首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Cross-protection by co-immunization with influenza hemagglutinin DNA and inactivated virus vaccine using coated microneedles
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Cross-protection by co-immunization with influenza hemagglutinin DNA and inactivated virus vaccine using coated microneedles

机译:通过使用包被的微针与流感血凝素DNA和灭活的病毒疫苗共同免疫进行交叉保护

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The need for annual revaccination against influenza is a burden on the healthcare system, leads to low vaccination rates and makes timely vaccination difficult against pandemic strains, such as during the 2009 H1N1 influenza pandemic. In an effort toward achieving a broadly protective vaccine that provides cross-protection against multiple strains of influenza, this study developed a microneedle patch to co-immunize with A/PR8 influenza hemagglutinin DNA and A/PR8 inactivated virus vaccine. We hypothesize that this dual component vaccination strategy administered to the skin using microneedles will provide cross-protection against other strains of influenza. To test this hypothesis, we developed a novel coating formulation that did not require additional excipients to increase coating solution viscosity by using the DNA vaccine itself to increase viscosity and thereby enable thick coatings of DNA vaccine and inactivated virus vaccine on metal microneedles. Co-immunization in this way not only generated robust antibody responses against A/PR8 influenza but also generated robust heterologous antibody responses against pandemic 2009 H1N1 influenza in mice. Challenge studies showed complete cross-protection against lethal challenge with live pandemic 2009 H1N1 virus. Control experiments using A/PR8 inactivated influenza virus vaccine with placebo DNA coated onto microneedles produced lower antibody titers and provided incomplete protection against challenge. Overall, this is the first study showing DNA solution as a microneedle coating agent and demonstrating cross-protection by co-immunization with inactivated virus and DNA vaccine using coated microneedles.
机译:每年需要重新接种流感疫苗是医疗保健系统的负担,导致疫苗接种率低,并且难以及时针对大流行毒株进行疫苗接种,例如在2009年H1N1流感大流行期间。为了努力实现对多种流感病毒具有交叉保护作用的广泛保护性疫苗,本研究开发了一种微针贴片,可与A / PR8流感血凝素DNA和A / PR8灭活的病毒疫苗共同免疫。我们假设使用微针对皮肤施用的这种双组分疫苗接种策略将提供针对其他流感病毒株的交叉保护。为了验证这一假设,我们开发了一种新型涂料配方,该配方不需要额外的赋形剂即可通过使用DNA疫苗本身来增加粘度从而增加DNA疫苗和灭活病毒疫苗在金属微针上的厚涂层,从而增加涂料溶液的粘度。以这种方式进行的共同免疫不仅在小鼠中产生了针对A / PR8流感的强大抗体应答,而且还产生了针对大流行2009 H1N1流感的强大异源抗体应答。挑战研究显示,针对2009年H1N1大流行性流感病毒的致命挑战具有完全的交叉保护作用。使用A / PR8灭活的流感病毒疫苗(将安慰剂DNA包被在微针上)进行的对照实验产生了较低的抗体滴度,并提供了针对攻击的不完全保护。总的来说,这是第一项研究,显示了DNA溶液作为微针包被剂,并通过使用包被的微针与灭活病毒和DNA疫苗共同免疫来证明交叉保护。

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