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Inhibition of African swine fever virus in liquid and feed by medium-chain fatty acids and glycerol monolaurate

机译:中链脂肪酸和甘油单发酸液中非洲猪瘟病毒对非洲猪瘟病毒的抑制作用

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Background:The ongoing African swine fever virus(ASFv)epidemic has had a major impact on pig production globally and biosecurity efforts to curb ASFv infectivity and transmission are a high priority.It has been recently identified that feed and feed ingredients,along with drinking water,can serve as transmission vehicles and might facilitate transboundary spread of ASFv.Thus,it is important to test the antiviral activity of regulatory compatible,antiviral feed additives that might inhibit ASFv infectivity in feed.One promising group of feed additive candidates includes medium-chain fatty acids(MCFA)and monoglyceride derivatives,which are known to disrupt the lipid membrane surrounding certain enveloped viruses and bacteria.Results:The antiviral activities of selected MCFA,namely caprylic,capric,and lauric acids,and a related monoglyceride,glycerol monolaurate(GML),to inhibit ASFv in liquid and feed conditions were investigated and suitable compounds and inclusion rates were identified that might be useful for mitigating ASFv in feed environments.Antiviral assays showed that all tested MCFA and GML inhibit ASFv.GML was more potent than MCFA because it worked at a lower concentration and inhibited ASFv due to direct virucidal activity along with one or more other antiviral mechanisms.Dose-dependent feed experiments further showed that sufficiently high GML doses can significantly reduce ASFv infectivity in feed in a linear manner in periods as short as 30 min,as determined by infectious viral titer measurements.Enzyme-linked immunosorbent assay(ELISA)experiments revealed that GML treatment also hinders antibody recognition of the membrane-associated ASFv p72 structural protein,which likely relates to protein conformational changes arising from viral membrane disruption.Conclusion:Together,the findings in this study indicate that MCFA and GML inhibit ASFv in liquid conditions and that GML is also able to reduce ASFv infectivity in feed,which may help to curb disease transmission.
机译:背景:持续的非洲猪瘟病毒(ASFV)流行病对猪生产产生了重大影响,并且抑制ASFV感染性和传输的生物安全性是高优先级。最近已识别出饲料和饲料成分,以及饮用水,可以用作透射车,并可促进ASFV的跨界传播。对于测试可能抑制饲料中ASFV感染性的调节抗病毒饲料添加剂的抗病毒活性是重要的。发出的饲料添加剂候选组包括中链已知脂肪酸(MCFA)和单甘油酯衍生物破坏某些包膜病毒和细菌的脂质膜。结果:所选MCFA的抗病毒活性,即胶合型,癸酸和月桂酸,以及相关的单甘油酯,甘油单甘油酯(为了抑制液体和进料条件下的抑制ASFV,鉴定了合适的化合物和包含速率这可能是可用于减轻饲料环境中的ASFV .Antiviral测定表明,所有测试的MCFA和GML抑制作用比MCFA更有效,因为它以较低的浓度工作并导致ASFV抑制由于直接的象毒活性以及一种或多种其他植物活动抗病毒机制。依赖性饲料实验进一步表明,通过感染病毒滴度测量确定的,在短至30分钟内,足够高的GML剂量可以在短至30分钟内以线性方式显着降低饲料中的ASFV感染性.Enable-Lighted免疫吸附试验(ELISA)实验表明,GML治疗还阻碍了膜相关ASFV P72结构蛋白的抗体识别,这可能涉及来自病毒膜破坏引起的蛋白质构象变化。结论:在本研究中的研究结果表明MCFA和GML抑制液体中的ASFV条件和GML还能够降低饲料中的ASFV感染性,这可能有助于抑制疾病TR制服。

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