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Increased immunogenicity of avian influenza DNA vaccine delivered to the skin using a microneedle patch

机译:使用微针贴片增加禽流感DNA疫苗的免疫原性。使用微针贴剂

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摘要

Effective public health responses to an influenza pandemic require an effective vaccine that can be manufactured and administered to large populations in the shortest possible time. In this study, we evaluated a method for vaccination against avian influenza virus that uses a DNA vaccine for rapid manufacturing and delivered by a microneedle skin patch for simplified administration and increased immunogenicity. We prepared patches containing 700 µm-long microneedles coated with an avian H5 influenza hemagglutinin DNA vaccine from A/Viet Nam/1203/04 influenza virus. The coating DNA dose increased with DNA concentration in the coating solution and the number of dip coating cycles. Coated DNA was released into the skin tissue by dissolution within minutes. Vaccination of mice using microneedles induced higher levels of antibody responses and hemagglutination inhibition titers, and improved protection against lethal infection with avian influenza as compared to conventional intramuscular delivery of the same dose of the DNA vaccine. Additional analysis showed that the microneedle coating solution containing carboxymethylcellulose and a surfactant may have negatively affected the immunogenicity of the DNA vaccine. Overall, this study shows that DNA vaccine delivery by microneedles can be a promising approach for improved vaccination to mitigate an influenza pandemic.
机译:对流感大流行的有效公共卫生应对需要有效的疫苗,可以在最短的时间内制造和施用于大群体。在这项研究中,我们评估了一种针对禽流感病毒疫苗接种的方法,该病毒使用DNA疫苗进行快速制造,并通过微针皮肤贴片递送,用于简化给药和增加的免疫原性。我们制备含有700μm-long微针的贴片,涂有禽H5流感血凝素DNA疫苗的甲绒氨酸疫苗。涂层DNA剂量随涂布溶液中的DNA浓度和浸涂循环的数量增加。涂覆的DNA通过溶解在分钟内释放到皮肤组织中。使用微针诱导小鼠疫苗的抗体抗体反应和血凝抑制滴度,与禽流感相比,与常规剂量的DNA疫苗相比,改善了患有禽流感的保护。另外的分析表明,含有羧甲基纤维素和表面活性剂的微针涂层溶液可能对DNA疫苗的免疫原性产生负面影响。总体而言,本研究表明,微酮的DNA疫苗递送可以是改善疫苗接种以减轻流感大流行的有希望的方法。

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