首页> 美国卫生研究院文献>Vaccines >Nitric Oxide Production and Fc Receptor-Mediated Phagocytosis as Functional Readouts of Macrophage Activity upon Stimulation with Inactivated Poultry Vaccines in Vitro
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Nitric Oxide Production and Fc Receptor-Mediated Phagocytosis as Functional Readouts of Macrophage Activity upon Stimulation with Inactivated Poultry Vaccines in Vitro

机译:一氧化氮的产生和Fc受体介导的吞噬作用作为体外灭活家禽疫苗刺激后巨噬细胞活性的功能性读数

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摘要

Vaccine batches must pass routine quality control to confirm that their ability to induce protection against disease is consistent with batches of proven efficacy from development studies. For poultry vaccines, these tests are often performed in laboratory chickens by vaccination-challenge trials or serological assays. The aim of this study was to investigate innate immune responses against inactivated poultry vaccines and identify candidate immune parameters for in vitro quality tests as alternatives for animal-based quality tests. For this purpose, we set up assays to measure nitric oxide production and phagocytosis by the macrophage-like cell line HD11, upon stimulation with inactivated poultry vaccines for infectious bronchitis virus (IBV), Newcastle disease virus (NDV), and egg drop syndrome virus (EDSV). In both assays, macrophages became activated after stimulation with various toll-like receptor agonists. Inactivated poultry vaccines stimulated HD11 cells to produce nitric oxide due to the presence of mineral oil adjuvant. Moreover, inactivated poultry vaccines were found to enhance Fc receptor-mediated phagocytosis due to the presence of allantoic fluid in the vaccine antigen preparations. We showed that inactivated poultry vaccines stimulated nitric oxide production and Fc receptor-mediated phagocytosis by chicken macrophages. Similar to antigen quantification methods, the cell-based assays described here can be used for future assessment of vaccine batch-to-batch consistency. The ability of the assays to determine the immunopotentiating properties of inactivated poultry vaccines provides an additional step in the replacement of current in vivo batch-release quality tests.
机译:疫苗批次必须通过常规质量控制,以确认其诱导抵抗疾病的能力与来自开发研究的经过验证的功效一致。对于家禽疫苗,这些测试通常是通过接种挑战试验或血清学检测法在实验室鸡中进行的。这项研究的目的是研究针对灭活家禽疫苗的先天免疫反应,并确定用于体外质量测试的候选免疫参数,以替代基于动物的质量测试。为此,我们建立了测定方法,以用灭活禽流感疫苗(针对传染性支气管炎病毒(IBV),新城疫病毒(NDV)和掉蛋综合症病毒)灭活后,测量巨噬细胞样细胞系HD11产生的一氧化氮和吞噬作用(EDSV)。在两种测定中,巨噬细胞在用各种通行费样受体激动剂刺激后被激活。由于存在矿物油佐剂,灭活的家禽疫苗刺激HD11细胞产生一氧化氮。此外,发现灭活的家禽疫苗由于疫苗抗原制剂中尿囊液的存在而增强了Fc受体介导的吞噬作用。我们表明灭活的家禽疫苗刺激一氧化氮的产生和Fc受体介导的巨噬细胞吞噬作用。与抗原定量方法类似,此处描述的基于细胞的测定可用于将来疫苗批次间一致性的评估。该测定法测定灭活家禽疫苗免疫增强特性的能力为替换当前的体内批量释放质量测试提供了新的步骤。

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