| Literature DB >> 34600550 |
Yixin Xiao1, Fan Yang1, Fumin Liu1, Hangping Yao1, Nanping Wu1, Haibo Wu2.
Abstract
BACKGROUND: The H9N2 subtype of avian influenza virus (AIV) has become the most widespread subtype of AIV among birds in Asia, which threatens the poultry industry and human health. Therefore, it is important to establish methods for the rapid diagnosis and continuous surveillance of H9N2 subtype AIV.Entities:
Keywords: AC-ELISA; Avian influenza virus; H9N2 subtype; ICT strip; Sensitivity; Specificity
Mesh:
Substances:
Year: 2021 PMID: 34600550 PMCID: PMC8487345 DOI: 10.1186/s12985-021-01671-4
Source DB: PubMed Journal: Virol J ISSN: 1743-422X Impact factor: 4.099
The specificity and sensitivity of antigen-capture enzyme-linked immunosorbent assay (AC-ELISA) and immunochromatographic test (ICT) strip methods against different viruses
| Virus | Subtype | HA | AC-ELISA | Strip | ||
|---|---|---|---|---|---|---|
| Titer | OD value | Test limitation (HA titer) | Result | Test limitation (HA titer) | ||
| A/duck /Zhejiang/D4/2018 | H9N2 | 26 | 1.095 | 22 | +a | 22 |
| A/chicken/Zhejiang/1026138/2016 | H9N2 | 25 | 0.986 | 22 | + | 23 |
| A/chicken/Zhejiang/13163/2016 | H9N2 | 26 | 1.254 | 23 | + | 23 |
| A/chicken/Zhejiang/221/2016 | H9N2 | 27 | 1.311 | 22 | + | 22 |
| A/chicken/Zhejiang/C1/2013 | H9N2 | 27 | 1.526 | 22 | + | 22 |
| A/pigeon/Zhejiang/2P4/2013 | H9N2 | 25 | 1.321 | 23 | + | 22 |
| A/chicken/Zhejiang/4C91/2013 | H9N2 | 25 | 1.452 | 23 | + | 22 |
| A/quail/Zhejiang/D485/2013 | H9N2 | 27 | 1.421 | 22 | + | 22 |
| A/chicken/Zhejiang/C7195/2013 | H9N2 | 25 | 1.321 | 22 | + | 22 |
| A/chicken/Zhejiang/C497/2013 | H9N2 | 27 | 1.256 | 22 | + | 22 |
| A/chicken/Zhejiang/C55/2013 | H9N2 | 27 | 1.236 | 22 | + | 22 |
| A/chicken/Zhejiang/329/2011 | H9N2 | 27 | 1.526 | 22 | + | 22 |
| A/pigeon/Zhejiang/727044/2014 | H9N2 | 25 | 1.121 | 23 | + | 23 |
| A/pigeon/Zhejiang/2P5/2013 | H9N2 | 26 | 1.336 | 22 | + | 23 |
| A/quail/Zhejiang/A1/2013 | H9N2 | 25 | 1.201 | 22 | + | 22 |
| A/quail/Zhejiang/A2/2013 | H9N2 | 26 | 1.233 | 23 | + | 23 |
| A/quail/Zhejiang/2A6/2013 | H9N2 | 25 | 1.115 | 22 | + | 22 |
| A/egret/Zhejiang/12/2013 | H9N2 | 26 | 1.334 | 22 | + | 22 |
| A/wild duck/Zhejiang/WD5/2014 | H9N2 | 26 | 1.256 | 22 | + | 23 |
| A/duck/Zhejiang/D1/2013 | H1N2 | 26 | 0.055 | −b | − | − |
| A/chicken/Zhejiang/2CP25/2014 | H1N3 | 25 | 0.046 | − | − | − |
| A/duck/Zhejiang/473/2013 | H1N4 | 26 | 0.078 | − | − | − |
| A/duck/Zhejiang/6D10/2013 | H2N8 | 24 | 0.069 | − | − | − |
| A/duck/Zhejiang/4613/2013 | H3N2 | 26 | 0.065 | − | − | − |
| A/duck/Zhejiang/5/2011 | H3N3 | 27 | 0.028 | − | − | − |
| A/duck/Zhejiang/D1–3/2013 | H3N6 | 26 | 0.047 | − | − | − |
| A/duck/Zhejiang/727145/2014 | H4N2 | 24 | 0.054 | − | − | − |
| A/duck/Zhejiang/409/2013 | H4N6 | 25 | 0.054 | − | − | − |
| A/goose/Zhejiang/97/2014 | H5N1 | 26 | 0.039 | − | − | − |
| A/duck/Zhejiang/6DK19/2013 | H5N2 | 27 | 0.033 | − | − | − |
| A/duck/Zhejiang/6D2/2013 | H5N6 | 27 | 0.024 | − | − | − |
| A/duck/Zhejiang/W24/2013 | H5N8 | 27 | 0.027 | − | − | − |
| A/chicken/Zhejiang/1664/2017 | H6N1 | 26 | 0.065 | − | − | − |
| A/duck/Zhejiang/727038/2014 | H6N2 | 24 | 0.055 | − | − | − |
| A/chicken/Zhejiang/727018/2014 | H6N6 | 25 | 0.032 | − | − | − |
| A/duck/Zhejiang/DK16/2013 | H7N3 | 25 | 0.034 | − | − | − |
| A/chicken/Jiangxi/C25/2014 | H7N7 | 27 | 0.062 | − | − | − |
| A/chicken/Zhejiang/ ZJU01/2013 | H7N9 | 27 | 0.035 | − | − | − |
| A/duck/Zhejiang/6D20/2013 | H10N2 | 25 | 0.041 | − | − | − |
| A/chicken/Zhejiang/8615/2016 | H10N3 | 26 | 0.077 | − | − | − |
| A/chicken/Zhejiang/2CP2/2014 | H10N7 | 26 | 0.053 | − | − | − |
| A/chicken/Zhejiang/102622/2016 | H10N8 | 25 | 0.026 | − | − | − |
| A/duck/Zhejiang/727D2/2013 | H11N3 | 23 | 0.045 | − | − | − |
| A/duck/Zhejiang/71750/2013 | H11N7 | 23 | 0.035 | − | − | − |
| Infectious bursal disease virus (IBDV) | NF8 | 25 | 0.067 | − | − | − |
| Infectious bronchitis virus (IBV) | H120 | 25 | 0.044 | − | − | − |
| Newcastle disease virus (NDV) | La Sota | 25 | 0.032 | − | − | − |
| Avian paramyxovirus 4(APMV-4) | ZJ-1 | 25 | 0.058 | − | − | − |
| B/Massachusetts/2/2012 | Yamagata | 25 | 0.049 | − | − | − |
a “+”, positive result
b “−”, negative result
Fig. 1Procedures for the AC-ELISA and ICT strips
The characteristics of two monoclonal antibodies (MAbs) used to establish the detection methods
| MAbs | Isotypea | Affinity (μg/ml) | CDR3b | ||
|---|---|---|---|---|---|
| subclass | Type | Heavy chain | Light chain | ||
| 2G7 | IgG1 | Κ | 15.63 | ARLTGTDY | QQGDFIPRT |
| 3G4 | IgG1 | Κ | 15.63 | ESQRG | WQGTHFPYT |
a The immunoglobulin isotypes of MAbs
b Complementarity-determining region
Fig. 2IFA results for MAbs 3G4 and 2G7. Neither MAb exhibited non-specific binding to MDCK cells infected with H5N1, H6N1, and H7N3 subtype AIVs. The two MAbs showed strong reactivity toward MDCK cells infected with the H9N2 subtype AIV
Fig. 3Assessment of AC-ELISA. a To determine the specificity, samples of 100 μl of the H9N2 subtype AIVs or non-H9N2 viruses (OD value) allantoic fluid were measured and averaged from three independent tests. b To test the sensitivity, three different H9N2 subtype AIVs and one H10N8 subtype AIV (negative control) at an HA titer of 24 were twofold serially diluted. c Standard curve of AC-ELISA for the purified H9 HA protein (A/chicken/Zhejiang/329/2011). The limit of detection was 31.5 ng/ml. The OD was measured at 450 nm, and the cut-off value is denoted by a dotted line
Intra-batch variation in antigen-capture enzyme-linked immunosorbent assay (AC-ELISA) detection of the H9N2 subtype avian influenza virus
| HA titer | OD value in intra-batch | Mean ± SD | CV%a | ||
|---|---|---|---|---|---|
| 1 | 2 | 3 | |||
| 25 | 1.105 | 1.132 | 1.112 | 1.116 ± 0.014 | 1.3 |
| 24 | 0.825 | 0.853 | 0.844 | 0.841 ± 0.014 | 1.7 |
| 23 | 0.552 | 0.564 | 0.572 | 0.563 ± 0.010 | 1.8 |
| 22 | 0.322 | 0.342 | 0.325 | 0.330 ± 0.011 | 3.3 |
| 21 | 0.153 | 0.163 | 0.156 | 0.157 ± 0.005 | 2.9 |
| 20 | 0.082 | 0.078 | 0.082 | 0.081 ± 0.002 | 2.9 |
aCV%, coefficient of variation
Inter-batch variation in antigen-capture enzyme-linked immunosorbent assay (AC-ELISA) detection of the H9N2 subtype avian influenza virus
| HA titer | OD value in inter-batch | Mean ± SD | CV%a | ||
|---|---|---|---|---|---|
| 1 day | 30 days | 60 days | |||
| 25 | 1.197 | 1.116 | 1.138 | 1.150 ± 0.042 | 3.6 |
| 24 | 0.841 | 0.861 | 0.872 | 0.858 ± 0.016 | 1.9 |
| 23 | 0.563 | 0.565 | 0.535 | 0.554 ± 0.017 | 3.0 |
| 22 | 0.330 | 0.337 | 0.358 | 0.341 ± 0.015 | 4.3 |
| 21 | 0.157 | 0.155 | 0.168 | 0.160 ± 0.007 | 4.3 |
| 20 | 0.081 | 0.082 | 0.077 | 0.080 ± 0.003 | 3.4 |
aCV%, coefficient of variation
Fig. 4Assessment of the ICT strip. a Specificity of the ICT strip method. 1–3 = H9N2; 4–12 = H1, H2, H3, H4, H5, H6, H7, H10, and H11 subtype AIVs; 13–17 = Influenza B virus, NDV, IBV, IBDV, and APMV-4; 18 = negative control (PBS). b Sensitivity of the ICT strip method tested using serial twofold diluted allantoic fluid of the H9N2 subtype AIV (A/chicken/Zhejiang/329/2011) ranging from an HA titer of 27 to 21
The result of detecting poultry samples using AC-ELISA, ICT strip and qRT-PCR methods
| Number of samples | AC-ELISA | Strip | ||
|---|---|---|---|---|
| Positive | Negative | Positive | Negative | |
| Positive (44) | 41 | 3 | 40 | 4 |
| Negative (156) | 3 | 153 | 4 | 152 |
| Sensitivity | 93.2% (41/44) | 90.9% (40/44) | ||
| Specificity | 98.1% (153/156) | 97.4% (152/156) | ||