Development of a Rapid Fluorescent Immunochromatographic Test to Detect Respiratory Syncytial Virus
Abstract
:1. Introduction
2. Results
2.1. Development of Monoclonal Antibody
2.2. Characterization of Novel Monoclonal Antibodies
2.3. Performance of Fluorescence-Linked Immunosorbent Assay (FLISA)
2.4. Development of the FICT
2.5. Quantitative Real-Time Reverse Transcription Polymerase Chain Reaction (qRT-PCR)
2.6. Clinical Performance of the FICT
3. Discussion
4. Materials and Methods
4.1. Reagents
4.2. Viruses
4.3. Cell Culture and RSV Infection
4.4. Expression of RSV Recombinant Nucleoprotein Antigen
4.5. Production of Monoclonal Antibody Targeting RSV NP
4.6. Immunofluorescence Assay
4.7. Conjugation of Europium Nanoparticles
4.8. Sandwich Fluorescent-Linked Immunosorbent Assay
4.9. Lateral Flow Test Assay for Fluorescent Immunochromatographic Test
4.10. RSV Antigen Immunochromatographic Assay Test
4.11. Real-Time RT-PCR
4.12. Ethical Considerations
4.13. Statistics
5. Conclusions
Supplementary Materials
Author Contributions
Funding
Conflicts of Interest
References
- Nair, H.; Nokes, D.J.; Gessner, B.D.; Dherani, M.; Madhi, S.A.; Singleton, R.J.; O’Brien, K.L.; Roca, A.; Wright, P.F.; Bruce, N.; et al. Global burden of acute lower respiratory infections due to respiratory syncytial virus in young children: A systematic review and meta-analysis. Lancet 2010, 375, 1545–1555. [Google Scholar] [CrossRef]
- Piedimonte, G.; Perez, M.K. Respiratory syncytial virus infection and bronchiolitis. Pediatr. Rev. 2014, 35, 519–530. [Google Scholar] [CrossRef] [PubMed]
- Macartney, K.K.; Gorelick, M.H.; Manning, M.L.; Hodinka, R.L.; Bell, L.M. Nosocomial respiratory syncytial virus infections: The cost-effectiveness and cost-benefit of infection control. Pediatrics 2000, 106, 520–526. [Google Scholar] [CrossRef] [PubMed]
- Rima, B.; Collins, P.; Easton, A.; Fouchier, R.; Kurath, G.; Lamb, R.A.; Lee, B.; Maisner, A.; Rota, P.; Wang, L. ICTV Virus Taxonomy Profile: Pneumoviridae. J. Gen. Virol. 2017, 98, 2912–2913. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Collins, P.L.; Fearns, R.; Graham, B.S. Respiratory syncytial virus: Virology, reverse genetics, and pathogenesis of disease. Curr. Topi. Microbiol. Immunol. 2013, 372, 3–38. [Google Scholar]
- Chen, Z.; Zhang, L.; Tang, A.; Callahan, C.; Pristatsky, P.; Swoyer, R.; Cejas, P.; Nahas, D.; Galli, J.; Cosmi, S.; et al. Discovery and Characterization of Phage Display-Derived Human Monoclonal Antibodies against RSV F Glycoprotein. PLoS ONE 2016, 11, e0156798. [Google Scholar] [CrossRef] [PubMed]
- Clayton, A.L.; Albert, Z.I.; Chantler, S.M. The selection and performance of monoclonal and polyclonal anti-respiratory syncytial virus (RS) antibodies in capture ELISAs for antigen detection. J. Virol. Methods 1987, 17, 247–261. [Google Scholar] [CrossRef]
- Hendry, R.M.; Godfrey, E.; Anderson, L.J.; Fernie, B.F.; McIntosh, K. Quantification of respiratory syncytial virus polypeptides in nasal secretions by monoclonal antibodies. J. Gen. Virol. 1985, 66, 1705–1714. [Google Scholar] [CrossRef] [PubMed]
- Kanta Subbarao, E.; Beeler, J.A.; Waner, J.L. A conformational epitope on the dimer of the fusion protein of respiratory syncytial virus detected in natural infections. Clin. Diagn. Virol. 1994, 1, 313–323. [Google Scholar] [CrossRef]
- Routledge, E.G.; McQuillin, J.; Samson, A.C.; Toms, G.L. The development of monoclonal antibodies to respiratory syncytial virus and their use in diagnosis by indirect immunofluorescence. J. Med. Virol. 1985, 15, 305–320. [Google Scholar] [CrossRef] [PubMed]
- Wu, B. The production of monoclonal antibodies against respiratory syncytial virus and its clinical applications. Clin. Lab. Med. 1985, 5, 589–613. [Google Scholar] [CrossRef]
- Chartrand, C.; Tremblay, N.; Renaud, C.; Papenburg, J. Diagnostic Accuracy of Rapid Antigen Detection Tests for Respiratory Syncytial Virus Infection: Systematic Review and Meta-analysis. J. Clin. Microbiol. 2015, 53, 3738–3749. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Simabuco, F.M.; Carromeu, C.; Farinha-Arcieri, L.E.; Tamura, R.E.; Ventura, A.M. Production of polyclonal antibodies against the human respiratory syncytial virus nucleoprotein and phosphoprotein expressed in Escherichia coli. Protein Expr. Purif. 2007, 53, 209–215. [Google Scholar] [CrossRef] [PubMed]
- Armbruster, D.A.; Pry, T. Limit of blank, limit of detection and limit of quantitation. Clin. Biochem. Rev. 2008, 29, S49–S52. [Google Scholar] [PubMed]
- McHugh, M.L. Interrater reliability: The kappa statistic. Biochem. Med. 2012, 22, 276–282. [Google Scholar] [CrossRef]
- Xu, L.; Gao, H.; Zeng, J.; Liu, J.; Lu, C.; Guan, X.; Qian, S.; Xie, Z. A fatal case associated with respiratory syncytial virus infection in a young child. BMC Infect. Dis. 2018, 18, 217. [Google Scholar] [CrossRef] [PubMed]
- Nokes, D.J.; Okiro, E.A.; Ngama, M.; Ochola, R.; White, L.J.; Scott, P.D.; English, M.; Cane, P.A.; Medley, G.F. Respiratory syncytial virus infection and disease in infants and young children observed from birth in Kilifi District, Kenya. Clin. Infect. Dis. 2008, 46, 50–57. [Google Scholar] [CrossRef] [PubMed]
- Malhotra, B.; Swamy, M.A.; Janardhan Reddy, P.V.; Gupta, M.L. Viruses causing severe acute respiratory infections (SARI) in children ≤5 years of age at a tertiary care hospital in Rajasthan, India. Indian J. Med. Res. 2016, 144, 877–885. [Google Scholar] [CrossRef] [PubMed]
- Gómez, S.; Prieto, C.; Vera, C.R.; Otero, J.; Folgueira, L. Evaluation of a new rapid diagnostic test for the detection of influenza and RSV. Enferm. Infecc. Microbiol. Clin. 2016, 34, 298–302. [Google Scholar] [CrossRef] [PubMed]
- Bell, D.M.; Walsh, E.E.; Hruska, J.F.; Schnabel, K.C.; Hall, C.B. Rapid detection of respiratory syncytial virus with a monoclonal antibody. J. Clin. Microbiol. 1983, 17, 1099–1101. [Google Scholar] [PubMed]
- Schnee, S.V.; Pfeil, J.; Ihling, C.M.; Tabatabai, J.; Schnitzler, P. Performance of the Alere i RSV assay for point-of-care detection of respiratory syncytial virus in children. BMC Infect. Dis. 2017, 17, 767. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Zhang, P.; Vemula, S.V.; Zhao, J.; Du, B.; Mohan, H.; Liu, J.; El Mubarak, H.S.; Landry, M.L.; Hewlett, I. A highly sensitive europium nanoparticle-based immunoassay for detection of influenza A/B virus antigen in clinical specimens. J. Clin. Microbiol. 2014, 52, 4385–4387. [Google Scholar] [CrossRef] [PubMed]
- Schuster, J.E.; Cox, R.G.; Hastings, A.K.; Boyd, K.L.; Wadia, J.; Chen, Z.; Burton, D.R.; Williamson, R.A.; Williams, J.V. A broadly neutralizing human monoclonal antibody exhibits in vivo efficacy against both human metapneumovirus and respiratory syncytial virus. J. Infect. Dis. 2015, 211, 216–225. [Google Scholar] [CrossRef] [PubMed]
- Corti, D.; Bianchi, S.; Vanzetta, F.; Minola, A.; Perez, L.; Agatic, G.; Guarino, B.; Silacci, C.; Marcandalli, J.; Marsland, B.J.; et al. Cross-neutralization of four paramyxoviruses by a human monoclonal antibody. Nature 2013, 501, 439–443. [Google Scholar] [CrossRef] [PubMed]
- Kumari, S.; Crim, R.L.; Kulkarni, A.; Audet, S.A.; Mdluli, T.; Murata, H.; Beeler, J.A. Development of a luciferase immunoprecipitation system assay to detect IgG antibodies against human respiratory syncytial virus nucleoprotein. Clin. Vaccine Immunol. 2014, 21, 383–390. [Google Scholar] [CrossRef] [PubMed]
- Percze, K.; Szakacs, Z.; Scholz, E.; Andras, J.; Szeitner, Z.; Kieboom, C.H.; Ferwerda, G.; Jonge, M.I.; Gyurcsanyi, R.E.; Meszaros, T. Aptamers for respiratory syncytial virus detection. Sci. Rep. 2017, 7, 42794. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Pourianfar, H.R.; Javadi, A.; Grollo, L. A colorimetric-based accurate method for the determination of enterovirus 71 titer. Indian J. Virol. 2012, 23, 303–310. [Google Scholar] [CrossRef] [PubMed]
- Jung, B.K.; Choi, S.H.; Lee, J.H.; Lee, J.; Lim, C.S. Performance evaluation of four rapid antigen tests for the detection of Respiratory syncytial virus. J. Med. Virol 2016, 88, 1720–1724. [Google Scholar] [CrossRef] [PubMed]
- Borg, I.; Rohde, G.; Loseke, S.; Bittscheidt, J.; Schultze-Werninghaus, G.; Stephan, V.; Bufe, A. Evaluation of a quantitative real-time PCR for the detection of respiratory syncytial virus in pulmonary diseases. Eur. Respir. J. 2003, 21, 944–951. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Visseaux, B.; Collin, G.; Ichou, H.; Charpentier, C.; Bendhafer, S.; Dumitrescu, M.; Allal, L.; Cojocaru, B.; Desfrère, L.; Descamps, D.; et al. Usefulness of multiplex PCR methods and respiratory viruses’ distribution in children below 15 years old according to age, seasons and clinical units in France: A 3 years retrospective study. PLoS ONE 2017, 12, e0172809. [Google Scholar]
- Panning, M.; Hengel, H.; Henneke, P. The role of multiplex PCR in respiratory tract infections in children. Dtsch. Arztebl. Int. 2014, 111, 639–645. [Google Scholar]
- Mesquita, F.D.S.; Oliveira, D.B.L.; Crema, D.; Pinez, C.M.N.; Colmanetti, T.C.; Thomazelli, L.M.; Gilio, A.E.; Vieira, S.E.; Martinez, M.B.; Botosso, V.F.; et al. Rapid antigen detection test for respiratory syncytial virus diagnosis as a diagnostic tool. J. Pediatr. 2017, 93, 246–252. [Google Scholar] [CrossRef] [PubMed]
- Wang, X.B.; He, J.S.; Fu, Y.H.; Zheng, X.X.; Fang, X. Research on the methods for titrating respiratory syncytial virus. Zhonghua Shi Yan He Lin Chuang Bing Du Xue Za Zhi 2010, 24, 147–149. [Google Scholar] [PubMed]
- Yeo, S.J.; Bao, D.T.; Seo, G.E.; Bui, C.T.; Kim, D.T.H.; Anh, N.T.V.; Tien, T.T.T.; Linh, N.T.P.; Sohn, H.J.; Chong, C.K.; et al. Improvement of a rapid diagnostic application of monoclonal antibodies against avian influenza H7 subtype virus using Europium nanoparticles. Sci. Rep. 2017, 7, 7933. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Yeo, S.-J.; Liu, D.-X.; Park, H. Potential Interaction of Plasmodium falciparum Hsp60 and Calpain. Korean J. Parasitol. 2015, 53, 665. [Google Scholar] [CrossRef] [PubMed]
- Ham, J.Y.; Jung, J.; Hwang, B.-G.; Kim, W.-J.; Kim, Y.-S.; Kim, E.-J.; Cho, M.-Y.; Hwang, M.-S.; Won, D.I.; Suh, J.S. Highly sensitive and novel point-of-care system, aQcare Chlamydia TRF kit for detecting Chlamydia trachomatis by using europium (Eu)(III) chelated nanoparticles. Ann. Lab. Med. 2015, 35, 50–56. [Google Scholar] [CrossRef] [PubMed]
- Do, L.A.; van Doorn, H.R.; Bryant, J.E.; Nghiem, M.N.; Nguyen Van, V.C.; Vo, C.K.; Nguyen, M.D.; Tran, T.H.; Farrar, J.; de Jong, M.D. A sensitive real-time PCR for detection and subgrouping of human respiratory syncytial virus. J. Virol. Methods 2012, 179, 250–255. [Google Scholar] [CrossRef] [PubMed]
Specimen | Collection of Sample (mm-dd-yyyy) | Age | Sex | PCR (Cycle Threshold) | Culture | SD RDT a | FICT | ||
---|---|---|---|---|---|---|---|---|---|
TL/CL b | Binary Decision | ||||||||
RSV-positive cases | P40.1 | 10/23/2017 | 1 y 8 m | M | AD (26), RSV B (25), HRV (31) | Positive | Positive | 99.37 | Positive |
P43.6 | 11/14/2017 | 0 y 7 m | M | RSV B (19) | Positive | Positive | 566.96 | Positive | |
P43.7 | 11/15/2017 | 2 y 5 m | M | RSV B (26) | Positive | Positive | 129.65 | Positive | |
P44.1 | 11/20/2017 | 2 y 0m | M | RSV B (33) | AD | Positive | 57.41 | Positive | |
P45.11 | 11/30/2017 | 0 y 4 m | F | RSV B (22) | Positive | Negative | 18.75 | Negative | |
P49.26 | 01/09/2018 | 0 y 9 m | M | Flu B (39), RSV B (17) | Positive | Positive | 525.56 | Positive | |
P50.3 | 01/15/2018 | 1 y 6 m | F | RSV B (24) | Positive | Positive | 155.33 | Positive | |
P50.14 | 01/18/2018 | 0 y 2 m | M | RSV B (25) | Positive | Positive | 478.19 | Positive | |
P52.1 | 01/29/2018 | 1 y 4 m | F | HRV (21), RSV B (35), CoV (28) | Negative | Negative | 162.89 | Positive | |
P53.7 | 02/09/2018 | 0 y 1 m | M | RSV B (24) | Positive | Negative | 103.32 | Positive | |
P1.5 | 10/26/2016 | 0 y 5 m | F | RSV A (31) | Positive | Positive | 61.42 | Positive | |
P6.1 | 11/28/2016 | 0 y 1 m | M | RSV A (33) | Positive | Positive | 89.4 | Positive | |
P6.3 | 11/28/2016 | 2 y 8 m | M | RSV A (29) | Positive | Positive | 59.32 | Positive | |
P8.2 | 12/12/2016 | 3 y 2 m | F | AD (35), PIV-1 (32), RSV A (25) | Negative | Negative | 99.28 | Positive | |
RSV-positive cases | P8.3 | 12/12/2016 | 0 y 9 m | F | AD (36), RSV A (31) | Negative | Positive | 103.21 | Positive |
P8.6 | 12/14/2016 | 0 y 4 m | F | HRV (32), RSV A (29) | Positive | Positive | 118.5 | Positive | |
P10.2 | 12/26/2016 | 0 y 1 m | M | RSV A (23) | Positive | Positive | 290.37 | Positive | |
P11.7 | 1/4/2017 | 0 y 7m | M | RSV A (35) | Positive | Negative | 28.44 | Negative | |
P12.3 | 1/9/2017 | 0 y 1m | F | RSV A (33) | Positive | Positive | 81.57 | Positive | |
P13.2 | 1/18/2017 | 0 y 9m | M | RSV A (22) | Positive | Positive | 332.91 | Positive | |
RSV-negative cases | P23.4 | 03/31/2017 | 0 y 10 m | F | PIV-3 (25) | PIV | Negative | 10.6 | Negative |
P26.1 | 05/08/2017 | 0 y 4 m | M | Negative | PIV | Negative | 12.97 | Negative | |
P26.2 | 05/15/2017 | 0 y 11 m | F | AD (23) | Negative | Negative | 27.01 | Negative | |
P26.5 | 05/17/2017 | 13 y 6 m | M | PIV-3 (17) | PIV | Negative | 19.78 | Negative | |
P27.2 | 05/25/2017 | 5 y 9 m | F | Negative | Negative | Negative | 14.6 | Negative | |
P27.4 | 05/30/2017 | 1 y 1 m | M | Negative | Negative | Negative | 10.51 | Negative | |
P28.3 | 06/14/2017 | 0 y 3 m | F | AD (19), HBoV 1/2/3/4 (28) | AD | Negative | 17.11 | Negative | |
P29.1 | 06/19/2017 | 0 y 5 m | M | Negative | Negative | Negative | 21.16 | Negative | |
P29.2 | 06/26/2017 | 12 y 10 m | F | Negative | Negative | Negative | 24.66 | Negative | |
P29.3 | 06/26/2017 | 15 y 6 m | F | Negative | Negative | Negative | 25.48 | Negative | |
P29.4 | 06/27/2017 | 2 y 2 m | M | Negative | Negative | Negative | 20.43 | Negative | |
P30.1 | 07/03/2017 | 0 y 10 m | M | PIV-4 (29) | Negative | Negative | 9.54 | Negative | |
P30.2 | 07/03/2017 | 1 y 0 m | M | Negative | Negative | Negative | 25.12 | Negative | |
P30.3 | 07/03/2017 | 0 y 2 m | M | Negative | Negative | Negative | 21.22 | Negative | |
P30.4 | 07/03/2017 | 0 y 1 m | F | Negative | Negative | Negative | 21.73 | Negative | |
P30.5 | 07/04/2017 | 1 y 0 m | F | Negative | PIV, | Negative | 24.03 | Negative | |
P30.7 | 07/04/2017 | 3 y 11 m | M | Negative | Negative | Negative | 17.85 | Negative | |
P30.8 | 07/05/2017 | 2 y 6 m | F | PIV-4 (16), HEV (23) | Negative | Negative | 18.66 | Negative | |
P30.11 | 07/06/2017 | 0 y 1 m | F | HEV (32) | Negative | Negative | 0 | Negative | |
P30.12 | 07/07/2017 | 1 y 6 m | F | Negative | Negative | Negative | 31 | Negative | |
P30.13 | 07/08/2017 | 6 y 7 m | F | HEV (29) | Negative | Negative | 0 | Negative | |
P30.14 | 07/10/2017 | 1 y 10 m | F | Negative | Negative | Negative | 0 | Negative | |
P30.16 | 07/11/2017 | 5 y 8 m | M | Negative | Negative | Negative | 30.95 | Negative | |
P30.17 | 07/11/2017 | 0 y 2 m | M | PIV-4 (26) | Negative | Negative | 21.32 | Negative | |
P30.19 | 07/12/2017 | 0 y 1 m | F | PIV-4 (32) | Negative | Negative | 0 | Negative | |
P30.20 | 07/12/2017 | 2 y 8 m | M | HRV (33), HEV (31) | Negative | Negative | 20.5 | Negative | |
P41.1 | 10/30/2017 | 4 y 0 m | F | PIV-1 (22) | PIV | Negative | 7.63 | Negative | |
P41.4 | 1/01/2017 | 1 y 7 m | M | Negative | PIV | Negative | 6.5 | Negative | |
P41.5 | 11/02/2017 | 7 y 5 m | F | Negative | Negative | Negative | 26.85 | Negative | |
P41.6 | 11/02/2017 | 4 y 7 m | M | Negative | Negative | Negative | 29.7 | Negative | |
P43.3 | 11/13/2017 | 1 y 2 m | F | Negative | Negative | Negative | 21.99 | Negative | |
P43.8 | 11/15/2017 | 1 y 7 m | F | AD (31), HRV (35) | Negative | Negative | 24.06 | Negative | |
P43.9 | 11/15/2017 | 1 y 2 m | F | Negative | Negative | Negative | 15.95 | Negative | |
P43.10 | 11/15/2017 | 5 y 10 m | M | Negative | Negative | Negative | 24.23 | Negative | |
P44.2 | 11/20/2017 | 5 y 11 m | M | Negative | Negative | Negative | 22.29 | Negative | |
P44.3 | 11/20/2017 | 1 y 6 m | F | Negative | Negative | Negative | 21.24 | Negative | |
P44.6 | 11/22/2017 | 1 y 10 m | M | Negative | Negative | Negative | 23.65 | Negative | |
P44.8 | 11/23/2017 | 1 y 4 m | M | PIV-1 (19) | PIV | Negative | 28.39 | Negative | |
P44.9 | 11/24/2017 | 15 y 2 m | M | HRV (28) | Negative | Negative | 26.51 | Negative | |
P45.1 | 11/27/2017 | 17 y 3 m | F | Negative | Negative | Negative | 23.3 | Negative | |
P45.3 | 11/27/2017 | 17 y 7 m | M | Negative | Negative | Negative | 15.85 | Negative | |
P45.4 | 11/27/2017 | 3 y 1 m | M | Negative | Negative | Negative | 10.51 | Negative | |
P45.6 | 11/28/2017 | 2 y 5 m | M | HRV (35) | Negative | Negative | 20.74 | Negative | |
RSV-negative cases | P45.8 | 11/29/2017 | 10 y 3 m | M | HRV (38) | Negative | Negative | 28.84 | Negative |
P45.10 | 11/29/2017 | 4 y 0 m | F | HRV (37) | Negative | Negative | 24.3 | Negative | |
P46.1 | 12/04/2017 | 6 y 2 m | M | Negative | Negative | Negative | 13.75 | Negative | |
P47.1 | 12/18/2017 | 7 y 0 m | M | Negative | Negative | Negative | 24.32 | Negative | |
P47.8 | 12/17/2017 | 0 y 3 m | M | HRV (29) | Negative | Negative | 13.61 | Negative | |
P47.12 | 12/16/2017 | 3 y 0 m | M | AD (30) | Negative | Negative | 20.12 | Negative | |
P47.15 | 12/19/2017 | 2 y 11 m | F | Negative | Negative | Negative | 14.84 | Negative | |
P19.3 | 3/3/2017 | 1 y 1 m | F | Negative | PIV-3 | Negative | 23.79 | Negative | |
P23.6 | 4/3/2017 | 0 y 4 m | F | PIV-4 (32) | Negative | Negative | 15.86 | Negative | |
P24.14 | 4/18/2017 | 0 y 3 m | M | HRV (30) | PIV-3 | Negative | 26.75 | Negative | |
P24.20 | 4/20/2017 | 1 y 9 m | M | Negative | PIV-3 | Negative | 18.87 | Negative | |
P25.6 | 4/30/2017 | 3 y 6 m | M | Negative | PIV-3 | Negative | 1.95 | Negative | |
P25.7 | 5/2/2017 | 1 y 5 m | M | PIV-3 (23) | PIV-3 | Negative | 29.74 | Negative | |
P34.2 | 8/28/2017 | 4 y 7 m | F | PIV-4 (38) | Negative | Negative | 9.86 | Negative | |
P40.11 | 10/27/2017 | 1 y 6 m | M | PIV-1 (34) | Negative | Negative | 3.89 | Negative | |
P47.24 | 12/26/2017 | 1 y 0 m | F | PIV-1 (33) | Negative | Negative | 18.7 | Negative | |
P47.35 | 12/27/2017 | 7 y 2 m | F | PIV-1 (21) | PIV-1 | Negative | 30 | Negative | |
P49.34 | 1/11/2018 | 2 y 8 m | M | PIV-1 (19) | PIV-1 | Negative | 0 | Negative | |
P55.10 | 2/23/2017 | 1 y 7 m | F | PIV-1 (34) | Negative | Negative | 32.67 | Negative | |
P62.6 | 4/11/2018 | 2 y 2 m | F | PIV-3 (25) | PIV-3 | Negative | 13.56 | Negative | |
P62.8 | 4/12/2018 | 2 y 9 m | F | PIV-1 (21) | PIV-1 | Negative | 38.52 | Negative | |
P63.10 | 4/19/2018 | 0 y 11 m | M | PIV-3 (19) | PIV-3 | Negative | 22.4 | Negative | |
P63.16 | 4/21/2018 | 0 y 4 m | F | PIV-3 (36) | Negative | Negative | 28.63 | Negative | |
P63.17 | 4/21/2018 | 2 y 2 m | F | PIV-3 (30) | PIV-3 | Negative | 63.31 | Negative | |
P64.3 | 4/23/2018 | 0 y 3 m | F | PIV-3 (24) | PIV-3 | Negative | 28.55 | Negative | |
P64.4 | 4/24/2018 | 2 y 1 m | F | PIV-3 (23) | PIV-3 | Negative | 9.22 | Negative | |
P65.1 | 4/30/2018 | 0 y 5 m | M | PIV-3 (35) | Negative | Negative | 14.92 | Negative | |
P65.2 | 4/30/2018 | 0 y 4 m | M | PIV-3 (38) | Negative | Negative | 17.82 | Negative | |
P65.8 | 5/2/2018 | 2 y 3 m | M | PIV-3 (28) | PIV-3 | Negative | 24.15 | Negative | |
P65.16 | 5/4/2018 | 2 y 2 m | F | PIV-3 (17) | PIV-3 | Negative | 18.61 | Negative | |
P65.17 | 5/4/2018 | 2 y 8 m | F | PIV-1 (31) | PIV-1 | Negative | 156.92 | Negative | |
P66.9 | 5/11/2018 | 2 y 1 m | F | PIV-3 (23) | PIV-3 | Negative | 14.37 | Negative | |
P66.10 | 5/11/2018 | 0 y 10 m | M | PIV-3 (22) | PIV-3 | Negative | 4.52 | Negative | |
P67.4 | 5/15/2018 | 1 y 4 m | F | PIV-3 (27) | PIV-3 | Negative | 42.32 | Negative | |
P67.6 | 5/15/2018 | 1 y 8 m | F | PIV-3 (28) | PIV-3 | Negative | 20.06 | Negative | |
P67.8 | 5/16/2018 | 0 y 3 m | F | PIV-3 (21) | PIV-3 | Negative | 12.62 | Negative | |
P67.9 | 5/16/2018 | 2 y 2 m | F | PIV-3 (32) | Negative | Negative | 20.88 | Negative | |
P68.1 | 5/21/2018 | 0 y 3 m | F | PIV-3 (20) | PIV-3 | Negative | 13.14 | Negative | |
P68.4 | 5/23/2018 | 0 y 2 m | F | PIV-3 (34) | Negative | Negative | 28.37 | Negative | |
P20.3 | 3/7/2017 | 0 y 4 m | M | HMPV (32) | Negative | Negative | 23.44 | Negative | |
P20.7 | 3/10/2017 | 0 y 7 m | F | HMPV (20) | HMPV | Negative | 24.39 | Negative | |
P21.6 | 3/14/2017 | 1 y 8 m | M | HRV (39), HMPV (34) | Negative | Negative | 29.22 | Negative | |
P21.11 | 3/17/2017 | 0 y 9 m | M | HMPV (37) | Negative | Negative | 35.52 | Negative | |
P21.13 | 3/17/2017 | 2 y 4 m | F | HMPV (34) | Negative | Negative | 7.64 | Negative | |
P21.14 | 3/20/2017 | 1 y 11 m | M | HRV (32), PIV-4 (37), HMPV (29) | Negative | Negative | 17.96 | Negative | |
P22.1 | 3/21/2017 | 2 y 8 m | M | HMPV (39) | Negative | Negative | 34.92 | Negative | |
P22.5 | 3/23/2017 | 0 y 7 m | F | HRV (29), HMPV (34) | Negative | Negative | 25.35 | Negative | |
P23.7 | 4/3/2017 | 13 y 8 m | M | HMPV (30) | Negative | Negative | 21.46 | Negative | |
P23.10 | 4/4/2017 | 0 y 10 m | M | HMPV (21) | HMPV | Negative | 22.34 | Negative | |
P23.20 | 4/7/2017 | 4 y 5 m | M | HMPV (23) | HMPV | Negative | 24.53 | Negative | |
P23.21 | 4/7/2017 | 6 y 10 m | F | HMPV (39) | Negative | Negative | 9.74 | Negative | |
P24.17 | 4/19/2017 | 0 y 5 m | F | HMPV (35) | Negative | Negative | 21.93 | Negative | |
P25.5 | 4/28/2017 | 7 y 5 m | F | HMPV (31) | Negative | Negative | 23.82 | Negative | |
P55.8 | 2/22/2018 | 0 y 5 m | M | HMPV (24) | HMPV | Negative | 27.87 | Negative | |
P62.2 | 4/10/2018 | 1 y 0 m | M | HMPV (34) | Negative | Negative | 8.71 | Negative | |
P62.11 | 4/13/2018 | 4 y 1 m | F | HMPV (20) | HMPV | Negative | 28.75 | Negative | |
RSV-negative cases | P63.9 | 4/17/2018 | 3 y 10 m | M | PIV-1 (38), HMPV (23) | HMPV | Negative | 29.19 | Negative |
P64.8 | 4/25/2018 | 0 y 1 m | M | HMPV (24) | HMPV | Negative | 40.37 | Negative | |
P64.11 | 4/27/2018 | 0 y 5 m | M | PIV-3 (35), HMPV (33) | Negative | Negative | 27.92 | Negative | |
P65.12 | 5/3/2018 | 3 y 3 m | F | HMPV (30) | HMPV | Negative | 48.88 | Negative | |
P65.18 | 5/4/2018 | 0 y 5 m | F | HRV (35), HMPV (23) | HMPV | Negative | 15.15 | Negative | |
P66.4 | 5/9/2018 | 2 y 7 m | F | HMPV (25) | HMPV | Negative | 17.17 | Negative | |
P66.13 | 5/14/2018 | 0 y 1 m | F | HMPV (26) | HMPV | Negative | 33.35 | Negative | |
P67.2 | 5/14/2018 | 2 y 10 m | M | HRV (23), HMPV (22), HBoV 1/2/3/4 (20) | HMPV | Negative | 26.06 | Negative | |
P67.3 | 5/15/2018 | 3 y 2 m | M | PIV-3 (32), HRV (31), HMPV (34) | Negative | Negative | 44.76 | Negative | |
P67.7 | 5/16/2018 | 1 y 2 m | M | HMPV (29) | HMPV | Negative | 24.14 | Negative | |
P68.3 | 5/23/2018 | 1 y 4 m | F | HMPV (31) | HMPV | Negative | 26.4 | Negative |
RDT | FICT | ||||||
---|---|---|---|---|---|---|---|
Positive | Negative | Row total | Positive | Negative | Row total | ||
PCR | Positive | 15 | 0 | 15 | 18 | 1 | 19 |
Negative | 5 | 110 | 115 | 2 | 109 | 111 | |
Column total | 20 | 110 | 130 | 20 | 110 | 130 | |
% Agreement (kappa) | 0.96 [(15 + 110)/130] | 0.98 [(18 + 109)/130] |
© 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
Share and Cite
Thuy Tien, T.T.; Park, H.; Tuong, H.T.; Yu, S.-T.; Choi, D.-Y.; Yeo, S.-J. Development of a Rapid Fluorescent Immunochromatographic Test to Detect Respiratory Syncytial Virus. Int. J. Mol. Sci. 2018, 19, 3013. https://doi.org/10.3390/ijms19103013
Thuy Tien TT, Park H, Tuong HT, Yu S-T, Choi D-Y, Yeo S-J. Development of a Rapid Fluorescent Immunochromatographic Test to Detect Respiratory Syncytial Virus. International Journal of Molecular Sciences. 2018; 19(10):3013. https://doi.org/10.3390/ijms19103013
Chicago/Turabian StyleThuy Tien, Trinh Thi, Hyun Park, Hien Thi Tuong, Seung-Taek Yu, Du-Young Choi, and Seon-Ju Yeo. 2018. "Development of a Rapid Fluorescent Immunochromatographic Test to Detect Respiratory Syncytial Virus" International Journal of Molecular Sciences 19, no. 10: 3013. https://doi.org/10.3390/ijms19103013
APA StyleThuy Tien, T. T., Park, H., Tuong, H. T., Yu, S. -T., Choi, D. -Y., & Yeo, S. -J. (2018). Development of a Rapid Fluorescent Immunochromatographic Test to Detect Respiratory Syncytial Virus. International Journal of Molecular Sciences, 19(10), 3013. https://doi.org/10.3390/ijms19103013