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Evaluation of the Efficacy of an Attenuated Live Vaccine against Highly Pathogenic Porcine Reproductive and Respiratory Syndrome Virus in Young Pigs

机译:减毒活疫苗对高致病性猪繁殖与呼吸综合征病毒在幼猪中的功效评估

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Highly pathogenic porcine reproductive and respiratory syndrome virus (HP-PRRSV) is characterized by high fever and high mortality in pigs of all ages and has severely affected the pork industry of China in the last few years. An attenuated HP-PRRSV strain, TJM, was obtained by passaging HP-PRRSV strain TJ on MARC-145 cells for 92 passages. Porcine reproductive and respiratory syndrome virus (PRRSV)- and antibody-free pigs were inoculated intramuscularly with TJM (105.0 50% tissue culture infective doses [TCID50]) and challenged at 28, 60, 120, and 180 days postimmunization (dpi). The results showed that 5/5, 5/5, 5/5, and 4/5 immunized pigs were protected from the lethal challenge and did not develop fever and clinical diseases at each challenge, respectively. Compared to control pigs, vaccinated pigs showed much milder pathological lesions and gained significantly more weight (P < 0.01). Sequence analysis of different passages of strain TJ showed that the attenuation resulted in a deletion of a continuous 120 amino acids (aa), in addition to the discontinuous 30-aa deletion in the nsp2 region. The analysis also demonstrated that the 120-aa deletion was genetically stable in vivo. These results suggested that HP-PRRSV TJM was efficacious against a lethal challenge with a virulent HP-PRRSV strain, and effective protection could last at least 4 months. Therefore, strain TJM is a good candidate for an efficacious modified live virus vaccine as well as a useful molecular marker vaccine against HP-PRRSV.
机译:高致病性猪繁殖与呼吸综合症病毒(HP-PRRSV)的特征是各个年龄段的猪都发高烧和高死亡率,并且在最近几年严重影响了中国的猪肉产业。通过在MARC-145细胞上传代HP-PRRSV株TJ 92代,获得减毒的HP-PRRSV株TJM。用TJM(10 5.0 50%组织培养感染剂量[TCID 50 ])肌肉注射猪繁殖与呼吸综合征病毒(PRRSV)和无抗体猪在免疫后28、60、120和180天(dpi)。结果表明,分别对5 / 5、5 / 5、5 / 5和4/5免疫的猪提供了保护,使其免受致死性攻击,并且在每次攻击时均未出现发烧和临床疾病。与对照猪相比,接种疫苗的猪显示出轻得多的病理损伤,并且体重明显增加( P <0.01)。菌株TJ不同传代的序列分析表明,除了在nsp2区域中不连续的30-aa缺失之外,这种衰减还导致连续的120个氨基酸(aa)的缺失。分析还表明120-aa缺失在体内在遗传上是稳定的。这些结果表明,HP-PRRSV TJM能有效抵抗强毒HP-PRRSV毒株的致死性攻击,并且有效保护至少可持续4个月。因此,TJM菌株是有效修饰的活病毒疫苗以及抗HP-PRRSV有用的分子标记疫苗的良好候选者。

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