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Influenza viruses and the evolution of avian influenza virus H5N1.

机译:流感病毒和禽流感病毒H5N1的进化。

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摘要

Although small in size and simple in structure, influenza viruses are sophisticated organisms with highly mutagenic genomes and wide antigenic diversity. They are species-specific organisms. Mutation and reassortment have resulted in newer viruses such as H5N1, with new resistance against anti-viral medications, and this might lead to the emergence of a fully transmissible strain, as occurred in the 1957 and 1968 pandemics. Influenza viruses are no longer just a cause of self-limited upper respiratory tract infections; the H5N1 avian influenza virus can cause severe human infection with a mortality rate exceeding 50%. The case death rate of H5N1 avian influenza infection is 20 times higher than that of the 1918 infection (50% versus 2.5%), which killed 675000 people in the USA and almost 40 million people worldwide. While the clock is still ticking towards what seems to be inevitable pandemic influenza, on April 17, 2007 the U.S. Food and Drug Administration (FDA) approved the first vaccine against theavian influenza virus H5N1 for humans at high risk. However, more research is needed to develop a more effective and affordable vaccine that can be given at lower doses.
机译:尽管流感病毒体积小,结构简单,但它们是具有高度诱变基因组和广泛抗原多样性的复杂生物。它们是特定物种的生物。突变和重组产生了新的病毒,例如H5N1,对抗病毒药物产生了新的抵抗力,这可能导致出现完全可传播的毒株,如1957年和1968年的大流行病一样。流感病毒不再仅仅是自我限制的上呼吸道感染的原因。 H5N1禽流感病毒可导致严重的人类感染,死亡率超过50%。 H5N1禽流感感染的病例死亡率是1918年感染的病例死亡率的20倍(50%比2.5%),后者在美国造成675,000人死亡,在世界范围内将近4000万人死亡。尽管时钟仍在逼近不可避免的大流行性流感,但在2007年4月17日,美国食品药品监督管理局(FDA)批准了针对高危人群的首个针对禽流感H5N1的疫苗。但是,需要更多的研究来开发更有效和负担得起的疫苗,可以以较低的剂量给予。

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