A novel strategy to attenuate porcine reproductive and respiratory syndrome virus by inhibiting viral replication in the target pulmonary alveolar macrophages via hematopoietic-specific miR-142.

One health advances Pub Date : 2023-01-01 Epub Date: 2023-03-30 DOI:10.1186/s44280-023-00002-2
Shaoyuan Tan, Weixin Wu, Xinna Ge, Yongning Zhang, Jun Han, Xin Guo, Lei Zhou, Hanchun Yang
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引用次数: 1

Abstract

Porcine reproductive and respiratory syndrome virus (PRRSV) is an economically important pathogen for the global pork industry. Although modified live virus (MLV) vaccines are commonly used for PRRSV prevention and control,  they still carry a risk of infecting the host and replicating in target cells, thereby increasing the likehood of virus recombination and reversion to virulence. In this study, we inserted the target sequence of miR-142 into the nsp2 hypervariable region of PRRSV to inhibit viral replication in its host cells of pigs, with the aim of achieving virus attenuation. The chimeric virus RvJX-miR-142t was successfully rescued and retained its growth characteristics in MARC-145 cells. Furthermore, it did not replicate in MARC-145 cells transfected with miRNA-142 mimic. We also observed limited replication ability of RvJX-miR-142t in pulmonary alveolar macrophages, which are the main cell types that PRRSV infects. Our animal inoculation study showed that pigs infected with RvJX-miR-142t displayed less severe clinical symptoms, lower viremia titers, lighter lung lesions, and significantly lower mortality rates during the first 7 days post-inoculation, in comparison to pigs infected with the backbone virus RvJXwn. We detected a partially deletion of the miR-142 target sequence in the RvJX-miR-142t genome at 14 dpi. It is highly possible that the reversion of viral virulence observed in the later timepoints of our animal experiment was caused by that. Our study provided a new strategy for attenuating PRRSV and confirmed its effectiveness. However, further studies are necessary to increase the stability of this virus under host selection pressure.

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一种通过造血特异性miR-142抑制病毒在靶肺泡巨噬细胞中的复制来减弱猪繁殖和呼吸综合征病毒的新策略。
猪繁殖与呼吸综合征病毒(PRRSV)是全球猪肉工业的一种经济上重要的病原体。尽管修饰活病毒(MLV)疫苗通常用于PRRSV的预防和控制,但它们仍然具有感染宿主和在靶细胞中复制的风险,从而增加了病毒重组和毒力逆转的可能性。在这项研究中,我们将miR-142的靶序列插入PRRSV的nsp2高变区,以抑制病毒在其宿主细胞中的复制,目的是实现病毒的衰减。成功挽救了RvJX-miR-142t嵌合病毒,并在MARC-145细胞中保持了其生长特性。此外,它在用miRNA-142模拟物转染的MARC-145细胞中没有复制。我们还观察到RvJX-miR-142t在肺泡巨噬细胞中的复制能力有限,肺泡巨噬细胞是PRRSV感染的主要细胞类型。我们的动物接种研究表明,与感染骨干病毒RvJXwn的猪相比,感染RvJX-miR-142t的猪在接种后的前7天表现出较轻的临床症状、较低的病毒血症滴度、较轻的肺部病变和显著较低的死亡率。我们在14dpi时检测到RvJX-miR-142t基因组中miR-142靶序列的部分缺失。在我们动物实验的后期时间点观察到的病毒毒力逆转很可能是由此引起的。我们的研究为减少PRRSV提供了一种新的策略,并证实了其有效性。然而,有必要进行进一步的研究,以提高这种病毒在宿主选择压力下的稳定性。
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