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从致命病毒到救命疫苗:研发大流行性流感灭活疫苗

From lethal virus to life-saving vaccine: developing inactivated vaccines for pandemic influenza.

作者信息

Wood John M, Robertson James S

机构信息

National Institute for Biological Standards and Control, Blanche Lane, South Mimms, Potters Bar, Hertfordshire EN6 3QG, UK.

出版信息

Nat Rev Microbiol. 2004 Oct;2(10):842-7. doi: 10.1038/nrmicro979.

Abstract

Over the past eight years, cases of human infection with highly pathogenic avian influenza viruses have raised international concern that we could be on the brink of a global influenza pandemic. Many of these human infections have proved fatal and if the viruses had been able to transmit efficiently from person to person, the effects would have been devastating. How can we arm ourselves against this pandemic threat when these viruses are too dangerous to use in conventional vaccine production? Recent technological developments (reverse genetics) have allowed us to manipulate the influenza virus genome so that we can construct safe, high-yielding vaccine strains. However, the transition of reverse-genetic technologies from the research laboratory to the manufacturing environment has presented new challenges for vaccine manufacturers as well as veterinary and public health authorities.

摘要

在过去八年中,人类感染高致病性禽流感病毒的病例引发了国际社会的关注,人们担心我们可能正处于全球流感大流行的边缘。许多此类人类感染病例已被证实是致命的,如果这些病毒能够在人与人之间有效传播,后果将是灾难性的。当这些病毒过于危险而无法用于传统疫苗生产时,我们如何才能武装自己抵御这种大流行威胁呢?最近的技术发展(反向遗传学)使我们能够操纵流感病毒基因组,从而构建安全、高产的疫苗毒株。然而,反向遗传技术从研究实验室向生产环境的转变给疫苗制造商以及兽医和公共卫生当局带来了新的挑战。

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