首页> 外文期刊>The Journal of Infectious Diseases >Immunization with Reverse-Genetics-Produced H5N1 Influenza Vaccine Protects Ferrets against Homologous and Heterologous Challenge.
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Immunization with Reverse-Genetics-Produced H5N1 Influenza Vaccine Protects Ferrets against Homologous and Heterologous Challenge.

机译:用反向基因产生的H5N1流感疫苗免疫可保护雪貂免受同源和异源性攻击。

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Background. Multiple cases of transmission of avian H5N1 influenza viruses to humans illustrate the urgent need for an efficacious, cross-protective vaccine.Methods. Ferrets were immunized with inactivated whole-virus vaccine produced by reverse genetics with the hemagglutinin (HA) and neuraminidase genes of A/HK/213/03 virus. Ferrets received a single dose of vaccine (7 or 15 mu g of HA) with aluminum hydroxide adjuvant or 2 doses (7 mu g of HA each) without adjuvant and were challenged with 10(6) 50% egg infectious doses of A/HK/213/03, A/HK/156/97, or A/Vietnam/1203/04 virus.Results. One or 2 doses of vaccine induced a protective antibody response to the vaccine strain. All immunization regimens completely protected ferrets from challenge with homologous wild-type A/HK/213/03 virus: no clinical signs of infection were observed, virus replication was significantly reduced (P<.05) and was restricted to the upper respiratory tract, and spread of virus to the brain was prevented. Importantly, all vaccinated ferrets were protected against lethal challenge with the highly pathogenic strain A/Vietnam/1203/04. The 2-dose schedule induced higher levels of antibodies that were cross-reactive to antigenically distinct H5N1 viruses.Conclusions. H5N1 vaccines may stimulate an immune response that is more cross-protective than what might be predicted by in vitro assays and, thus, hold potential for being stockpiled as "initial" pandemic vaccines.
机译:背景。禽类H5N1流感病毒向人类传播的多例病例表明,迫切需要一种有效的交叉保护疫苗。用A / HK / 213/03病毒的血凝素(HA)和神经氨酸酶基因通过反向遗传产生的灭活全病毒疫苗免疫白鼬。雪貂接受含氢氧化铝佐剂的单剂疫苗(7或15微克HA)或不含佐剂的2剂疫苗(各7克HA),并接受10(6)50%卵传染性剂量的A / HK攻击/ 213/03,A / HK / 156/97或A / Vietnam / 1203/04病毒。一剂或两剂疫苗诱导对疫苗株的保护性抗体应答。所有免疫方案都完全保护了雪貂免受野生同型A / HK / 213/03病毒的攻击:未观察到感染的临床迹象,病毒复制显着减少(P <.05),并局限于上呼吸道,并且阻止了病毒向大脑的传播。重要的是,所有疫苗接种的雪貂都受到高致病性菌株A / Vietnam / 1203/04的保护,可以抵抗致命的攻击。 2剂给药方案可诱导更高水平的抗体,这些抗体可与抗原性不同的H5N1病毒发生交叉反应。 H5N1疫苗可能会激发比交叉检测更具交叉保护作用的免疫反应,因此具有作为“初始”大流行疫苗储存的潜力。

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