首页> 美国卫生研究院文献>NPJ Vaccines >Heterologous prime-boost with A(H5N1) pandemic influenza vaccines induces broader cross-clade antibody responses than homologous prime-boost
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Heterologous prime-boost with A(H5N1) pandemic influenza vaccines induces broader cross-clade antibody responses than homologous prime-boost

机译:A(H5N1)大流行性流感疫苗的异源加强免疫诱导的跨交叉抗体应答比同源初疫增强

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摘要

Highly pathogenic avian influenza (HPAI) A(H5Nx) viruses continue to pose a pandemic threat. US national vaccine stockpiles are a cornerstone of the influenza pandemic preparedness plans. However, continual genetic and antigenic divergence of A(H5Nx) viruses requires the development of effective vaccination strategies using stockpiled vaccines and adjuvants for pandemic preparedness. Human sera collected from healthy adults who received either homologous (2 doses of a AS03A-adjuvanted A/turkey/Turkey/1/2005, A/Turkey), or heterologous (primed with AS03A-adjuvanted A/Indonesia/5/2005, A/Indo, followed by A/Turkey boost) prime-boost vaccination regimens were analyzed by hemagglutination inhibition and microneutralization assays against 8 wild-type HPAI A(H5Nx) viruses from 6 genetic clades. Molecular, structural and antigenic features of the A(H5Nx) viruses that could influence the cross-clade antibody responses were also explored. Compared with homologous prime-boost vaccinations, priming with a clade 2.1.3.2 antigen (A/Indo) followed by one booster dose of a clade 2.2.1 antigen (A/Turkey) administered 18 months apart did not compromise the antibody responses to the booster vaccine (A/Turkey), it also broadened the cross-clade antibody responses to several antigenically drifted variants from 6 heterologous clades, including an antigenically distant A(H5N8) virus (A/gyrfalcon/Washington/410886/2014, clade 2.3.4.4) that caused recent outbreaks in US poultry. The magnitude and breadth of the cross-clade antibody responses against emerging HPAI A(H5Nx) viruses are associated with genetic, structural and antigenic differences from the vaccine viruses and enhanced by the inclusion of an adjuvant. Heterologous prime-boost vaccination with AS03A adjuvanted vaccine offers a vaccination strategy to use existing stockpiled vaccines for pandemic preparedness against new emerging HPAI A(H5Nx) viruses.
机译:高致病性禽流感(HPAI)A(H5Nx)病毒继续构成大流行威胁。美国国家疫苗库存是流感大流行防范计划的基石。但是,A(H5Nx)病毒的持续遗传和抗原差异要求开发使用储备疫苗和佐剂的有效疫苗接种策略,以防大流行。从健康成年人收集的人血清,这些成年人接受了同源(2剂AS03A佐剂的A /火鸡/土耳其/ 1/2005,A /土耳其)或异源(以AS03A佐剂的A /印度尼西亚/印度尼西亚/ 5/2005,A引发)通过血凝抑制和微中和测定法对来自6个遗传进化枝的8种野生型HPAI A(H5Nx)病毒进行了/ Indo,然后是A / Turkey boost)初免-加强接种方案的分析。还探讨了可能影响交叉抗体反应的A(H5Nx)病毒的分子,结构和抗原特性。与同源的初免-加强疫苗接种相比,先进行进化枝2.1.3.2抗原(A / Indo)的免疫接种,然后再间隔18个月加强剂量的进化枝2.2.1抗原(A / Turkey)的免疫,不会损害针对HLA的抗体反应。增强疫苗(A / Turkey),它还扩大了对来自6个异源进化枝的几种抗原性漂移变体的交叉抗体反应,包括抗原远距离A(H5N8)病毒(A / gyrfalcon / Washington / 410886/2014,进化枝2.3。 4.4)导致最近爆发美国家禽疫情。针对新兴的HPAI A(H5Nx)病毒的交叉抗体应答的强度和广度与疫苗病毒的遗传,结构和抗原性差异相关,并通过包含佐剂而得到增强。用AS03A辅助疫苗进行异源初免-加强疫苗接种可提供一种疫苗接种策略,以使用现有的储备疫苗对新出现的HPAI A(H5Nx)病毒进行大流行防范。

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