数字农科院2.0

An attenuated African swine fever virus expressing the E2 glycoprotein of classical swine fever virus protects pigs against challenge of both viruses

文献类型: 外文期刊

作者: Zhang, Jiwen;Li, Fang;Chen, Weiye;Li, Yongfeng;Zhang, Zhenjiang;Hua, Ronghong;Liu, Renqiang;Zhu, Yuanmao;Sun, Encheng;Qiu, Huaji;Bu, Zhigao;Zhao, Dongming

作者机构:

关键词: African swine fever virus;classical swine fever virus;glycoprotein E2;protection;bivalent vaccine

期刊名称: EMERGING MICROBES & INFECTIONS

ISSN:

年卷期: 2025 年 14 卷 1 期

页码:

收录情况: SCIE(2025版)

摘要: African swine fever (ASF) and classical swine fever (CSF) are highly contagious diseases with high morbidity and mortality rates resulting in an enormous impact on the global pig industry. A bivalent vaccine that simultaneously protects against both ASF and CSF is highly desirable. We previously developed a seven-gene-deleted African swine fever virus (ASFV) attenuated vaccine candidate (HLJ/18-7GD) that provides complete protection against homologous strains. Herein, we constructed a recombinant virus HLJ/18-7GD-E2 by inserting the classical swine fever virus (CSFV) E2 gene into the HLJ/18-7GD via homologous recombination. After continuous in vitro passaging, Western blotting analysis showed that the E2 gene was expressed and stably maintained within the ASFV genome. Next, the immunogenicity and protective efficacy of the recombinant HLJ/18-7GD-E2 virus was evaluated in pigs. The results revealed that a single dose of 106 TCID50 of HLJ/18-7GD-E2 induced an efficient immune response and provided complete protection against lethal challenges with ASFV or CSFV. These results demonstrate that recombinant ASFV expressing the CSFV E2 protein has potential as a bivalent live attenuated vaccine, providing solid protection against ASFV and CSFV infection in pigs.

分类号:

  • 相关文献

[1]The Unique Glycosylation at Position 986 on the E2 Glycoprotein of Classical Swine Fever Virus Is Responsible for Viral Attenuation and Protection against Lethal Challenge. Yongfeng Li,Mengqi Yuan,Yuying Han,Libao Xie,Yuteng Ma,Su Li,Yuan Sun,Yuzi Luo,Weike Li,Hua Ji Qiu. 2022

[2]Pre-Clinical Evaluation of a Real-Time PCR Assay on a Portable Instrument as a Possible Field Diagnostic Tool: Experiences from the Testing of Clinical Samples for African and Classical Swine Fever Viruses. Liu, L.,Stahl, K.,Belak, S.,Liu, L.,Stahl, K.,Belak, S.,Liu, L.,Luo, Y.,Qiu, H. -J.,Luo, Y.,Qiu, H. -J.,Accensi, F.,Ganges, L.,Rodriguez, F.,Accensi, F.,Rodriguez, F.,Shan, H.,Belak, S..

[3]Recombinant Bivalent Vaccine against Foot-and-Mouth Disease Virus Serotype O/A Infection in Guinea Pig. Yi, JZ,Liu, MQ,Zhu, CZ,Zhang, Q,Sheng, ZT,Du, QY,Yan, WY,Zheng, ZX.

[4]Inactivated Recombinant Rabies Viruses Displaying Canine Distemper Virus Glycoproteins Induce Protective Immunity against Both Pathogens. Budaszewski, Renata da Fontoura,Budaszewski, Renata da Fontoura,Sawatsky, Bevan,Kraemer, Beate,von Messling, Veronika,Sawatsky, Bevan,von Messling, Veronika,Hudacek, Andrew,Yin, Xiangping,Schnell, Matthias J.,Yin, Xiangping.

[5]Safety and immunogenicity of a gE/gI/TK gene-deleted pseudorabies virus variant expressing the E2 protein of classical swine fever virus in pigs. Lei, Jian-Lin,Xia, Shui-Li,Wang, Yimin,Du, Mingliang,Xiang, Guang-Tao,Cong, Xin,Luo, Yuzi,Li, Lian-Feng,Zhang, Lingkai,Yu, Jiahui,Qiu, Hua-Ji,Sun, Yuan,Lei, Jian-Lin,Hu, Yonghao.

[6]A rabies virus vectored severe fever with thrombocytopenia syndrome (SFTS) bivalent candidate vaccine confers protective immune responses in mice. Tian Li,Yan Lina,Zheng Wenwen,Lei Xiaoying,Fu Qianyun,Xue Xianghong,Wang Xianwei,Xia Xianzhu,Zheng Xuexing. 2021

[7]A novel inactivated bivalent vaccine for chickens against emerging hepatitis-hydropericardium syndrome and infectious bursal disease. Yu Zhang,Aijing Liu,Nan Jiang,Xiaole Qi,Yulong Gao,Hongyu Cui,Changjun Liu,Yanping Zhang,Kai Li,Li Gao,Xiaomei Wang,Qing Pan. 2022

[8]Immunogenic cross-reactivity between different serotypes novel duck reoviruses: Evaluation of cross-protection provided by mono or bivalent vaccine. Dong Huang,Yu Shao,Ruizhi Wang,Sijia Liu,Shilei Zhang,Shijun Bao. 2025

[9]Plasmid containing CpG motifs enhances the efficacy of porcine reproductive and respiratory syndrome live attenuated vaccine. Guo, Xiaoyu,Hou, Shaohua,Zhu, Hongfei,Guo, Xiaoyu,Sanchez-Vizcaino, J. M.,Guo, Xiaoyu,Sanchez-Vizcaino, J. M.,Zhang, Quan,Zhai, Guoqin. 2011

[10]Cloning, expressing and functional analysis of SjMF4, a novel Schistosoma japonicum gene. Zhang, L,Cheng, GF,Fu, ZQ,Jin, YM,Feng, XG,Yuan, CX,Cai, YM,Lin, JJ. 2003

[11]Recombination and expression of classical swine fever virus (CSFV) structural protein E2 gene in Chlamydomonas reinhardtii chroloplasts. He, Dong-Mei,Qian, Kai-Xian,Shen, Gui-Fang,Zhang, Zhi-Fang,Li, Yi-Nue,Su, Zhong-Liang,Shao, Hong-Bo.

[12]H5N1 influenza virus-like particle vaccine protects mice from heterologous virus challenge better than whole inactivated virus. Ren, Zhiguang,Qin, Chuan,Xia, Xianzhu,Ren, Zhiguang,Qin, Chuan,Xia, Xianzhu,Ren, Zhiguang,Ji, Xianliang,Meng, Lingnan,Wei, Yurong,Wang, Tiecheng,Feng, Na,Zheng, Xuexing,Wang, Hualei,Li, Nan,Gao, Xiaolong,Zhao, Yongkun,Yang, Songtao,Gao, Yuwei,Xia, Xianzhu,Ji, Xianliang,Meng, Lingnan,Wei, Yurong,Jin, Hongli,Gao, Yuwei,Xia, Xianzhu,Gao, Yuwei,Xia, Xianzhu.

[13]Infectious bronchitis virus poly-epitope-based vaccine protects chickens from acute infection. Tan, Lei,Zhang, Yuqiang,Liu, Fang,Yuan, Yanmei,Zhan, Yuan,Sun, Yingjie,Qiu, Xusheng,Meng, Chunchun,Song, Cuiping,Ding, Chan,Ding, Chan.

[14]A novel gE-deleted pseudorabies virus (PRV) provides rapid and complete protection from lethal challenge with the PRV variant emerging in Bartha-K61-vaccinated swine population in China. Wang, Chun-Hua,Yuan, Jin,Qin, Hua-Yang,Luo, Yuzi,Cong, Xin,Li, Yongfeng,Chen, Jianing,Li, Su,Sun, Yuan,Qiu, Hua-Ji.

[15]A proviral derivative from a reference attenuated EIAV vaccine strain failed to elicit protective immunity. Ma, Jian,Shi, Nan,Jiang, Cheng-Gang,Lin, Yue-Zhi,Wang, Xue-Feng,Wang, Shuai,Lv, Xiao-Ling,Zhao, Li-Ping,Kong, Xian-Gang,Zhou, Jian-Hua,Shen, Rong-Xian,Ma, Jian,Shao, Yi-Ming. 2011

[16]A bacterial ghost improves the immunological efficacy of a Newcastle disease virus inactivated vaccine. Si, Wei,Yu, Shenye,Liu, Henggui,Wang, Chunlai,Chen, Liping,Wang, Gaoling,Wu, Jianan,Liu, Siguo.

[17]A broad protection provided by matrix protein 2 (M2) of avian influenza virus. Meng, Qingwen,Liu, Guangliang,Liu, Yonggang,Wang, Wei,Chen, Hongyan,Deng, Xiaoxia,Xu, Kehui,Zheng, Xiangdong,Zhang, Dongwei,Pang, Hai,Liu, Guangliang.

[18]Immunoprotective mechanisms in swine within the "grey zone" in antibody response after immunization with foot-and-mouth disease vaccine. Zhang, Liu,Feng, Xia,Jin, Ye,Ma, Junwu,Cai, Hu,Zhang, Xiaoxia.

[19]Immunogenicity And Protective Efficacy Of A.n Inactivated Cell Culture-Derived S eneca Valley Virus Vaccine In Pigs. Yang, F,Zhu, ZX,Cao, WJ,Liu, HA,Zhang, KS,Tian, H,Liu, XT,Zheng, HX. 2018

[20]Replication and vaccine protection of multiple infectious bronchitis virus strains in pheasants (Phasianus colchicus). Zongxi Han,Xiaochen Xu,Huixin Li,Lili Zhang,Yutong Hou,Shengwang Liu. 2021

作者其他论文 更多>>