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一种基于在悬浮哺乳动物细胞中表达的结构设计E2蛋白的改良间接ELISA法,用于特异性检测抗经典猪瘟病毒抗体。

An improved indirect ELISA for specific detection of antibodies against classical swine fever virus based on structurally designed E2 protein expressed in suspension mammalian cells.

作者信息

Ji Shengwei, Luo Yuzi, Zhang Tengteng, Shao Lina, Meng Xing-Yu, Wang Yimin, Gao Yao, Li Yongfeng, Li Su, Sun Yuan, Jin Xin, Qiu Hua-Ji

机构信息

State Key Laboratory of Veterinary Biotechnology, Harbin Veterinary Research Institute (HVRI), Chinese Academy of Agricultural Sciences, 678 Haping Road, Harbin, 150069, China.

Department of Animal Medicine, Agricultural College of Yanbian University, Gongyuan Street, Yanji, 133002, China.

出版信息

Arch Virol. 2018 Jul;163(7):1831-1839. doi: 10.1007/s00705-018-3809-7. Epub 2018 Mar 23.

Abstract

Classical swine fever (CSF), which is caused by classical swine fever virus (CSFV), is a highly contagious disease of pigs. CSFV is genetically and serologically related to bovine viral diarrhea virus (BVDV), a ruminant pestivirus. However, currently available ELISAs based on the full-length E2 protein of CSFV cannot discriminate anti-CSFV from anti-BVDV antibodies. In this study, a truncated CSFV E2 protein (amino acids 690 to 879) covering antigenic domains B/C/D/A (E2) was designed based on homologous modeling according to the crystal structure of the BVDV E2 protein. The E2 protein was expressed in CHO cells adapted to serum-free suspension culture, and an indirect ELISA (iELISA) was established based on the recombinant protein. No serological cross-reaction was observed for anti-BVDV sera in the iELISA. When testing 282 swine serum samples, the iELISA displayed a high sensitivity (119/127, 93.7%) and specificity (143/155, 92.3%), with an agreement of 92.9% (262/282) and 92.2% (260/282) with virus neutralization test and the IDEXX CSFV blocking ELISA, respectively. Taken together, the newly developed iELISA is highly specific and sensitive and able to differentiate anti-CSFV from anti-BVDV antibodies.

摘要

经典猪瘟(CSF)由经典猪瘟病毒(CSFV)引起,是猪的一种高度传染性疾病。CSFV在基因和血清学上与反刍动物瘟病毒牛病毒性腹泻病毒(BVDV)相关。然而,目前基于CSFV全长E2蛋白的ELISA无法区分抗CSFV抗体和抗BVDV抗体。在本研究中,根据BVDV E2蛋白的晶体结构,通过同源建模设计了一种覆盖抗原结构域B/C/D/A(E2)的截短CSFV E2蛋白(氨基酸690至879)。该E2蛋白在适应无血清悬浮培养的CHO细胞中表达,并基于重组蛋白建立了间接ELISA(iELISA)。在iELISA中未观察到抗BVDV血清的血清学交叉反应。检测282份猪血清样本时,iELISA显示出高敏感性(119/127,93.7%)和特异性(143/155,92.3%),与病毒中和试验和IDEXX CSFV阻断ELISA的一致性分别为92.9%(262/282)和92.2%(260/282)。综上所述,新开发的iELISA具有高度特异性和敏感性,能够区分抗CSFV抗体和抗BVDV抗体。

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