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熊果酸衍生物是抗猪繁殖与呼吸综合征病毒的有效抑制剂。

Ursolic acid derivatives are potent inhibitors against porcine reproductive and respiratory syndrome virus.

作者信息

Chen Yang, Li Hui, Wu Li, Zhang Mingxin, Gao Yarou, Wang Heng, Xu Dan, Chen Weisan, Song Gaopeng, Chen Jianxin

机构信息

Guangdong Provincial Key Laboratory of Veterinary Pharmaceutics Development and Safety Evaluation, College of Veterinary Medicine, South China Agricultural University Guangzhou 510642 China

College of Materials and Energy, South China Agricultural University Guangzhou 510642 China.

出版信息

RSC Adv. 2020 Jun 15;10(38):22783-22796. doi: 10.1039/d0ra04070c. eCollection 2020 Jun 10.

Abstract

Porcine reproductive and respiratory syndrome virus (PRRSV) is one of the most devastating viral pathogens of swine and has a substantial economic impact on the global pork industry. Currently, vaccination strategies provide very limited protection against PRRSV transmission. Therefore, there is an urgent need to develop new antiviral strategies to prevent PRRSV pandemics. In this study, we showed that 3--β-chacotriosyl ursolic acid (1) and its ester analogs possessed anti-PRRSV activity , of which bioisosteric surrogates 7-15 were further generated with the aim of enhancing the selective index. Our results showed that amidation of the 17-COOH group of UA could significantly reduce cytotoxicity and enhance anti-PRRSV activity in MARC-145 cells. Among them, compound 9 displayed the strongest anti-PRRSV activity with the least cytotoxicity. Potent inhibition of representative compounds 9 and 12 on PRRSV infection was observed not only in MARC-145 cells, but also in primary porcine alveolar macrophages, PRRSV-target cells . Furthermore, compounds 8, 9, 12 and 14 exhibited broad-spectrum inhibitory activities against high pathogenic type 2 PRRSV NADC30-like and GD-XH strains as well as classical CH-1a and VR2332 strains. Mechanistically, compounds 9 and 12 inhibited PRRSV replication by directly inactivating virions and therefore affecting all tested stages of the virus life cycle, including viral entry, replication and progeny virus release, but did not affect cellular susceptibility to PRRSV. Our findings suggest that compound 9 could be a hit PRRSV inhibitor and deserves further studies in swine.

摘要

猪繁殖与呼吸综合征病毒(PRRSV)是猪最具毁灭性的病毒病原体之一,对全球猪肉产业造成了巨大的经济影响。目前,疫苗接种策略对PRRSV传播的保护作用非常有限。因此,迫切需要开发新的抗病毒策略来预防PRRSV大流行。在本研究中,我们发现3-β-查考三糖基熊果酸(1)及其酯类似物具有抗PRRSV活性,为提高选择性指数,进一步制备了其生物电子等排替代物7-15。我们的结果表明,熊果酸17-COOH基团的酰胺化可显著降低细胞毒性并增强在MARC-145细胞中的抗PRRSV活性。其中,化合物9表现出最强的抗PRRSV活性且细胞毒性最小。不仅在MARC-145细胞中,而且在PRRSV靶细胞原代猪肺泡巨噬细胞中,均观察到代表性化合物9和12对PRRSV感染的强效抑制作用。此外,化合物8、9、12和14对高致病性2型PRRSV NADC30样毒株和GD-XH毒株以及经典的CH-1a和VR2332毒株均表现出广谱抑制活性。从机制上讲,化合物9和12通过直接使病毒粒子失活来抑制PRRSV复制,从而影响病毒生命周期的所有测试阶段,包括病毒进入、复制和子代病毒释放,但不影响细胞对PRRSV的易感性。我们的研究结果表明,化合物9可能是一种有潜力的PRRSV抑制剂,值得在猪身上进一步研究。

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