| Literature DB >> 31064083 |
I-Li Liu1, Yi-Chun Lin2, Yong-Chong Lin3, Cai-Zhen Jian4, Ivan-Chen Cheng5, Hui-Wen Chen6.
Abstract
Avian infectious bronchitis virus (IBV) causes considerable economic losses in the poultry industry worldwide, including Taiwan. IBV is among the most important pathogens in chickens, and it spreads rapidly among flocks. In addition to dozens of known serotypes, new viral variants have emerged due to the viral evolution and antigenic variation in IBVs. Therefore, the development of a sensitive, specific, and easily performed assay is crucial for the rapid detection and surveillance of IBV infections. A rapid and simple immunochromatographic strip (ICS) was developed in this study by employing monoclonal antibodies against spike and nucleocapsid proteins of IBV as the tracer and the capture antibody. The ICS showed high specificity in detecting IBV antigens, including several IBV genotypes and novel variants, as opposed to three other common avian respiratory viruses. The detection limit of the strip reached 104.4 50% embryo-infective dose. Moreover, in the experimental chicken model, the strip test demonstrated consistency in detecting IBV with RT-PCR gene detection. Taken together, this antigen detection strip has the potential to serve as an on-farm rapid test for IBV; therefore, it may facilitate surveillance and control of the disease.Entities:
Keywords: antigen detection; gold nanoparticles; immunochromatographic strip; infectious bronchitis virus; monoclonal antibodies
Mesh:
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Year: 2019 PMID: 31064083 PMCID: PMC6540333 DOI: 10.3390/ijms20092216
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 5.923
Figure 1Characterization of monoclonal antibodies. Western blot was performed to verify the binding specificity of the monoclonal antibody (mAb) 2296-4, (A) LK2-10a, LK-11a, LK2-12a and LK-13a; (B) to the IBV TW-I, TW-II and H120.
Figure 2Coagulation curve analysis and immunogold staining of colloidal gold-labelled mAb. (A) The optimal pH value of gold particles and the concentration of mAb LK2-11a for stabilizing colloidal gold particles were determined by the coagulation curve analysis. The OD absorbance of each sample was determined at 580 nm. After the tracer (the mAb-gold complexes) was prepared, it was examined using transmission electron microscopy; (B) and stained by the goat anti-mouse IgG 6-nm gold conjugate (C).
Figure 3Principle of operation for the immunochromatographic strip. The mAb LK-11a-gold conjugate was placed on the conjugation pad as a tracer (detection antibody). A mixture of mAbs LK2-12a and 2296-4 served as the capture antibody on the test line (T). Goat anti-mouse IgG served as the control on the control line (C).
Figure 4Avian infectious bronchitis virus (IBV) detection by the immunochromatographic strip (ICS). (A) Allantoic fluid (AF) of avian respiratory pathogens, avian influenza virus (AIV), Newcastle disease virus (NDV), infectious laryngotracheitis virus (ILTV) and infectious bronchitis virus (IBV) were tested with the ICS; (B) various IBV strains including 2575/98 (TW-I), 2296/95 (TW-II), 2992/02 (TW-China variant), 3575/08 (TW-I), H120 (Mass), and AF from specific-pathogen-free (SPF) chicken embryos were examined using the ICS. T: Test line; C: Control line.
Detection limit for various IBV strains by immunochromatographic strip.
| IBV | Genotype | Detection Limit (EID50) |
|---|---|---|
| 2575/98 | TW-I | 104.4 |
| 2296/95 | TW-II | 104.8 |
| 2992/02 | Variant | 104.8 |
| H120 | Mass | 104.6 |
Comparison of IBV detection by immunochromatographic strip and RT-PCR.
| IBV Detection | Throat Swab | Cloacal Swab | ||||
|---|---|---|---|---|---|---|
| 1 dpi | 3 dpi | 5 dpi | 1 dpi | 3 dpi | 5 dpi | |
| ICS | 3/3 | 2/3 | 3/3 | 0/3 | 0/3 | 1/3 |
| RT-PCR | 3/3 | 3/3 | 3/3 | 0/3 | 0/3 | 1/3 |