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A Plant-Produced Recombinant Fusion Protein-Based Newcastle Disease Subunit Vaccine and Rapid Differential Diagnosis Platform

Newcastle disease (ND) is a highly contagious avian disease, causing considerable economic losses to the poultry industry. To obtain a safe, inexpensive, and effective ND vaccine to meet the international trade requirements of differentiating infected from vaccinated animals (DIVA), here we report t...

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Autores principales: Ma, Fanshu, Zhang, Erqin, Li, Qingmei, Xu, Qianru, Ou, Jiquan, Yin, Heng, Li, Kunpeng, Wang, Li, Zhao, Xiangyue, Niu, Xiangxiang, Li, Xueyang, Zhang, Shenli, Wang, Yanan, Deng, Ruiguang, Zhou, Enmin, Zhang, Gaiping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7157242/
https://www.ncbi.nlm.nih.gov/pubmed/32182813
http://dx.doi.org/10.3390/vaccines8010122
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author Ma, Fanshu
Zhang, Erqin
Li, Qingmei
Xu, Qianru
Ou, Jiquan
Yin, Heng
Li, Kunpeng
Wang, Li
Zhao, Xiangyue
Niu, Xiangxiang
Li, Xueyang
Zhang, Shenli
Wang, Yanan
Deng, Ruiguang
Zhou, Enmin
Zhang, Gaiping
author_facet Ma, Fanshu
Zhang, Erqin
Li, Qingmei
Xu, Qianru
Ou, Jiquan
Yin, Heng
Li, Kunpeng
Wang, Li
Zhao, Xiangyue
Niu, Xiangxiang
Li, Xueyang
Zhang, Shenli
Wang, Yanan
Deng, Ruiguang
Zhou, Enmin
Zhang, Gaiping
author_sort Ma, Fanshu
collection PubMed
description Newcastle disease (ND) is a highly contagious avian disease, causing considerable economic losses to the poultry industry. To obtain a safe, inexpensive, and effective ND vaccine to meet the international trade requirements of differentiating infected from vaccinated animals (DIVA), here we report the production of Oryza sativa recombinant fusion (F) protein in stably transformed transgenic rice seeds via agroinfiltration. The F protein expression level was enhanced 3.6-fold with a genetic background in low glutelin. Inoculation of plant-produced F antigen into Specific Pathogen Free (SPF) chickens markedly elicited neutralizing antibody responses against homologous and heterologous ND virus strains. Two doses of 4.5 μg fully protected chickens from a lethal ND challenge without any clinical symptoms. The mean weight gain of F protein-immunized chickens within 15 days after challenge was significantly higher than that of traditional whole virus vaccine-immunized chickens, thereby obtaining higher economic benefits. Moreover, the sera from the chickens vaccinated with the plant-produced F vaccine did not show reactivity in an immunochromatographic strip targeting the haemagglutinin-neuraminidase protein (HN) protein, and DIVA could be achieved within 10 minutes. Our results demonstrate that the plant-derived F vaccine along with immunochromatographic strips could be useful in the implementation of an NDV eradication program.
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spelling pubmed-71572422020-05-01 A Plant-Produced Recombinant Fusion Protein-Based Newcastle Disease Subunit Vaccine and Rapid Differential Diagnosis Platform Ma, Fanshu Zhang, Erqin Li, Qingmei Xu, Qianru Ou, Jiquan Yin, Heng Li, Kunpeng Wang, Li Zhao, Xiangyue Niu, Xiangxiang Li, Xueyang Zhang, Shenli Wang, Yanan Deng, Ruiguang Zhou, Enmin Zhang, Gaiping Vaccines (Basel) Article Newcastle disease (ND) is a highly contagious avian disease, causing considerable economic losses to the poultry industry. To obtain a safe, inexpensive, and effective ND vaccine to meet the international trade requirements of differentiating infected from vaccinated animals (DIVA), here we report the production of Oryza sativa recombinant fusion (F) protein in stably transformed transgenic rice seeds via agroinfiltration. The F protein expression level was enhanced 3.6-fold with a genetic background in low glutelin. Inoculation of plant-produced F antigen into Specific Pathogen Free (SPF) chickens markedly elicited neutralizing antibody responses against homologous and heterologous ND virus strains. Two doses of 4.5 μg fully protected chickens from a lethal ND challenge without any clinical symptoms. The mean weight gain of F protein-immunized chickens within 15 days after challenge was significantly higher than that of traditional whole virus vaccine-immunized chickens, thereby obtaining higher economic benefits. Moreover, the sera from the chickens vaccinated with the plant-produced F vaccine did not show reactivity in an immunochromatographic strip targeting the haemagglutinin-neuraminidase protein (HN) protein, and DIVA could be achieved within 10 minutes. Our results demonstrate that the plant-derived F vaccine along with immunochromatographic strips could be useful in the implementation of an NDV eradication program. MDPI 2020-03-09 /pmc/articles/PMC7157242/ /pubmed/32182813 http://dx.doi.org/10.3390/vaccines8010122 Text en © 2020 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/).
spellingShingle Article
Ma, Fanshu
Zhang, Erqin
Li, Qingmei
Xu, Qianru
Ou, Jiquan
Yin, Heng
Li, Kunpeng
Wang, Li
Zhao, Xiangyue
Niu, Xiangxiang
Li, Xueyang
Zhang, Shenli
Wang, Yanan
Deng, Ruiguang
Zhou, Enmin
Zhang, Gaiping
A Plant-Produced Recombinant Fusion Protein-Based Newcastle Disease Subunit Vaccine and Rapid Differential Diagnosis Platform
title A Plant-Produced Recombinant Fusion Protein-Based Newcastle Disease Subunit Vaccine and Rapid Differential Diagnosis Platform
title_full A Plant-Produced Recombinant Fusion Protein-Based Newcastle Disease Subunit Vaccine and Rapid Differential Diagnosis Platform
title_fullStr A Plant-Produced Recombinant Fusion Protein-Based Newcastle Disease Subunit Vaccine and Rapid Differential Diagnosis Platform
title_full_unstemmed A Plant-Produced Recombinant Fusion Protein-Based Newcastle Disease Subunit Vaccine and Rapid Differential Diagnosis Platform
title_short A Plant-Produced Recombinant Fusion Protein-Based Newcastle Disease Subunit Vaccine and Rapid Differential Diagnosis Platform
title_sort plant-produced recombinant fusion protein-based newcastle disease subunit vaccine and rapid differential diagnosis platform
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7157242/
https://www.ncbi.nlm.nih.gov/pubmed/32182813
http://dx.doi.org/10.3390/vaccines8010122
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