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首页> 外文期刊>Frontiers in Immunology >Establishment of Systems to Enable Isolation of Porcine Monoclonal Antibodies Broadly Neutralizing the Porcine Reproductive and Respiratory Syndrome Virus
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Establishment of Systems to Enable Isolation of Porcine Monoclonal Antibodies Broadly Neutralizing the Porcine Reproductive and Respiratory Syndrome Virus

机译:建立能够广泛分离中和猪繁殖与呼吸综合征病毒的猪单克隆抗体的系统

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The rapid evolution of porcine reproductive and respiratory syndrome viruses (PRRSV) poses a major challenge to effective disease control since available vaccines show variable efficacy against divergent strains. Knowledge of the antigenic targets of virus-neutralizing antibodies that confer protection against heterologous PRRSV strains would be a catalyst for the development of next-generation vaccines. Key to discovering these epitopes is the isolation of neutralizing monoclonal antibodies (mAbs) from immune pigs. To address this need, we sought to establish systems to enable the isolation of PRRSV neutralizing porcine mAbs. We experimentally produced a cohort of immune pigs by sequential challenge infection with four heterologous PRRSV strains spanning PRRSV-1 subtypes and PRRSV species. Whilst priming with PRRSV-1 subtype 1 did not confer full protection against a subsequent infection with a PRRSV-1 subtype 3 strain, animals were protected against a subsequent PRRSV-2 infection. The infection protocol resulted in high serum neutralizing antibody titers against PRRSV-1 Olot/91 and significant neutralization of heterologous PRRSV-1/-2 strains. Enriched memory B cells isolated at the termination of the study were genetically programmed by transduction with a retroviral vector expressing the Bcl-6 transcription factor and the anti-apoptotic Bcl-xL protein, a technology we demonstrated efficiently converts porcine memory B cells into proliferating antibody-secreting cells. Pools of transduced memory B cells were cultured and supernatants containing PRRSV-specific antibodies identified by flow cytometric staining of infected MARC-145 cells and in vitro neutralization of PRRSV-1. Collectively, these data suggest that this experimental system may be further exploited to produce a panel of PRRSV-specific mAbs, which will contribute both to our understanding of the antibody response to PRRSV and allow epitopes to be resolved that may ultimately guide the design of immunogens to induce cross-protective immunity.
机译:猪繁殖与呼吸综合征病毒(PRRSV)的快速发展对有效的疾病控制提出了重大挑战,因为可用的疫苗显示出针对不同菌株的可变功效。赋予针对异源PRRSV病毒株保护的病毒中和抗体的抗原靶标的知识将是下一代疫苗开发的催化剂。发现这些表位的关键是从免疫猪中分离中和性单克隆抗体(mAb)。为了满足这一需求,我们寻求建立能够分离PRRSV中和猪单克隆抗体的系统。我们通过连续挑战感染,用四种异源PRRSV株,跨越PRRSV-1亚型和PRRSV物种,实验性地产生了一批免疫猪。虽然用PRRSV-1亚型1引发并不能完全保护其免受PRRSV-1亚型3株的后续感染,但保护动物免受随后的PRRSV-2感染。感染方案导致针对PRRSV-1 Olot / 91的高血清中和抗体滴度和异源PRRSV-1 / -2菌株的显着中和。在研究结束时分离出的富集的记忆B细胞通过表达Bcl-6转录因子和抗凋亡Bcl-xL蛋白的逆转录病毒载体转导进行遗传编程,我们证明了该技术可有效地将猪记忆B细胞转化为增殖抗体分泌细胞。培养转导的记忆B细胞库,并通过感染的MARC-145细胞的流式细胞术染色和PRRSV-1的体外中和来鉴定含有PRRSV特异性抗体的上清液。总体而言,这些数据表明,可以进一步利用该实验系统来生产一组PRRSV特异性mAb,这将有助于我们了解对PRRSV的抗体反应,并可以决定抗原表位,从而最终指导免疫原设计诱导交叉保护性免疫。

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