Gao Li, Sun Yipeng, Si Jianyong, Liu Jinhua, Sun Guibo, Sun Xiaobo, Cao Li
Institute of Medicinal Plant Development, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, China.
Key Laboratory of Animal Epidemiology and Zoonosis, Ministry of Agriculture, College of Veterinary Medicine, China Agricultural University, Beijing, China.
PLoS One. 2014 Dec 1;9(12):e113604. doi: 10.1371/journal.pone.0113604. eCollection 2014.
Influenza virus is the cause of significant morbidity and mortality, posing a serious health threat worldwide. Here, we evaluated the antiviral activities of Cryptoporus volvatus extract on influenza virus infection. Our results demonstrated that the Cryptoporus volvatus extract inhibited different influenza virus strain replication in MDCK cells. Time course analysis indicated that the extract exerted its inhibition at earlier and late stages in the replication cycle of influenza virus. Subsequently, we confirmed that the extract suppressed virus internalization into and released from cells. Moreover, the extract significantly reduced H1N1/09 influenza virus load in lungs and dramatically decreased lung lesions in mice. And most importantly, the extract protected mice from lethal challenge with H1N1/09 influenza virus. Our results suggest that the Cryptoporus volvatus extract could be a potential candidate for the development of a new anti-influenza virus therapy.
流感病毒是导致严重发病和死亡的原因,在全球范围内构成严重的健康威胁。在此,我们评估了茯苓提取物对流感病毒感染的抗病毒活性。我们的结果表明,茯苓提取物可抑制MDCK细胞中不同流感病毒株的复制。时间进程分析表明,该提取物在流感病毒复制周期的早期和晚期均发挥抑制作用。随后,我们证实该提取物可抑制病毒进入细胞以及从细胞中释放。此外,该提取物可显著降低小鼠肺部的H1N1/09流感病毒载量,并显著减轻肺部病变。最重要的是,该提取物可保护小鼠免受H1N1/09流感病毒的致死性攻击。我们的结果表明,茯苓提取物可能是开发新型抗流感病毒疗法的潜在候选药物。