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Classical swine fever virus replicon particles lacking the Erns gene: a potential marker vaccine for intradermal application.

机译:缺乏Erns基因的经典猪瘟病毒复制子颗粒:一种潜在的用于皮内应用的标记疫苗。

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摘要

Classical swine fever virus replicon particles (CSF-VRP) deficient for E(rns) were evaluated as a non-transmissible marker vaccine. A cDNA clone of CSFV strain Alfort/187 was used to obtain a replication-competent mutant genome (replicon) lacking the sequence encoding the 227 amino acids of the glycoprotein E(rns) (A187delE(rns)). For packaging of A187delE(rns) into virus particles, porcine kidney cell lines constitutively expressing E(rns) of CSFV were established. The rescued VRP were infectious in cell culture but did not yield infectious progeny virus. Single intradermal vaccination of two pigs with 10(7) TCID(50) of VRP A187delE(rns) elicited neutralizing antibodies, anti-E2 antibodies, and cellular immune responses determined by an increase of IFN-gamma producing cells. No anti-E(rns) antibodies were detected in the vaccinees confirming that this vaccine represents a negative marker vaccine allowing differentiation between infected and vaccinated animals. The two pigs were protected against lethal challenge with the highly virulent CSFV strain Eystrup. In contrast, oral immunization resulted in only partial protection, and neither CSFV-specific antibodies nor stimulated T-cells were found before challenge. These data represent a good basis for more extended vaccination/challenge trials including larger numbers of animals as well as more thorough analysis of virus shedding using sentinel animals to monitor horizontal spread of the challenge virus.
机译:缺乏E(rns)的经典猪瘟病毒复制子颗粒(CSF-VRP)被评估为不可传播的标记疫苗。 CSFV菌株Alfort / 187的cDNA克隆用于获得具有复制能力的突变基因组(复制子),该基因组缺少编码糖蛋白E(rns)(A187delE(rns))227个氨基酸的序列。为了将A187delE(rns)包装到病毒颗粒中,建立了组成型表达CSFV E(rns)的猪肾细胞系。拯救的VRP在细胞培养中具有传染性,但不产生传染性子代病毒。用10(7)TCID(50)的VRP A187delE(rns)对两只猪进行一次皮内疫苗接种会引起中和抗体,抗E2抗体和由产生IFN-γ的细胞决定的细胞免疫应答。在疫苗中未检测到抗E(rns)抗体,证实该疫苗代表了阴性标记疫苗,可区分感染动物和接种疫苗的动物。用强毒的CSFV株Eystrup保护了这两只猪免受致命的攻击。相反,口服免疫仅导致部分保护,在攻击前既未发现CSFV特异性抗体也未发现刺激的T细胞。这些数据为更广泛的疫苗接种/挑战试验(包括更大数量的动物)以及使用前哨动物监测挑战病毒的水平扩散进行的更广泛的病毒脱落分析提供了良好的基础。

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