Evaluation of immune responses to inactivated influenza vaccines prepared in embryonated chicken eggs and MDCK cells in a mouse model.

K Nerome, H Kumihashi, R Nerome, Y Hiromoto, Y Yokota, R Ueda, K Omoe, M Chiba
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Abstract

This study was initiated with the isolation of influenza A and B viruses from clinical throat swabs in both fertile chicken eggs (egg) and MDCK cells, which were used in subsequent vaccine production in the above two hosts. On the basis of haemagglutination-inhibiting (HI) tests, immune mouse sera from mice vaccinated with MDCK cell-derived vaccines revealed antigenic similarities among H3N2 or B viruses isolated in MDCK cells or eggs. Similarly, antiserum prepared by immunization with egg-derived H3N2 vaccine showed equivalent antigenicity between homologous and heterologous (MDCK cell-derived) viruses. In contrast, antigenicity of egg-derived B vaccines was differed somewhat from that of MDCK cell-derived vaccines, suggesting the occurrence of antigenic change due to passaging in eggs. The time-course of immune responses based on HI titres indicated that MDCK cell-derived vaccines elicited extremely high antibody levels. Also, it was evident that antibody production by MDCK cell-grown H3N2 vaccine was very similar to that of vaccine prepared from egg-grown viruses. These results were comparable to those of plaque neutralization tests, although antigenic differences between egg- and MDCK cell-derived challenge viruses were confirmed in the test with antiserum to MDCK cell-derived vaccine. Consistent with HI-antibody production, the immunogenicity of MDCK cell-derived B vaccine appeared to be low by plaque neutralization test, while immune responses in mice which received egg-derived vaccines were significantly higher than that of the former. Furthermore, immune responses confirmed in mice immunized with B virus vaccines prepared in eggs revealed slight antigenic differences between two viruses derived from their respective hosts. Nevertheless, through evaluation of immune responses, MDCK cell-derived influenza vaccines may be useful when weak immunogenicity of B virus vaccine is improved.

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在小鼠模型中评价用鸡胚蛋和MDCK细胞制备的灭活流感疫苗的免疫应答。
本研究首先从可育鸡蛋和MDCK细胞的临床咽拭子中分离出甲型和乙型流感病毒,这些病毒随后用于上述两个宿主的疫苗生产。在血凝抑制(HI)试验的基础上,接种MDCK细胞衍生疫苗的小鼠免疫血清显示,从MDCK细胞或卵中分离的H3N2或B病毒具有抗原相似性。同样,用蛋源性H3N2疫苗免疫制备的抗血清在同源和异源(MDCK细胞源性)病毒之间表现出相同的抗原性。相比之下,蛋源性B疫苗的抗原性与MDCK细胞源性B疫苗的抗原性有所不同,提示在蛋中传代会发生抗原性变化。基于HI滴度的免疫反应的时间过程表明,MDCK细胞衍生的疫苗引发了极高的抗体水平。此外,MDCK细胞培养的H3N2疫苗产生的抗体明显与蛋培养病毒制备的疫苗非常相似。这些结果与斑块中和试验的结果相当,尽管在MDCK细胞衍生疫苗的抗血清试验中证实了蛋和MDCK细胞衍生的攻击病毒之间的抗原差异。与hi抗体的产生一致,斑块中和试验显示MDCK细胞源性B疫苗的免疫原性较低,而接受蛋源性疫苗的小鼠的免疫应答明显高于前者。此外,用鸡蛋制备的B病毒疫苗免疫小鼠的免疫反应证实,来自各自宿主的两种病毒之间存在轻微的抗原差异。然而,通过对免疫应答的评估,MDCK细胞衍生的流感疫苗可能在改善B病毒疫苗弱免疫原性时有用。
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Virus removal by filtration. Gamma irradiation of bovine sera. Efficient inactivation of viruses and mycoplasma in animal sera using UVC irradiation. A universal virus inactivant for decontaminating blood and biopharmaceutical products. Serum and serum substitutes: virus safety by inactivation or removal.
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