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The C-Terminal Half of SARS-CoV-2 Nucleocapsid Protein, Industrially Produced in Plants, Is Valid as Antigen in COVID-19 Serological Tests
被引:15
|作者:
Williams, Laura
[1
]
Jurado, Silvia
[1
]
Llorente, Francisco
[2
]
Romualdo, Alberto
[1
]
Gonzalez, Sara
[1
]
Saconne, Ana
[1
]
Bronchalo, Isabel
[1
]
Martinez-Cortes, Mercedes
[3
]
Perez-Gomez, Beatriz
[4
,5
]
Ponz, Fernando
[6
]
Angel Jimenez-Clavero, Miguel
[2
,5
]
Lunello, Pablo
[1
]
机构:
[1] Agrenvec SL, Madrid, Spain
[2] Ctr Nacl Inst Invest & Tecnol Agr & Alimentaria I, Ctr Invest Sanidad Anim CISA, Valdeolmos, Spain
[3] Madrid Salud Publ Hlth Serv Madrid City Council, Madrid, Spain
[4] Inst Salud Carlos III, Natl Ctr Epidemiol, Madrid, Spain
[5] Consortium Biomed Res Epidemiol & Publ Hlth CIBER, Madrid, Spain
[6] Univ Politecn Madrid, Ctr Biotecnol & Genam Plantes, Inst Nacl Invest & Tecnol Agr & Alimentaria CBGI, UPM INIA,CSIC, Madrid, Spain
来源:
FRONTIERS IN PLANT SCIENCE
|
2021年
/
12卷
关键词:
COVID-19;
SARS CoV-2 nucleocapsid protein;
biofactories;
plant expression;
molecular farming;
ELISA coronavirus;
EXPRESSION;
D O I:
10.3389/fpls.2021.699665
中图分类号:
Q94 [植物学];
学科分类号:
071001 ;
摘要:
Background The fight against the current coronavirus disease 2019 (COVID-19) pandemic has created a huge demand of biotechnological, pharmaceutical, research and sanitary materials at unprecedented scales. One of the most urgent demands affects the diagnostic tests. The growing need for rapid and accurate laboratory diagnostic tests requires the development of biotechnological processes aimed at producing reagents able to cope with this demand in a scalable, cost-effective manner, with rapid turnaround times. This is particularly applicable to the antigens employed in serological tests. Recombinant protein expression using plants as biofactories is particularly suitable for mass production of protein antigens useful in serological diagnosis, with a neat advantage in economic terms. Methods We expressed a large portion of the nucleoprotein (N) derived from SARS-CoV-2 in Nicotiana benthamiana plants. After purification, the recombinant N protein obtained was used to develop an indirect enzyme-linked immunosorbent assay (ELISA) for detection of antibodies to SARS-CoV-2 in human sera. To validate the ELISA, a panel of 416 sera from exposed personnel at essential services in Madrid City Council were tested, and the results compared to those obtained by another ELISA, already validated, used as reference. Furthermore, a subset of samples for which RT-PCR results were available were used to confirm sensitivity and specificity of the test. Results The performance of the N protein expressed in plants as antigen in serologic test for SARS-CoV-2 antibody detection was shown to be highly satisfactory, with calculated diagnostic sensitivity of 96.41% (95% CI: 93.05-98.44) and diagnostic specificity of 96.37 (95% CI: 93.05-98.44) as compared to the reference ELISA, with a kappa (K) value of 0.928 (95% CI:0.892-0.964). Furthermore, the ELISA developed with plant-derived N antigen detected SARS-CoV-2 antibodies in 84 out of 93 sera from individuals showing RT-PCR positive results (86/93 for the reference ELISA). Conclusion This study demonstrates that the N protein part derived from SARS-CoV-2 expressed in plants performs as a perfectly valid antigen for use in COVID-19 diagnosis. Furthermore, our results support the use of this plant platform for expression of recombinant proteins as reagents for COVID-19 diagnosis. This platform stands out as a convenient and advantageous production system, fit-for-purpose to cope with the current demand of this type of biologicals in a cost-effective manner, making diagnostic kits more affordable.
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