Department of Pathobiology, Science and Research Branch, Islamic Azad University, Tehran, Iran.
Department of Animal Viral Vaccine, Razi Vaccine and Serum Research Institute, Agricultural Research, Education and Extension Organization (AREEO), Karaj, Iran.
Arch Razi Inst. 2021 Sep 1;76(3):471-485. doi: 10.22092/ari.2020.343355.1501. eCollection 2021 Summer.
As notifiable diseases, lumpy skin disease (LSD), sheep pox (SPP), and goat pox (GTP) are associated with a profound effect on cattle, sheep, and goat farming industries. Development of the ELISA method could effectively facilitate serodiagnosis of the infected animals. This study aimed to develop an ELISA system based on the recombinant full-length and truncated P32 protein (Tr.P32) of goat pox virus. The P32 protein was expressed in Rosetta strain of using pET24a vector and evaluated by SDS-PAGE and Western blotting. Then, Tr.P32 was purified by Ni-NTA affinity chromatography under denaturing conditions and used to develop a capripoxvirus-specific ELISA. Checkerboard titration and receiver-operating characteristic (ROC) analysis were used to optimize the ELISA system and determine diagnostic specificity and sensitivity, respectively. The diagnostic potential of the developed ELISA was evaluated using positive and negative control sera collected from goat, sheep, and cattle. Results showed that the expression level of full-length P32 recombinant protein was negligible, while Tr.P32, a ~ 31 kDa recombinant protein, was expressed up to 0.270-0.300 mg/200 mL of culture media. The results of checkerboard titration revealed that 675 ng/well of Tr.P32 antigen and 1:10 dilution of control sera (anti GTPV HIS and healthy goat sera) caused maximum difference in absorbance between positive and negative goat sera. The recombinant Tr.P32 showed good reactions with antibodies against GTP virus (GTPV), SPP virus (SPPV), and LSD virus (LSDV), whereas no cross-reactions with anti-Orf virus antibodies were detected. By comparing with the neutralization index (NI), cut off, diagnostic sensitivity and specificity of the developed indirect-ELISA were estimated, 0.397, 94% and 96.6%, respectively. These findings indicate that the ELISA system based on Tr.P32 protein could potentially be used in sero-surveillance of all capripoxviruses; however, further investigations are required.
作为法定报告传染病,牛结节疹(LSD)、绵羊痘(SPP)和山羊痘(GTP)对牛、羊养殖行业有严重影响。酶联免疫吸附试验(ELISA)方法的发展可以有效地促进对感染动物的血清学诊断。本研究旨在建立一种基于山羊痘病毒全长和截短 P32 蛋白(Tr.P32)的 ELISA 系统。利用 pET24a 载体在 Rosetta 菌株中表达 P32 蛋白,并通过 SDS-PAGE 和 Western blot 进行评估。然后,在变性条件下通过 Ni-NTA 亲和层析纯化 Tr.P32,并用于建立一种山羊痘病毒特异性 ELISA。棋盘滴定和接收者操作特征(ROC)分析分别用于优化 ELISA 系统,并确定诊断的特异性和敏感性。使用从山羊、绵羊和牛收集的阳性和阴性对照血清评估所开发 ELISA 的诊断潜力。结果表明,全长 P32 重组蛋白的表达水平可以忽略不计,而 Tr.P32(约 31 kDa 的重组蛋白)的表达量可达 0.270-0.300 mg/200 mL 培养基。棋盘滴定结果显示,Tr.P32 抗原 675 ng/孔和对照血清(抗 GTPV HIS 和健康山羊血清)1:10 稀释导致阳性和阴性山羊血清之间的吸光度差异最大。重组 Tr.P32 与抗 GTP 病毒(GTPV)、SPPV 和 LSDV 抗体反应良好,而与抗 Orf 病毒抗体无交叉反应。通过与中和指数(NI)比较,确定了间接 ELISA 的 cut-off 值、诊断敏感性和特异性,分别为 0.397、94%和 96.6%。这些发现表明,基于 Tr.P32 蛋白的 ELISA 系统可能可用于所有山羊痘病毒的血清学监测;但是,需要进一步研究。