema of the layout of a sample plate
Designed to accommodate 96 serum samples and to be processed on two 64 array antigen microarrays.
Figure 4Image of the antigen microarray slide, ProPlate® multi-well chambers 64 well slide, spring clips and ProPlate® multi-array slide system
Clipping the ProPlate on the Antigen microarray slide creates wells, which can be used for the incubation with different sera.
Figure 5Example slides of an antigen microarray scanned at a gain of 50
Layout of serum on showing inclusion of 48 serum samples with controls NP (Negative Pool), PP (Positive Pool), NS (Normalized Serum), AB (RBD antibody) and B (Blank).
Figure 6Screenshot of the antigen microarrays shiny-based graphical user interphase
Figure 7Antigens included in the microarray and quantification examples
(A) Collection of antigens included within the antigen array including Envelope Protein (EP) (Mandala et al., 2020), Nucleocapsid Protein (EP) (Jayaram et al., 2006) and Spike Protein (S) (Benton et al., 2021) with fragments of the Receptor binding domain and N-Terminal domain included as separated antigen targets on the array shown in red.
(B) An overview of 3 patient profiles showing response profiles to all the included antigens for each immunoglobulin.
Figure 8An overview of the observed response for 48 patient sera to the S1 fragment of spike protein for each of the four HCoV viruses as well as SARS-CoV-2
List of data files involved in the processing and analysis of the antigen microarrays
| Data | Description | Example |
|---|---|---|
| Print Plan | The ∗.txt file used in the array printing describing the layout of the antigen microarray | |
| Print design | .xlsx of the Print plan as well as dilution sample dilution information | |
| Antigen Names | Description of the antigens printed in the microarray | |
| Slide Quantification | Output of the quantification of spot intensities from Mapix software. | |
| Processed Output | Tabulated output of fitted values for a collection of arrays. |
Figure 9Example image of slide with poor signal to background clarity
| REAGENT or RESOURCE | SOURCE | IDENTIFIER |
|---|---|---|
| Goat Anti-Human Serum IgA Alexa Fluor 790, working concentration: 0.75mg/mL | Jackson ImmunoResearch Laboratories | Cat#109-655-011; RRID: |
| Goat Anti-Human Serum IgG Alexa Fluor 790, working concentration: 0.75mg/mL | Jackson ImmunoResearch Laboratories | Cat#109-655-190; RRID: |
| Goat Anti-Human Serum IgM Alexa Fluor 790, working concentration: 0.75mg/mL | Jackson ImmunoResearch Laboratories | Cat#109-655-129; RRID: |
| Anti-SARS-CoV-2 RBD Potent Neutralizing Antibody, Human IgG1 (AM18), working concentration: 0.75mg/mL | ACROBiosystems | Cat#SPD-M180 |
| SARS-CoV-2 S protein RBD, His Tag (MALS verified) | ACROBiosystems | Cat#SPD-C52H3 |
| SARS-CoV-2 S1 protein NTD, His Tag | ACROBiosystems | Cat#S1D-C52H6 |
| SARS-CoV-2 Envelope protein, GST,His Tag | ACROBiosystems | Cat#ENN-C5128 |
| SARS-CoV-2 Nucleocapsid protein, His Tag | ACROBiosystems | Cat#NUN-C5227 |
| SARS S protein RBD, His Tag (MALS verified) | ACROBiosystems | Cat#SPD-S52H6 |
| SARS-CoV-2 Spike S1(D614G)-His Recombinant Protein, HPLC-verified | Sino Biological | Cat#40591-V08H3 |
| Human coronavirus HKU1 (isolate N1) (HCoV-HKU1) Spike/S1 Protein (S1 Subunit, His Tag) | Sino Biological | Cat#40021-V08H |
| Human coronavirus (HCoV-229E) Spike/S1 Protein (S1 Subunit, His Tag) | Sino Biological | Cat#40601-V08H |
| Human coronavirus (HCoV-NL63) Spike/S1 Protein (S1 Subunit, His Tag) | Sino Biological | Cat#40600-V08H |
| Human coronavirus (HCoV-OC43) Spike S1 Protein (His Tag) | Sino Biological | Cat#40607-V08H1 |
| SARS-CoV-2 S1 protein (HV69-70del, N501Y, D614G), His Tag | ACROBiosystems | Cat#S1N-C52Hk |
| SARS-CoV-2 S protein RBD (N501Y), His Tag (MALS verified) | ACROBiosystems | Cat#SPD-C52Hn |
| SARS-CoV-2 S protein (HV69-70del, Y144del, N501Y, A570D, D614G, P681H, T716I, S982A, D1118H), His Tag (MALS verified) | ACROBiosystems | Cat#SPN-C52H6 |
| SARS-CoV-2 S1 protein NTD (L18F, D80A, D215G, R246I), His Tag | ACROBiosystems | Cat#S1D-C52H9 |
| SARS-CoV-2 S protein (L18F, D80A, D215G, R246I, K417N, E484K, N501Y, D614G, A701V), His Tag (MALS verified) | ACROBiosystems | Cat#SPN-C52Hc |
| SARS-CoV-2 S protein RBD (K417N, E484K, N501Y), His Tag (MALS verified) | ACROBiosystems | Cat#SPD-C52Hp |
| SARS-CoV-2 Spike S1-His Recombinant Protein | Sino Biological | Cat#40591-V08B1 |
| SARS-CoV-2 S2 protein, His Tag | ACROBiosystems | Cat#S2N-C52H5 |
| S1-CHO | ( | N/A |
| Tween™ 20 | Fisher Scientific | Cat#BP337 |
| FBS | Thermo Fisher Scientific | Cat#10500-064 |
| Glycerol | Fisher Scientific | Cat#BP229-1 |
| Dimethyl sulfoxide | Fisher Scientific | Cat#10213810 |
| TBS, Tris Buffered Saline, 10× Solution, pH 7.4 | Fisher Scientific | Cat#BP24711 |
| R | R Project | RRID:SCR_001905 version #4.0.3 |
| Mapix | Innopsys | RRID:SCR_002723 version #9.0.0 |
| NP2.1 S/N:2181 | GeSiM | N/A |
| Code and example datasets | This study | |
| Positive patient pool | Predi-COVID study.( | N/A |
| Negative patient pool | Predi-COVID study.( | N/A |
| 384 Square well plate | Greiner | Cat#781201 |
| Aluminium StarSeal (PCR) | STARLAB | Cat#E2796-9792 |
| Nano-PlotterTM 2.1 | GeSiM | N/A |
| Chiller | GeSiM | Cat#Ministat125 |
| Humidifier | GeSiM | Cat#AirwinC11 |
| ONCYTE® SuperNOVA 64 Pads | Grace Bio-Labs | Cat#705064 |
| Normal Human Serum Control | Fisher Scientific | Cat#10406144 |
| 384 Well Deep Well Plate | Corning | Cat#3342 |
| quadriPERM® 4 - slide plate | SARSTEDT | Cat#94.6077.307 |
| ProPlate® multi-well chambers 64 well slide | Grace Bio-Labs | Cat#248865 |
| ProPlate® Multi-Array Slide System | Grace Bio-Labs | Cat#249865 |
| InnoScan 710 Microarray Scanner | Innopsys | Cat#InnoScan 710-IR |
2× Print Buffer
| Reagent | Final concentration | Amount |
|---|---|---|
| Glycerol | 40% | 200 mL |
| DMSO | 2M | 71 mL |
| ddH2O | n/a | 229 mL |
Store at 4°C (maximum 3 months).
TBS
| Reagent | Final concentration | Amount |
|---|---|---|
| 10× TBS | 1× | 50 mL |
| ddH2O | n/a | 450 mL |
Store at 19°C–22°C (maximum 3 months).
TBS-T
| Reagent | Final concentration | Amount |
|---|---|---|
| 10× TBS | 1 | 50 mL |
| Tween 20 | 0.1% | 500 μL |
| ddH2O | n/a | 449.5 mL |
Store at 19°C–22°C (maximum 3 months).
TBS-T 10%FBS
| Reagent | Final concentration | Amount |
|---|---|---|
| TBS-T | n/a | 45 mL |
| Tween 20 | 10% | 5 mL |
Prepare fresh on the day of the experiment.
Print Buffer 10% FBS
| Reagent | Final concentration | Amount |
|---|---|---|
| 2× Print Buffer | 1× | 25 mL |
| FBS | 10% | 5 mL |
| ddH2O | n/a | 20 mL |
Prepare fresh on the day of the experiment.
TBS-T 10%FBS
| Reagent | Final concentration | Amount |
|---|---|---|
| 2× Print Buffer | n/a | 45 mL |
| Tween 20 | 10% | 5 mL |
| ddH2O | n/a | 450 mL |
Prepare fresh on the day of the experiment.